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2017 - 2026

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日本発生生物学会大会

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Year :2017 - 2026

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Search Results(2,188)

[OP01-01(P001)]Identifying fates of aneuploid cells in early human developmentヒトの初期胚発生で染色体異常細胞がたどる運命の解明

*Rina C. Sakata1,2,3, Viviane S. Rosa1,2,3, Sarah Cooper3, Mi Trinh3, Sam Behjati3,4, Roser Vento-Tormo2,3, Marta N. Shahbazi1,2(1. MRC Laboratory of Molecular Biology, Cambridge, UK , 2. The Loke Centre for Trophoblast Research, University of Cambridge, Cambridge, UK, 3. Wellcome Sanger Institute, Cambridge, UK, 4. Department of Paediatrics, University of Cambridge, Cambridge)

[OP05-01(P003)]Environmental stresses break developmental robustness by interfering with cell competition環境ストレスは細胞競合を阻害することで発生ロバストネスを脆弱化する

*Hikari Ukawa1, Yuki Akieda1, Tohru Ishitani1(1. Department of Homeostatic Regulation, Division of Cellular and Molecular Biology, Research Institute for Microbial Diseases, The University of Osaka)

[OP06-01]Transcriptomic analysis reveals common and distinct features of limb and skin regeneration in Xenopus laevisトランスクリプトームから見たアフリカツメガエルの四肢再生・皮膚再生の共通性および特異性

Rina Sato1, Takuya Kobayashi2, Ayumi Konishi1, Ikuo Uchiyama3, Kentaro Abo1, Hiroyo Nishide3, Hiroki Sugiura3, Mikiko Kotani1, Ryusei Tsushima1, Ayumi Yamato1, Katsushi Yamaguchi3, Shuji Shigenobu3, Michiko Sasabe1, Koji Tamura2, *Hitoshi Yokoyama1(1. Hirosaki University, 2. Tohoku University, 3. National Institute for Basic Biology)

[OP07-01(P059)]Residual Tail Twisting in Ascidian Larvae Is Stabilized by Asymmetric Myofibrils Against Bilateral Symmetry Restorationホヤ幼生における残存尾ねじれは左右対称性の回復に抗し非対称筋原線維によって安定化される

Yuki S Kogure1,2, Misaki K Nishio1, Satoru Okuda2, *Kohji Hotta1(1. Department of Bioscience and Informatics, Faculty of Science and Technology, Keio University, 2. Nano Life Science Institute, Kanazawa University, Kakuma-machi, Kanazawa 920-1192, Japan)

[OP02-02(P051)]Theoretical Insights into Cell Volume Competition: How Mechanical Properties and Basic Cell Processes Shape Interconnected Cysts細胞はいかにして体積を奪い合うのか:力学的原理と細胞周期が制御する生殖細胞シストの形成メカニズム

*KOYAMA Hiroshi1,2(1. Div. Embryology, National Institute for Basic Biology, 2. SOKENDAI (Graduate Univ. Advanced Studies))

[S06-02]Spatiotemporal Regulation of Translation during Zygotic Genome Activation

*Mounia Lagha1, Pierre Bensidoun1, Morgane Verbrugghe1, Antonello Trullo1, Laurence Berry2, Sophie Theis3, Timothy Saunders3(1. CNRS, IGMM, University of Montpellier, 2. Montpellier Rio Imaging MRI, CNRS, 3. Centre for Mechanochemical Cell Biology, Warwick Medical School, University of Warwick, UK)

[OP01-03(P014)]Chromatin landscapes anticipate germ layer formation in the mammalian epiblast

*Miquel Sendra1, Leo Guignard1, Miguel Torres2,3(1. Aix-Marseille Université & CNRS, IBDM—UMR7288 & Turing Centre for Living Systems, Marseille, France, 2. Fundación Centro Nacional de Investigaciones Cardiovasculares Carlos III (CNIC), 28029 Madrid, Spain, 3. Centro de Investigación Biomédica en Red de Enfermedades Cardiovasculares (CIBERCV), Spain)

[OP02-03]Newt Hox13 genes terminate somitic and post-somitic programs of caudal vertebral additionイモリHox13遺伝子は、体節由来および体節後の尾椎追加プログラムを終了させる

*Takashi Takeuchi1, Haruka Matsubara1, Takeri Karakawa1, Reo Soeta1, Takeshi Inoue1, Toshinori Hayashi2, Gembu Abe1(1. Tottori University, 2. Hiroshima University)

[OP06-03(P128)]Regeneration of behavior and histological structure from spinal cord injury in Iberian ribbed newt Pleurodeles waltlイベリアトゲイモリPleurodeles waltlの脊髄再生に伴う行動および組織構造の変化

*Yuki Sato1, Shinichi Hayashi1, Ryohei Seki-Omura1, Souichi Oe1, Taro Koike1, Yousuke Nakano1, Hikaru Iwashita1, Yukie Hirahara1, Masaaki Kitada1(1. Kansai Medical Univ.)

