2025/04/05 更新

写真a

オオノ ヨシカズ
大野 良和
所属
環境生命自然科学学域 准教授(特任)
職名
准教授(特任)
外部リンク

学位

  • 博士(理学) ( 琉球大学 )

研究キーワード

  • 環境生理学

  • 形態形成

  • バイオイメージング

  • バイオミネラリゼーション

 

論文

  • Coral Decline Linked to Exchangeable Phosphate in Seawater from Coastal Calcareous Sediments, as Evidenced in Sekisei Lagoon, Japan 査読

    Jun Yasumoto, Mariko Iijima, Akira Iguchi, Takashi Nakamura, Ryogo Takada, Mina Yasumoto-Hirose, Yuichi Iwasaki, Tetsuo Yasutaka, Kanami Mori-Yasumoto, Ryuichi Shinjo, Ryota Ide, Alice Yamazaki, Nanami Mizusawa, Yoshikazu Ohno, Atsushi Suzuki, Shugo Watabe, Ko Yasumoto

    Marine Biotechnology   27 ( 2 )   2025年3月

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    掲載種別:研究論文(学術雑誌)   出版者・発行元:Springer Science and Business Media LLC  

    DOI: 10.1007/s10126-025-10412-5

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    その他リンク: https://link.springer.com/article/10.1007/s10126-025-10412-5/fulltext.html

  • Bioinformatic approach to explain how Mg from seawater may be incorporated into coral skeletons 査読

    Tomoko Bell, Akira Iguchi, Yoshikazu Ohno, Kazuhiko Sakai, Yusuke Yokoyama

    Royal Society Open Science   12 ( 1 )   2025年1月

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    掲載種別:研究論文(学術雑誌)   出版者・発行元:The Royal Society  

    Corals have been used as geochemical proxies since the 1970s, playing a prominent role in paleoceanography. However, it has not been well elucidated how aqueous ions sourced from seawater are transported and precipitated in coral skeletons. There are limited foundational methods to differentiate and quantify biogenic and abiogenic effects during skeletal formation. Especially, Mg in coral skeletons show individual variations suggesting large biogenic effects. Here, we evaluated biological complexity by investigating how coral genes evolved over geologic time scales. We focused on Mg transporter and analysed five species from genus Acropora and three species from genus Porites . Mg transporter of Acropora digitifera , Acropora hyacinthus , Acropora millepora and Porites australiensis showed higher similarity to Mg transporter of vertebrates and were reported to appear on Earth during the Pleistocene. On the other hand, Acropora palmata , Acropora tenui s and Porites astreoides showed lower or no similarity to vertebrates, and they were reported to appear on Earth before the Pleistocene. We suggest such evolutional records can be evidence to demonstrate biological complexity of Mg transport from seawater. This might explain that Mg transport is subject to evolution and why Mg incorporated in coral skeletons tends to show strong biogenic effects compared with other elements.

    DOI: 10.1098/rsos.232011

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    その他リンク: https://royalsocietypublishing.org/doi/full-xml/10.1098/rsos.232011

  • The Role of Polyamines in pH Regulation in the Extracellular Calcifying Medium of Scleractinian Coral Spats. 査読 国際誌

    Azusa Kubota, Yoshikazu Ohno, Jun Yasumoto, Mariko Iijima, Michio Suzuki, Akira Iguchi, Kanami Mori-Yasumoto, Mina Yasumoto-Hirose, Tsuyoshi Sakata, Takaaki Suehiro, Kaho Nakamae, Nanami Mizusawa, Mitsuru Jimbo, Shugo Watabe, Ko Yasumoto

    Environmental science & technology   2024年12月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    This study aims to elucidate a novel mechanism for elevating the pH within the calicoblastic extracellular calcifying medium (pHECM) of corals and demonstrate the potential contribution of calcifying organisms to CO2 sequestration. Departing from traditional models that attribute the increase in pHECM primarily to H+ expulsion via Ca2+-ATPase, we emphasize the significant role of polyamines. These ubiquitous biogenic amines conveyed by calicoblastic cells through polyamine transporters demonstrate a remarkable affinity for CO2. Their ability to form stable carbamate complexes is pivotal in facilitating carbonate ion transport, which is crucial for pH regulation and skeletal structure formation. In this study, a polyamine transporter inhibitor and a polyamine biosynthesis inhibitor in conjunction with the pH-sensitive probe 8-hydroxypyrene-1,3,6-trisulfonic acid (HPTS) were employed to monitor pH variations. Furthermore, FM1-43FX dye was utilized to delineate the extracellular calcifying medium (ECM), whereas calcein was applied to visualize paracellular gaps and ECM. These methodologies provide profound insights into the intricate structural and functional dynamics of coral spats calcification. Findings suggest a potential reconsideration of established models of marine calcification and highlight the necessity to reassess the role of marine calcifying organisms in the carbon cycle, particularly their influence on CO2 fluxes.

    DOI: 10.1021/acs.est.4c10097

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  • Polyamine impact on physiology of early stages of reef-building corals–insights from rearing experiments and RNA-Seq analysis 査読

    Kodai Gibu, Nanami Mizusawa, Mariko Iijima, Yoshikazu Ohno, Jun Yasumoto, Ko Yasumoto, Akira Iguchi

    Scientific Reports   14 ( 1 )   2024年10月

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    掲載種別:研究論文(学術雑誌)   出版者・発行元:Springer Science and Business Media LLC  

    Abstract

    Polyamines are involved in various functions related to the cellular-level responses. To assess effects of polyamines on marine organisms, rearing experiments and comprehensive gene expression analyses were conducted on Acropora digitifera and Acropora sp.1, representative reef-building corals along the west-central coast of Okinawa, Japan, to evaluate effects of putrescine. Concentrations of putrescine ≥ 1 mM dissolved tissues of juvenile polyps and increased mortality of planula larvae. RNA-Seq analysis of juvenile polyps exposed to putrescine at the stage before effects became visible revealed dynamic fluctuations in gene expression in the putrescine-treated samples, with increased expression of stress-responsive genes (e.g. NAD-dependent protein deacylase sirtuin-6) and the polyamine transporter Slc18b1-like protein. These results also suggest that putrescine affects expression of genes related to ribosomes and translation. This study provides important insights into roles of polyamines and future directions regarding physiological responses of corals.

    DOI: 10.1038/s41598-024-72943-6

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    その他リンク: https://www.nature.com/articles/s41598-024-72943-6

  • Live imaging of center of calcification formation during septum development in primary polyps of Acropora digitifera 査読

    Yoshikazu Ohno, Anan Takahashi, Motosuke Tsutsumi, Azusa Kubota, Akira Iguchi, Mariko Iijima, Nanami Mizusawa, Takashi Nakamura, Atsushi Suzuki, Michio Suzuki, Jun Yasumoto, Shugo Watabe, Kazuhiko Sakai, Tomomi Nemoto, Ko Yasumoto

    Frontiers in Marine Science   11   2024年8月

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    担当区分:筆頭著者, 責任著者   記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:Frontiers Media SA  

    Recent studies have revealed that stony corals create their extracellular skeletons via biologically controlled calcification, in which amorphous calcium carbonate (ACC), regarded as precursors of aragonite crystals, have been observed at nanoscale using electron microscopy. However, the exact mechanism by which ACC is generated, and how it contributes to skeletal growth in coral calcifying tissue, remains enigmatic. The septal skeleton of an individual polyp is composed of radially aligned plates extending upward from the aboral calcifying tissue. This structure includes microstructure known as the centers of calcification (CoC). However, despite its importance, direct in vivo observation of septal growth has not been reported. Observations under transmitted illumination using polarized light microscopy on calcifying tissue of young Acropora digitifera revealed small crystals, a few micrometers in size, that accompany subtle movements and that emerge exclusively on the inner wall of the pocket in extracellular calcifying fluid (ECF). Crystal growth initiated from small, scattered crystals on a glass plate resembles this phenomenon observed in coral skeletons. Time-lapse photographs of 12 individuals in early primary polyp settlement revealed this process in three individuals, documenting 13 of these crystal events. This phenomenon occurred solely at the bases of subsequently formed septa. These crystals differ notably from fusiform crystals and from dumbbell-like or rod-like crystals growing individually. Upright two-photon microscopy captured movement of sub-micron-sized fluorescent calcein-accumulating particles, emphasizing their presence on the surface of the growing fronts of septa. Methodological advances that facilitate comprehensive in vivo observation of sub-micron-sized structures, calcein-accumulating particles to the skeleton, are needed to develop a more detailed understanding of coral skeletal growth.

    DOI: 10.3389/fmars.2024.1406446

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  • Single-polyp metabolomics for coral health assessment 査読

    Akira Iguchi, Mariko Iijima, Nanami Mizusawa, Yoshikazu Ohno, Ko Yasumoto, Atsushi Suzuki, Shunichi Suga, Ken Tanaka, Kei Zaitsu

    Scientific Reports   14 ( 1 )   2024年3月

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    掲載種別:研究論文(学術雑誌)   出版者・発行元:Springer Science and Business Media LLC  

    Abstract

    Coral reef ecosystems supported by environmentally sensitive reef-building corals face serious threats from human activities. Our understanding of these reef threats is hampered by the lack of sufficiently sensitive coral environmental impact assessment systems. In this study, we established a platform for metabolomic analysis at the single-coral-polyp level using state-of-the-art mass spectrometry (probe electrospray ionization/tandem mass spectrometry; PESI/MS/MS) capable of fine-scale analysis. We analyzed the impact of the organic UV filter, benzophenone (BP), which has a negative impact on corals. We also analyzed ammonium and nitrate samples, which affect the environmental sensitivity of coral-zooxanthella (Symbiodiniaceae) holobionts, to provide new insights into coral biology with a focus on metabolites. The method established in this study breaks new ground by combining PESI/MS/MS with a technique for coral polyps that can control the presence or absence of zooxanthellae in corals, enabling functions of zooxanthellae to be assessed on a polyp-by-polyp basis for the first time. This system will clarify biological mechanisms of corals and will become an important model system for environmental impact assessment using marine organisms.

    DOI: 10.1038/s41598-024-53294-8

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    その他リンク: https://www.nature.com/articles/s41598-024-53294-8

  • Coral-mimetic production of aragonite films from CO2 captured by biogenic polyamines 査読

    Kohei Takashina, Hiroto Watanabe, Yuya Oaki, Yoshikazu Ohno, Ko Yasumoto, Hiroaki Imai

    CrystEngComm   26 ( 15 )   2065 - 2071   2024年

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    掲載種別:研究論文(学術雑誌)   出版者・発行元:Royal Society of Chemistry (RSC)  

    We designed CaCO3 films comprised of aragonite nanorods by mimicking the microstructure and the formation process of the calcareous skeleton of a stony coral in the sea.

    DOI: 10.1039/d4ce00126e

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  • Coastal ecological impacts from pumice rafts 査読

    Yoshikazu Ohno, Akira Iguchi, Mariko Ijima, Ko Yasumoto, Atsushi Suzuki

    Scientific Reports   12 ( 1 )   2022年7月

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    担当区分:筆頭著者   掲載種別:研究論文(学術雑誌)   出版者・発行元:Springer Science and Business Media LLC  

    Abstract

    An explosive volcanic eruption occurred in the Ogasawara Islands on 13–15 August 2021, bringing unprecedented amounts of floating pumice to the coast of Okinawa Island in the Ryukyu Archipelago, 1300 km west of the volcano, approximately 2 months later. The coast of Okinawa Island, especially along the northern part, is home to many typical subtropical seascapes, including coral reefs and mangrove forests, so the possible impact of the large amount of pumice is attracting attention. Here, we report early evidence of ecosystem changes as a result of large-scale pumice stranding on coastal beaches, in estuaries and mangrove forests and passage across fringing coral reefs. Massive pumice drifts are major obstacles to fishing activities and ship traffic, but short and long-term changes in coastal ecosystems can also occur. The phenomena observed on Okinawa Island can be a preview of coastal impacts for the Kyushu, Shikoku, Honshu Islands, where pumice has subsequently washed ashore.

    DOI: 10.1038/s41598-022-14614-y

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    その他リンク: https://www.nature.com/articles/s41598-022-14614-y

  • Effect of seawater turbulence on formation of coral primary polyp skeletons 査読

    Shinya Iwasaki, Atsushi Suzuki, Akira Iguchi, Osamu Sasaki, Harumasa Kano, Yoshikazu Ohno, Koichiro Enomoto

    Coral Reefs   37 ( 3 )   939 - 944   2018年9月

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    掲載種別:研究論文(学術雑誌)   出版者・発行元:Springer Science and Business Media LLC  

    DOI: 10.1007/s00338-018-1719-5

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    その他リンク: http://link.springer.com/content/pdf/10.1007/s00338-018-1719-5.pdf

  • Calibration between temperature and Mg/Ca and oxygen isotope ratios in high-magnesium calcite tests of asexually reproduced juveniles of large benthic foraminifers 査読

    Ayumi Maeda, Kazuhiko Fujita, Keiji Horikawa, Atsushi Suzuki, Yoshikazu Ohno, Hodaka Kawahata

    Marine Micropaleontology   143   63 - 69   2018年9月

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    掲載種別:研究論文(学術雑誌)   出版者・発行元:Elsevier {BV}  

    DOI: 10.1016/j.marmicro.2018.07.004

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  • 海洋酸性化がサンゴなどの石灰化生物に与える影響評価実験 査読

    鈴木 淳, 井口 亮, 酒井一彦, 中村 崇, 藤田和彦, 田中泰章, 入江貴博, 加藤亜記, 大野良和, 林 正裕, 山本雄三, 磯野良介, 諏訪僚太, 井上麻夕里, 野尻幸宏

    月刊海洋   50 ( 6 )   237 - 246   2018年6月

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  • Temperature-controlled culture experiments with primary polyps of coral Acropora digitifera: Calcification rate variations and skeletal Sr/Ca, Mg/Ca, and Na/Ca ratios 査読

    Tomoko Bell, Kozue Nishida, Kei Ishikawa, Atsushi Suzuki, Takashi Nakamura, Kazuhiko Sakai, Yoshikazu Ohno, Akira Iguchi, Yusuke Yokoyama

    PALAEOGEOGRAPHY PALAEOCLIMATOLOGY PALAEOECOLOGY   484   129 - 135   2017年10月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:ELSEVIER SCIENCE BV  

    Coral skeletons preserve useful archival indicators from which to reconstruct past environments. We conducted temperature-controlled culture experiments (20, 22, 27, and 31 degrees C) with primary polyps of Acropora digitifera to accurately assess the impact of a wide range of temperatures on the calcification rate and to methodically evaluate the skeletal trace elements (Sr/Ca, Mg/Ca, and Na/Ca ratios). Water temperatures positively affected the calcification rate up to 31 degrees C, which exceeds the temperature threshold for this species. The calcification rates also varied widely (> 20%) during each of the four temperature treatments. The skeletal Sr/Ca ratio was most strongly correlated with water temperature (R-2 = 0.68, p < 0.001), whereas the Mg/Ca and Na/Ca ratios showed lower correlations (R-2 = 0.53, p < 0.001; R-2 = 0.34, p = 0.011, respectively). The variations in the skeletal Sr/Ca, Mg/Ca, and Na/Ca ratios at the four different temperatures were 0.36%-1.20%, 0.83%-3.76%, and 0.52%-3.24%, respectively. Thus, the Sr/Ca ratio showed the least variation, despite the wide variations in the calcification rate. We confirm that the Sr/Ca ratio of A. digitifera juveniles is a robust proxy of temperature, regardless of variations in the calcification rate and the wide range of ambient temperatures. In addition, our results regarding skeletal Mg/Ca and Na/Ca ratios further our understanding of coral calcification processes. (C) 2017 Elsevier B.V. All rights reserved.

    DOI: 10.1016/j.palaeo.2017.03.016

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • Calcification process dynamics in coral primary polyps as observed using a calcein incubation method. 査読 国際誌

    Yoshikazu Ohno, Akira Iguchi, Chuya Shinzato, Mikako Gushi, Mayuri Inoue, Atsushi Suzuki, Kazuhiko Sakai, Takashi Nakamura

    Biochemistry and biophysics reports   9   289 - 294   2017年3月

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    担当区分:筆頭著者, 責任著者   記述言語:英語   掲載種別:研究論文(学術雑誌)  

    Calcification processes are largely unknown in scleractinian corals. In this study, live confocal imaging was used to elucidate the spatiotemporal dynamics of the calcification process in aposymbiotic primary polyps of the coral species Acropora digitifera. The fluorophore calcein was used as a calcium deposition marker and a visible indicator of extracellular fluid distribution at the tissue-skeleton interface (subcalicoblastic medium, SCM) in primary polyp tissues. Under continuous incubation in calcein-containing seawater, initial crystallization and skeletal growth were visualized among the calicoblastic cells in live primary polyp tissues. Additionally, the distribution of calcein-stained SCM and contraction movements of the pockets of SCM were captured at intervals of a few minutes. Our experimental system provided several new insights into coral calcification, particularly as a first step in monitoring the relationship between cellular dynamics and calcification in vivo. Our study suggests that coral calcification initiates at intercellular spaces, a finding that may contribute to the general understanding of coral calcification processes.

    DOI: 10.1016/j.bbrep.2017.01.006

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • An aposymbiotic primary coral polyp counteracts acidification by active pH regulation. 査読 国際誌

    Yoshikazu Ohno, Akira Iguchi, Chuya Shinzato, Mayuri Inoue, Atsushi Suzuki, Kazuhiko Sakai, Takashi Nakamura

    Scientific reports   7   40324 - 40324   2017年1月

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    担当区分:筆頭著者, 責任著者   記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:NATURE PUBLISHING GROUP  

    Corals build their skeletons using extracellular calcifying fluid located in the tissue-skeleton interface. However, the mechanism by which corals control the transport of calcium and other ions from seawater and the mechanism of constant alkalization of calcifying fluid are largely unknown. To address these questions, we performed direct pH imaging at calcification sites (subcalicoblastic medium, SCM) to visualize active pH upregulation in live aposymbiotic primary coral polyps treated with HCl-acidified seawater. Active alkalization was observed in all individuals using vital staining method while the movement of HPTS and Alexa Fluor to SCM suggests that certain ions such as H+ could diffuse via a paracellular pathway to SCM. Among them, we discovered acid-induced oscillations in the pH of SCM (pHSCM), observed in 24% of polyps examined. In addition, we discovered acid-induced pH up-regulation waves in 21% of polyps examined, which propagated among SCMs after exposure to acidified seawater. Our results showed that corals can regulate pHSCM more dynamically than was previously believed. These observations will have important implications for determining how corals regulate pHSCM during calcification. We propose that corals can sense ambient seawater pH via their innate pH-sensitive systems and regulate pHSCM using several unknown pH-regulating ion transporters that coordinate with multicellular signaling occurring in coral tissue.

    DOI: 10.1038/srep40324

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • Butterfly eyespot organiser: in vivo imaging of the prospective focal cells in pupal wing tissues. 査読 国際誌

    Mayo Iwasaki, Yoshikazu Ohno, Joji M Otaki

    Scientific reports   7   40705 - 40705   2017年1月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:NATURE PUBLISHING GROUP  

    Butterfly wing eyespot patterns are determined in pupal tissues by organisers located at the centre of the prospective eyespots. Nevertheless, organiser cells have not been examined cytochemically in vivo, partly due to technical difficulties. Here, we directly observed organiser cells in pupal forewing epithelium via an in vivo confocal fluorescent imaging technique, using 1-h post-pupation pupae of the blue pansy butterfly, Junonia orithya. The prospective eyespot centre was indented from the plane of the ventral tissue surface. Three-dimensional reconstruction images revealed that the apical portion of "focal cells" at the bottom of the eyespot indentation contained many mitochondria. The mitochondrial portion was connected with a "cell body" containing a nucleus. Most focal cells had globular nuclei and were vertically elongated, but cells in the wing basal region had flattened nuclei and were tilted toward the distal direction. Epithelial cells in any wing region had cytoneme-like horizontal processes. From 1 h to 10 h post-pupation, nuclear volume increased, suggesting DNA synthesis during this period. Morphological differences among cells in different regions may suggest that organiser cells are developmentally ahead of cells in other regions and that position-dependent heterochronic development is a general mechanism for constructing colour patterns in butterfly wings.

    DOI: 10.1038/srep40705

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • Non-bleached colonies of massive Porites may attract fishes for selective grazing during mass bleaching events. 査読 国際誌

    Eri Ikeuchi, Yoshikazu Ohno, Akira Iguchi, Takashi Nakamura

    PeerJ   5 ( 6 )   e3470   2017年

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:PeerJ Inc.  

    In this study we investigated the variation in grazing scar densities between bleached and non-bleached colonies of massive Porites species in Sekisei Lagoon (Okinawa, southwestern Japan) during a mass bleaching event in 2016. The grazing scar densities and bleaching susceptibility varied among neighboring colonies of massive Porites spp. However, non-bleached colonies had significantly more surface scars than bleached colonies. One explanation for these variations is that corallivorous fishes may selectively graze on non-bleached, thermally tolerant colonies. This is the first report of a relationship between grazing scars and the bleaching status of massive Porites spp. colonies during a mass bleaching event.

    DOI: 10.7717/peerj.3470

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • Cytological Observations of the Large Symbiotic Foraminifer Amphisorus kudakajimensis Using Calcein Acetoxymethyl Ester. 査読 国際誌

    Yoshikazu Ohno, Kazuhiko Fujita, Takashi Toyofuku, Takashi Nakamaura

    PloS one   11 ( 11 )   e0165844   2016年

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    担当区分:筆頭著者, 責任著者   記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:PUBLIC LIBRARY SCIENCE  

    Large benthic foraminifera are unicellular calcifying reef organisms that can form symbiotic relationships with a range of different microalgae. However, the cellular functions, such as symbiosis and calcification, and other aspects of cellular physiology in large benthic foraminifera are not fully understood. Amphisorus kudakajimensis was used as a model to determine the detailed cellular characteristics of large benthic foraminifera. We used calcein acetoxymethyl ester (calcein AM) as a fluorescent indicator for live confocal imaging. We demonstrated that calcein AM is a useful fluorescent indicator to stain the fine network of reticulopodia and the cytoplasm in living A. kudakajimensis. We showed that at least two types of reticulopodia exist in A. kudakajimensis: the straight bundle of reticulopodia that spreads from the aperture and the fine reticulopodia along the surface of the aperture and chamber walls. The cytoplasm in outer chambers was highly branched and contained a few dinoflagellates. In contrast, the inner chamberlets contained condensed cytoplasm and many dinoflagellates, suggesting that the cytoplasm of A. kudakajimensis performs different functions based on its location within the large test. Our confocal detailed image analysis provides real-time cellular morphology and cell physiology of living foraminifera.

    DOI: 10.1371/journal.pone.0165844

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • Distal-less induces elemental color patterns in Junonia butterfly wings. 査読 国際誌

    Bidur Dhungel, Yoshikazu Ohno, Rie Matayoshi, Mayo Iwasaki, Wataru Taira, Kiran Adhikari, Raj Gurung, Joji M Otaki

    Zoological letters   2   4 - 4   2016年

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    記述言語:英語   掲載種別:研究論文(学術雑誌)  

    BACKGROUND: The border ocellus, or eyespot, is a conspicuous color pattern element in butterfly wings. For two decades, it has been hypothesized that transcription factors such as Distal-less (Dll) are responsible for eyespot pattern development in butterfly wings, based on their expression in the prospective eyespots. In particular, it has been suggested that Dll is a determinant for eyespot size. However, functional evidence for this hypothesis has remained incomplete, due to technical difficulties. RESULTS: Here, we show that ectopically expressed Dll induces ectopic elemental color patterns in the adult wings of the blue pansy butterfly, Junonia orithya (Lepidoptera, Nymphalidae). Using baculovirus-mediated gene transfer, we misexpressed Dll protein fused with green fluorescent protein (GFP) in pupal wings, resulting in ectopic color patterns, but not the formation of intact eyespots. Induced changes included clusters of black and orange scales (a basic feature of eyespot patterns), black and gray scales, and inhibition of cover scale development. In contrast, ectopic expression of GFP alone did not induce any color pattern changes using the same baculovirus-mediated gene transfer system. CONCLUSIONS: These results suggest that Dll plays an instructive role in the development of color pattern elements in butterfly wings, although Dll alone may not be sufficient to induce a complete eyespot. This study thus experimentally supports the hypothesis of Dll function in eyespot development.

    DOI: 10.1186/s40851-016-0040-9

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • Live Imaging of Mitochondrial Morphology during Vegetative Cell Cycle in Chlamydomonas reinhardtii 査読

    Hiroaki Aoyama, Yosikazu Ono, Tsuneyoshi Kuroiwa, Soichi Nakamura

    CYTOLOGIA   80 ( 3 )   260 - 260   2015年9月

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    記述言語:英語   出版者・発行元:UNIV TOKYO CYTOLOGIA  

    DOI: 10.1508/cytologia.80.259

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  • Spontaneous long-range calcium waves in developing butterfly wings. 査読 国際誌

    Yoshikazu Ohno, Joji M Otaki

    BMC developmental biology   15 ( 1 )   17 - 17   2015年3月

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    担当区分:筆頭著者   記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:BIOMED CENTRAL LTD  

    BACKGROUND: Butterfly wing color patterns emerge as the result of a regular arrangement of scales produced by epithelial scale cells at the pupal stage. These color patterns and scale arrangements are coordinated throughout the wing. However, the mechanism by which the development of scale cells is controlled across the entire wing remains elusive. In the present study, we used pupal wings of the blue pansy butterfly, Junonia orithya, which has distinct eyespots, to examine the possible involvement of Ca(2+) waves in wing development. RESULTS: Here, we demonstrate that the developing pupal wing tissue of the blue pansy butterfly displayed spontaneous low-frequency Ca(2+) waves in vivo that propagated slowly over long distances. Some waves appeared to be released from the immediate peripheries of the prospective eyespot and discal spot, though it was often difficult to identify the specific origins of these waves. Physical damage, which is known to induce ectopic eyespots, led to the radiation of Ca(2+) waves from the immediate periphery of the damaged site. Thapsigargin, which is a specific inhibitor of Ca(2+)-ATPases in the endoplasmic reticulum, induced an acute increase in cytoplasmic Ca(2+) levels and halted the spontaneous Ca(2+) waves. Additionally, thapsigargin-treated wings showed incomplete scale development as well as other scale and color pattern abnormalities. CONCLUSIONS: We identified a novel form of Ca(2+) waves, spontaneous low-frequency slow waves, which travel over exceptionally long distances. Our results suggest that spontaneous Ca(2+) waves play a critical role in the coordinated development of scale arrangements and possibly in color pattern formation in butterflies.

    DOI: 10.1186/s12861-015-0067-8

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • Live Cell Imaging of Butterfly Pupal and Larval Wings In Vivo. 査読 国際誌

    Yoshikazu Ohno, Joji M Otaki

    PloS one   10 ( 6 )   e0128332   2015年

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    担当区分:筆頭著者   記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:PUBLIC LIBRARY SCIENCE  

    Butterfly wing color patterns are determined during the late larval and early pupal stages. Characterization of wing epithelial cells at these stages is thus critical to understand how wing structures, including color patterns, are determined. Previously, we successfully recorded real-time in vivo images of developing butterfly wings over time at the tissue level. In this study, we employed similar in vivo fluorescent imaging techniques to visualize developing wing epithelial cells in the late larval and early pupal stages 1 hour post-pupation. Both larval and pupal epithelial cells were rich in mitochondria and intracellular networks of endoplasmic reticulum, suggesting high metabolic activities, likely in preparation for cellular division, polyploidization, and differentiation. Larval epithelial cells in the wing imaginal disk were relatively large horizontally and tightly packed, whereas pupal epithelial cells were smaller and relatively loosely packed. Furthermore, larval cells were flat, whereas pupal cells were vertically elongated as deep as 130 μm. In pupal cells, many endosome-like or autophagosome-like structures were present in the cellular periphery down to approximately 10 μm in depth, and extensive epidermal feet or filopodia-like processes were observed a few micrometers deep from the cellular surface. Cells were clustered or bundled from approximately 50 μm in depth to deeper levels. From 60 μm to 80 μm in depth, horizontal connections between these clusters were observed. The prospective eyespot and marginal focus areas were resistant to fluorescent dyes, likely because of their non-flat cone-like structures with a relatively thick cuticle. These in vivo images provide important information with which to understand processes of epithelial cell differentiation and color pattern determination in butterfly wings.

    DOI: 10.1371/journal.pone.0128332

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • Real-time in vivo imaging of butterfly wing development: revealing the cellular dynamics of the pupal wing tissue. 査読 国際誌

    Masaki Iwata, Yoshikazu Ohno, Joji M Otaki

    PloS one   9 ( 2 )   e89500   2014年

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:PUBLIC LIBRARY SCIENCE  

    Butterfly wings are covered with regularly arranged single-colored scales that are formed at the pupal stage. Understanding pupal wing development is therefore crucial to understand wing color pattern formation. Here, we successfully employed real-time in vivo imaging techniques to observe pupal hindwing development over time in the blue pansy butterfly, Junonia orithya. A transparent sheet of epithelial cells that were not yet regularly arranged was observed immediately after pupation. Bright-field imaging and autofluorescent imaging revealed free-moving hemocytes and tracheal branches of a crinoid-like structure underneath the epithelium. The wing tissue gradually became gray-white, epithelial cells were arranged regularly, and hemocytes disappeared, except in the bordering lacuna, after which scales grew. The dynamics of the epithelial cells and scale growth were also confirmed by fluorescent imaging. Fluorescent in vivo staining further revealed that these cells harbored many mitochondria at the surface of the epithelium. Organizing centers for the border symmetry system were apparent immediately after pupation, exhibiting a relatively dark optical character following treatment with fluorescent dyes, as well as in autofluorescent images. The wing tissue exhibited slow and low-frequency contraction pulses with a cycle of approximately 10 to 20 minutes, mainly occurring at 2 to 3 days postpupation. The pulses gradually became slower and weaker and eventually stopped. The wing tissue area became larger after contraction, which also coincided with an increase in the autofluorescence intensity that might have been caused by scale growth. Examination of the pattern of color development revealed that the black pigment was first deposited in patches in the central areas of an eyespot black ring and a parafocal element. These results of live in vivo imaging that covered wide wing area for a long time can serve as a foundation for studying the cellular dynamics of living wing tissues in butterflies.

    DOI: 10.1371/journal.pone.0089500

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • Baculovirus-mediated gene transfer in butterfly wings in vivo: an efficient expression system with an anti-gp64 antibody. 査読 国際誌

    Bidur Dhungel, Yoshikazu Ohno, Rie Matayoshi, Joji M Otaki

    BMC biotechnology   13   27 - 27   2013年3月

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    記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:BIOMED CENTRAL LTD  

    BACKGROUND: Candidate genes for color pattern formation in butterfly wings have been known based on gene expression patterns since the 1990s, but their functions remain elusive due to a lack of a functional assay. Several methods of transferring and expressing a foreign gene in butterfly wings have been reported, but they have suffered from low success rates or low expression levels. Here, we developed a simple, practical method to efficiently deliver and express a foreign gene using baculovirus-mediated gene transfer in butterfly wings in vivo. RESULTS: A recombinant baculovirus containing a gene for green fluorescent protein (GFP) was injected into pupae of the blue pansy butterfly Junonia orithya (Nymphalidae). GFP fluorescence was detected in the pupal wings and other body parts of the injected individuals three to five days post-injection at various degrees of fluorescence. We obtained a high GFP expression rate at relatively high virus titers, but it was associated with pupal death before color pattern formation in wings. To reduce the high mortality rate caused by the baculovirus treatment, we administered an anti-gp64 antibody, which was raised against baculovirus coat protein gp64, to infected pupae after the baculovirus injection. This treatment greatly reduced the mortality rate of the infected pupae. GFP fluorescence was observed in pupal and adult wings and other body parts of the antibody-treated individuals at various degrees of fluorescence. Importantly, we obtained completely developed wings with a normal color pattern, in which fluorescent signals originated directly from scales or the basal membrane after the removal of scales. GFP fluorescence in wing tissues spatially coincided with anti-GFP antibody staining, confirming that the fluorescent signals originated from the expressed GFP molecules. CONCLUSIONS: Our baculovirus-mediated gene transfer system with an anti-gp64 antibody is reasonably efficient, and it can be an invaluable tool to transfer, express, and functionally examine foreign genes in butterfly wings and also in other non-model insect systems.

    DOI: 10.1186/1472-6750-13-27

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    その他リンク: http://orcid.org/0000-0002-6179-0363

  • Eyespot colour pattern determination by serial induction in fish: Mechanistic convergence with butterfly eyespots. 査読 国際誌

    Yoshikazu Ohno, Joji M Otaki

    Scientific reports   2   290 - 290   2012年

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    担当区分:筆頭著者   記述言語:英語   掲載種別:研究論文(学術雑誌)   出版者・発行元:NATURE PUBLISHING GROUP  

    Vertebrate and invertebrate colour pattern determination mechanisms are considered distinct; recently, however, both fish and butterfly colour patterns have been partly explained by reaction-diffusion mechanisms. Here, we show that multi-coloured eyespots of the spotted mandarin fish, which are reminiscent of butterfly eyespots, are determined by the serial induction of colour patterns. The morphological characterisation of eyespots indicates a sequence of colour pattern development and dynamic interactions between eyespots. A substantial part of an eyespot can be surgically removed and is then reconstructed by regeneration. Strikingly, ectopic patterns are induced by damage at a background (eyespotless) area, but focal damage did not change the eyespot size. Early stages of damage repair were accompanied by calcium oscillations. These results demonstrate that fish eyespots are determined by serial induction, which is likely based on a reaction-diffusion mechanism. These findings suggest mechanistic similarities between the fish and butterfly systems.

    DOI: 10.1038/srep00290

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    その他リンク: http://orcid.org/0000-0002-6179-0363

▼全件表示

MISC

講演・口頭発表等

  • PESI/MS/MSによるメタボローム解析を用いた 日焼け止め暴露がサンゴポリプに与える毒性リスクの評価

    菅駿一, 田中健, 鈴木留佳, 畑毅, 井口亮, 大野良和, 安元剛, 財津桂

    第3回環境化学物質合同大会  2024年7月2日 

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    開催年月日: 2024年7月5日

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  • サンゴ稚ポリプの隔壁形成部位における粒子の結晶成長

    高橋有南・大野良和・水澤奈々美・渡部終五・安元剛 井口亮・飯島真理子・鈴木淳・鈴木道生・窪田梓・堤元佐・根元知己・安元純・中村崇・酒井一彦

    第24回マリンバイオテクノロジー学会大会  2024年5月25日 

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    開催年月日: 2024年5月25日 - 2024年5月26日

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  • サンゴ造骨組織の細胞内酸性小胞について

    大野良和

    バイオミネラリゼーションワークショップ  2024年11月7日 

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  • サンゴの石灰化過程における生理メカニズムについて

    大野良和

    バイオミネラリゼーション研究会(バイオミネラルゼミ)  2024年9月30日 

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  • 石西礁湖の底質の蓄積リンの年変化とサンゴ密度との関連性

    安元剛, 武田結仁, 舘小路紗礼, 井出涼太, 大野良和, 水澤奈々美, 渡部終五, 廣瀬美奈, 新城竜一, 飯島真理子, 井口亮, 産総研, 中村崇, 安元純

    令和6年度日本水産学会春季大会  2024年3月28日 

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  • ポリアミンが造礁サンゴの初期生理に与える影響:飼育実験とRNA-Seq解析からのアプローチ

    儀武滉大, 水澤奈々美, 飯島真理子, 大野良和, 安元 純, 安元 剛, 井口 亮

    令和6年度日本水産学会春季大会  2024年3月28日 

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  • サンゴ稚ポリプの隔壁形成に関与する微小結晶の可視化

    高橋有南, 大野良和, 窪田梓, 井口亮, 飯島真理子, 水澤奈々美, 中村崇, 鈴木淳, 鈴木道生, 安元純, 渡部終五, 安元剛

    令和6年度日本水産学会春季大会  2024年3月28日 

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    会議種別:口頭発表(一般)  

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  • 石西礁湖の底質の蓄積リンの年変化とサンゴ密度との関連性

    安元剛, 武田結仁, 舘小路紗礼, 井出涼太, 大野良和, 水澤奈々美, 渡部終五, 廣瀬美奈, 新城竜一, 飯島真理子, 井口亮, 中村崇, 安元純

    日本水産学会大会  2024年3月22日 

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    会議種別:口頭発表(一般)  

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  • サンゴ稚ポリプの隔壁形成に関与する微小結晶の可視化

    高橋有南, 大野良和, 窪田梓, 井口亮, 飯島真理子, 水澤奈々美, 中村崇, 鈴木淳, 鈴木道生, 安元純, 渡部終五, 安元剛

    2024年3月22日 

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  • ミドリイシ属サンゴのポリプに及ぼす銅の影響

    水澤奈々美, 大関輝信, 飯島真理子, 大野良和, 儀武滉大, 井口亮, 安元純, 廣瀬美奈, 天野春菜, 神保充, 渡部終五, 安元剛

    第23回マリンバイオテクノロジー学会大会  2023年5月28日 

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    会議種別:口頭発表(一般)  

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  • 飼育実験およびRNA-seqによるポリアミンがサンゴへ与える影響

    儀武滉大, 水澤奈々美, 飯島真理子, 大野良和, 井口亮, 安元純, 安元剛

    第23回マリンバイオテクノロジー学会大会  2023年5月27日 

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  • バイオミネラリゼーションから学ぶCO2鉱物化法の開発

    安元剛, 鈴木道生, 大野良和, 森安賢司, 勝又聡, 井口亮, 安元純, 水澤奈々美, 廣瀬美奈, 渡部終五

    第23回マリンバイオテクノロジー学会大会  2023年5月27日 

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  • 炭酸塩の飽和度とサンゴポリプの石灰化影響について

    木下俊一, 鈴木淳, 井口亮, 飯島真理子, 大野良和, 安元剛, 川幡穂高

    日本地球惑星連合  2023年5月25日 

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  • バイオミネラリゼーションを模したCO2鉱物化研究

    安元剛, 北里, 大野良和, 鈴木道生, 森安賢司, 勝又聡, 出光, 植田直幸, 井口亮, 産総, 安元純, 琉球大, 廣瀬美奈, トロピカルテクノ

    第17回バイオミネラリゼーションワークショップ  2022年11月 

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  • Calibration between temperature and Mg/Ca and oxygen isotope ratios in high-magnesium calcite precipitated by asexually reproduced juveniles of large benthic foraminifera

    前田 歩, 藤田 和彦, 堀川 恵司, 鈴木 淳, 大野 良和, 川幡 穂高

    日本地球惑星連合2018年大会  2018年5月21日 

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  • コユビミドリイシAcropora digitifera稚ポリプの石灰化母液内の局所的pH上昇と物質輸送経路の解明

    窪田梓, 安元剛, 飯島真理子, 天野春菜, 水澤奈々美, 神保充, 渡部終五, 大野良和, 廣瀬美奈, 安元純

    日本水産学会大会 (2018)  2018年3月 

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    会議種別:口頭発表(一般)  

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  • In vivo imaging studies provide new insight into coral physiology. 招待

    Asia-Pacific Islands Researcher Network Symposium

    2017年3月 

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    会議種別:口頭発表(招待・特別)  

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  • 我々はどこまでサンゴの石灰化過程を可視化できるのか

    大野良和

    日本サンゴ礁学会第19回大会 (2016)  2016年11月 

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    会議種別:口頭発表(一般)  

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  • トランスクリプトーム解析による大型有孔虫の殻形成遺伝子の探索

    小林立至, 石川彰人, 磯和幸延, 竹内猛, 西辻光希, 大野良和, 藤田和彦, 佐藤矩行, 豊福高志, 遠藤一佳

    東京大学大気海洋研究所研究シンポジウム「バイオミネラリゼーションと石灰化」第10回バイオミネラリゼーションワークショップ (2016)  2016年11月 

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  • 生体イメージングによるサンゴ石灰化メカニズムの解明 招待

    大野良和

    東京大学大気海洋研究所研究シンポジウム「バイオミネラリゼーションと石灰化」第10回バイオミネラリゼーションワークショップ (2016)  2016年11月 

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    会議種別:口頭発表(一般)  

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  • Aposymbiotic primary coral polyp counteracts acidification by active pH regulation.

    Ohno Y, Iguchi A, Shinzato C, Inoue M, Suzuki A, Sakai K, Nakamura T

    The 8th International Conference on Marine Pollution and Ecotoxicology (ICMPE-8).  2016年6月 

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  • pHイメージング法によるサンゴの酸性化応答の可視化

    大野良和, 井上 麻夕里, 新里 宙也, 鈴木 淳, 中村 崇

    マリンバイオテクノロジー学会第18回大会  2016年5月 

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  • 蛍光色素Calceinによるサンゴ初期ポリプの石灰化イメージング

    大野良和, 井上 麻夕里, 新里 宙也, 鈴木 淳, 中村 崇

    日本サンゴ礁学会第18回大会  2015年11月 

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  • 発生過程のチョウの翅における自発的長距離カルシウム波

    大瀧丈二, 大野良和

    日本動物学会第86回大会  2015年9月 

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  • 大型有孔虫の石灰化ライブ・イメージング

    大野良和, 藤田和彦, 豊福高志, 中村崇

    マリンバイオテクノロジー学会第17回大会  2015年5月 

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  • Morphological observation of cytoplasm with acidic and alkaline vesicles in symbiotic large foraminifer cell by in vivo confocal imaging.

    Ohno Y, Fujita K, Toyofuku T, Nakamura T

    Japan Geosciences Union meeting 2015.  2015年5月 

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  • Live confocal imaging of intrashell cytoplasm and calcification process in a symbiotic large benthic foraminifer Amphisorus kudakajimensis.

    Ohno Y, Fujita K, Toyofuku T, Nakamura T

    European Geosciences Union meeting 2015  2015年5月 

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  • サンゴ初期ポリプの石灰化メカニズム:ミネラル-タンパク質-細胞プロセスの相互作用

    大野良和, 井上麻夕里, 新里宙也, 鈴木敦, 西田梢, 酒井一彦, 中村崇

    東京大学大気海洋研究所研究集会「バイオミネラリザーションと石灰化」  2014年12月 

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  • バイオミネラリゼーション研究におけるライブ・イメージング手法の確立 -大型有孔虫を例として-

    大野良和, 中村崇, 藤田和彦, 豊福高志

    日本サンゴ礁学会第18回大会  2014年11月 

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  • クラミドモナスの分裂サイクルにおけるミトコンドリア核、葉緑体核のDNAの合成時期

    中村宗一, 大野良和, 青山洋昭

    日本植物学会第78回大会  2014年9月 

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  • チョウの翅の発生過程のリアルタイム・イメージング

    大瀧丈二, 岩田 大生, 大野 良和

    日本動物学会第85回仙台大会  2014年9月 

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  • Live confocal imaging of cytoplasmic structure and calcification processes in a large symbiotic foraminifer Amphisorus kudakajimensis.

    Ohno Y, Fujita K, Toyofuku T

    Japan Geoscience Union Meeting 2014.  2014年5月 

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  • サンゴ初期ポリプを用いた石灰化メカニズムの解明

    大野良和, 井上麻夕里, 井口亮, 西田梢, 鈴木淳, 中村崇

    沖縄生物学会第51回大会  2014年5月 

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  • サンゴ初期ポリプを用いた石灰化イメージングについて」 招待

    東京大学大気海洋研究所研究集会「バイオミネラリザーションと石灰化  2013年10月 

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  • コンフォーカル顕微鏡によるクラミドモナスの分裂再開直前のミトコンドリア、及び核様態の形態観察

    中村宗一, 大野良和, 青山洋昭

    日本植物学会第77回大会  2013年9月 

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  • Biocalcification studies of algal symbiont-bearing reef foraminifers using fluorescence probes

    藤田和彦・由地蛍・大野良和・豊福高志

    日本地球惑星科学連合大会2013年大会  2013年5月 

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    会議種別:口頭発表(一般)  

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  • 鱗粉細胞間における自発的な長距離カルシウムシグナルの発見

    大野良和, 大瀧丈二

    沖縄生物学会第50回大会  2013年5月 

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    会議種別:口頭発表(一般)  

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  • コンフォーカル顕微鏡によるクラミドモナスのミトコンドリアの形態観察

    中村宗一, 大野良和, 青山洋昭

    日本植物学会第76回大会  2012年9月 

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    会議種別:口頭発表(一般)  

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  • タイムゲート法を用いたサンゴ造骨組織の生体イメージング

    大野良和

    日本サンゴ礁学会第20回大会 (2017) 

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    会議種別:口頭発表(一般)  

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  • トランスクリプトーム解析による大型有孔虫の殻形成遺伝子の探索

    小林立至, 石川彰人, 磯和幸延, 竹内猛, 西辻光希, 大野良和, 藤田和彦, 佐藤矩行, 豊福高志, 遠藤一佳

    日本古生物学会第166回例会 (2017) 

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受賞

  • 学長賞

    2017年3月   琉球大学  

    大野 良和

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  • 最優秀ポスター発表賞

    2016年11月   日本サンゴ礁学会   蛍光色素Calceinによるサンゴ初期ポリプの石灰化イメージング

    大野 良和

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  • Best Student Poster Award

    2016年6月   The 8th international conference on marine pollution and ecotoxicology   Aposymbiotic primary coral polyp counteracts acidification by active pH regulation.

    大野 良和

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  • 大会会長賞

    2016年5月   マリンバイオテクノロジー学会   pHイメージング法によるサンゴの酸性化応答の可視化

    大野 良和

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  • 優秀発表ポスター賞

    2015年5月   マリンバイオテクノロジー学会   大型有孔虫の石灰化ライブイメージング

    大野 良和

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  • 琉球大学理工学研究科 研究科長賞

    2015年3月   琉球大学  

    大野 良和

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共同研究・競争的資金等の研究

  • サンゴ骨格の結晶成長界面における観察手法の高度化

    研究課題/領域番号:JPMJPR24G2  2024年10月 - 2028年03月

    科学技術振興機構  戦略的創造研究推進事業 さきがけ 

    大野 良和

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    担当区分:研究代表者 

    造礁サンゴは長い年月をかけて地形を形成し、サンゴ礁域の豊かな生物多様性を支えています。しかしながら、サンゴを含む海洋生物の骨格形成過程や、その生育阻害との関係については、細胞生理学的な研究が進んでおらず、不明な点が多く残されています。本研究では、非破壊的な生体イメージング技術を応用し、サンゴ骨格表面の固相-液相界面の可視化技術の構築を目指します。

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  • サンゴ石灰化母液の自発的なpH変化に着目したサンゴの石灰化制御メカニズムの探求

    研究課題/領域番号:23K14222  2023年04月 - 2025年03月

    日本学術振興会  科学研究費助成事業  若手研究

    大野 良和

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    配分額:4680000円 ( 直接経費:3600000円 、 間接経費:1080000円 )

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  • X線CT計測から拓くサンゴ骨格気候学の高度化研究

    研究課題/領域番号:18H03366  2018年04月 - 2022年03月

    日本学術振興会  科学研究費助成事業 基盤研究(B)  基盤研究(B)

    鈴木 淳, 井口 亮, 天野 敦子, 林 正裕, 石村 豊穂, 千徳 明日香, 新垣 誠司, 垣田 浩孝, 岩崎 晋弥, 大野 良和

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    配分額:17290000円 ( 直接経費:13300000円 、 間接経費:3990000円 )

    研究計画2年目は、サンゴ骨格成長量についての3次元計測の実現に向けた検討を行った。従来の切断面に沿った直線成長量(cm y-1など)に代わり、群体全体での石灰化量(1群体あたりや群体表面積あたりのgCaCO3 y-1など)を求める計測法を開発することを目指した。これにより、現在進行中の海洋酸性化トレンドに対応したサンゴの石灰化量の変化を検討することができる。
    この前提として、まず枝状サンゴ群体を例に、表面積計測のルーチン化と精度評価を実施した。この目的のために、マイクロフォーカスCTスキャンを用いてハナヤサイサンゴ群体の表面積計測を実施した。表面積の計測としては、従来はアルミ箔法と呼ばれる方法が一般に用いられている。アルミ箔法とマイクロフォーカスCTによる表面積計測を比較したところ、アルミ箔を用いた計測法よりもマイクロフォーカスCTによる表面積は、平均で7 cm2程度大きな値が得られた(n=10)。これは、マイクロフォーカスCTスキャンにより、アルミ箔法よりも詳細な表面形状を読み採れたためと考えられる。
    また、石灰化量測定用のサンゴ骨格試料を、新たに得ることを目的として、海洋酸性化条件での飼育実験を実施した。天草・牛深の温帯性サンゴ礁の水深約4 mに分布するスギノキミドリイシの4つの群体からそれぞれ12本、計48本のサンゴ枝を採取し、試料として用いた。採取した試料は接着剤でプラスチックボルトに固定し、均一な環境下で飼育できるようにした。二酸化炭素分圧をそれぞれおよそ450、750、1200、2000 ppmに調節された4水槽を用意し、各群体から3本ずつの試料を水槽に配置し、約半年間飼育した。スギノキミドリイシについて二酸化炭素分圧の上昇に伴い重量成長率が減少することが確認された。これらの試料について、次年度以降にマイクロフォーカスCTによる各種解析を予定している。

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  • 細胞膜近傍の造骨プロセスに着目したサンゴの骨格形成メカニズムの全容解明

    研究課題/領域番号:17J07557  2017年04月 - 2020年03月

    日本学術振興会  科学研究費助成事業 特別研究員奨励費  特別研究員奨励費

    大野 良和

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    配分額:4810000円 ( 直接経費:3700000円 、 間接経費:1110000円 )

    造礁サンゴ類(以下、サンゴ)の体内には様々な蛍光物質を体内に保有していため、蛍光を使用した顕微鏡観察は困難である。そのため、生きたサンゴの細胞形態や細胞内シグナルについて一般的に普及している蛍光イメージング技術で可視化することは不可能である。
    昨年度の研究期間内に、沖縄科学技術大学院大学(OIST)が所有する蛍光寿命顕微鏡技術を使用し、サンゴ組織の非破壊的な観察に応用が可能であることを確認できた。具体的には、サンゴの持つ蛍光物質と、使用する蛍光指示薬の蛍光波長帯がオーバーラップしてしまった場合、指示薬側からの蛍光シグナルの検出が困難となる。しかしながら、光によって励起された分子が蛍光を発して基底状態に戻るまでの時間は物質により異なるため、サンゴ由来の自家蛍光と蛍光指示薬のシグナルを時間分解して検出することが可能である。
    昨年度は細胞レベルの観察にも同様の観察手法が適用可能であると明らかにできたため、成果をまとめ、第20回日本サンゴ礁学会にて口頭発表行った。現在、より弱い励起光照射下でサンゴの石灰化過程を観察可能な最適条件を検討しているところである。
    また、同研究機関が所有する画像解析ソフトにより、サンゴの造骨組織には酸性領域が存在し、造骨細胞内エンドソームとしてに多数存在している様子を明らかにした。現在まで、サンゴの石灰化過程では、造骨組織のアルカリ化現象のみが報告されてきたが、炭酸カルシウム結晶の核形成時には、核となる酸性化タンパク質が酸性小胞に蓄えらえ、それが開口分泌されることで、石灰化が開始される可能性が示唆された。
    現在、上述した成果をまとめ、論文作成中である。

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  • サンゴ礁有孔虫における細胞内ダイナミクス可視化による生物石灰化制御機構の解明

    研究課題/領域番号:15J04797  2015年04月 - 2017年03月

    日本学術振興会  科学研究費助成事業 特別研究員奨励費  特別研究員奨励費

    大野 良和

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    配分額:2300000円 ( 直接経費:2300000円 )

    本研究では、大型有孔虫と造礁サンゴを対象に、共焦点顕微鏡による石灰化過程の観察を行ってきた。大型有孔虫に関する研究では、細胞形態をCalcein AMにより観察することが明らかになり、さらに、試薬の特性により生死判定も簡便に行えることができるようになった。また、石灰化に伴う細胞内の水素イオンの分布について、pH蛍光指示薬を共焦点顕微鏡下で使用することで、従来の報告より高感度で把握することが可能となった他、細胞内のカルシウムイオンの分布等についても、詳細に可視化する実験手法を確立しつつある。
    サンゴの石灰化に関する研究では、コユビミドリイシの初期ポリプを使用して実験を行ってきた。研究期間内に、細胞膜を透過しない蛍光Calceinを海水中に溶解させたまま、サンゴの骨格形成過程を詳細に観察が可能な新しい実験手法を確立した。さらに、低毒性のpH指示薬を飼育海水中に溶解させることで、石灰化部位と海水のpH分布を可視化することに成功した。連続的なpHイメージングを行いながら、海水のpHを急激に低下さたところ、酸性化海水の流入と共に石灰化部位のpHが一端低下した後、サンゴが能動的に石灰化部位のpHを上昇させるといった、新しい生理現象を明らかにすることができた。
    得られた成果は国内外を含む学会発表にて随時発表を行ってきたほか、プレスリリースによる発表も行った。また、アウトリーチ活動として、新聞やテレビによる報告も実施した。さらに、一般の方々に向けて、サイエンスカフェに話題提供者として参加した他、自然史学会連合において研究内容の展示を行った。

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