[OP01-04(P002)]Cadherin-mediated cell sorting ensures elimination of unfit cells from epiblast of periimplantation embryos in the absence of apoptosisアポトーシス抑制のマウス着床期胚において、不適切細胞はカドヘリンを介した細胞選別により排除される

*Rui Shibata1, Masakazu Hashimoto2,1, Hiroshi sasaki1(1. The University of Osaka,Graduate School of Frontier Biosciences, 2. Fukushima Medical University,Department of Cell Science)

[OP02-04]Dynamic interactions between epithelial skin cells and a sensory cavity sculpt thegrowing olfactory orifice

*Clara Gordillo Pi1,2,3, Mélody Cabrera1,2, Jean-François Gilles2,4, Pierre-Luc Bardet1,2, Alexis Eschstruth1,2, Bonnet Isabelle3, Maire Anne Breau1,2, Marion Baraban1,2(1. Sorbonne Université, CNRS, INSERM, Development, Adaptation and Ageing, Dev2A, F- 75005 Paris, France, 2. Sorbonne Université, CNRS, INSERM, Institut de Biologie Paris-Seine, IBPS, F75005 Paris, France, 3. Institut Curie, Université PSL, Sorbonne Université, CNRS UMR168, Physics of Cells and Cancer, 75005 Paris, France, 4. Imaging Facility, Institut de Biologie Paris-Seine (IBPS))

[OP05-04(P004)]Stage-dependent changes in tensile force requirements for Xenopus ectoderm differentiationツメガエル胚の外胚葉領域分化における張力に対する応答は、発生段階によって変化する

*Takuma Kitamura1, Tatsuo Michiue2,3, Takayoshi Yamamoto1,4(1. School Education Course, Faculty of Education, Tokyo Gakugei University, Tokyo, Japan, 2. Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Tokyo, Japan, 3. Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Tokyo, Japan, 4. Graduate School of Teacher Education (Professional Degree Program), Tokyo Gakugei University, Tokyo, Japan)

[OP07-04(P054)]Digit Morphogenesis Emerges from Self-Organizing Limb Mesenchyme Organoids肢間充織オルガノイドの自己組織化による指形態形成

*Rio Tsutsumi Tsutsumi1,2, Antoine Nicholas Diez3, Steffen Plunder1, Mototsugu Eiraku2(1. Institute for the Advanced Study of Human Biology (ASHBi), Kyoto University, Japan, 2. Institute for Life And Medical Sciences (LiMe), Kyoto University, Japan, 3. Mathematical Application Research Team, Division of Applied Mathematical Science, RIKEN Center for Interdisciplinary Theoretical and Mathematical Sciences (iTHEMS), Japan)

[OP02-05]Temporal shift in TGF-β signaling shapes avian sternal diversityTGF-βシグナルの時間的変化が鳥類の胸骨多様性を形づくる

Seung June Kwon1, Zhaonan Zou2, Mizuki Honda3, Shiro Egawa4, Shinya Oki2, *Yuji Atsuta1(1. Kyushu Univ., Dept. Biol., 2. Kumamoto Univ., Inst. Res. Dev. & Ansys., 3. Hiroshima Univ., Grad. Sch. of Integ. Sci. for Life, 4. Kyushu Univ., Dept. Animal & Marine Biosci.)

[OP05-05(P005)]PGC-1–related coactivator–mediated mitochondrial biogenesis is required for ciliary motility in the Xenopus epidermis.PGC-1 関連共役因子(PRC)を介したミトコンドリア生合成は、アフリカツメガエル胚表皮の繊毛運動に必要である。

*Jihoon Kim1, Takayuki Teramoto2, Kanji Okumoto2, Eisei Matsui1, Yoshiyuki Anchi1, Arata Imamura1, Naho Okano1, Nobushige Nakajo2(1. Graduate School of Systems Life Sciences, Kyushu University, 2. Graduate School of Sciences, Kyushu University)

[OP07-05]Morphogenesis and cell fate during olfactory epithelium formation

Vincent Demont1, Aurélie Millaud1, Clément Cazorla1, Gaëlle Letort2, Anne Pizzoccaro1, Pascale Dufourcq1, Frédérique Gaits-Iacovoni1, Marion Aguirrebengoa3, Tomas Caetano3, David Sanchez4, Delphine Labourdette5,6, *Julie BATUT1(1. Unité de Biologie Moléculaire, Cellulaire et du Développement (MCD, UMR5077), Centre de Biologie Intégrative (CBI, FR 3743), Université de Toulouse, CNRS, UPS, 31062, France., 2. Institut Pasteur, Université de Paris, CNRS UMR3738, Department of Developmental and Stem Cell Biology, F-75015 Paris, France, 3. BigA, NGS Data Analysis Facility, Center of Integrative Biology (CBI, FR 3743), Université de Toulouse, CNRS, 31062 Toulouse, France., 4. INSA, Département Génie Mathématique et Modélisation, 135 avenue de Rangueil 31077 Toulouse Cédex 4, France. , 5. Plateforme GeT, Genotoul, 31100 Toulouse, France., 6. Laboratoire d'Ingénierie des Systèmes Biologiques et des Procédés, Université de Toulouse, CNRS, INRA, INSA, 31077 Toulouse, France.)

[OP01-06]Abrupt suppression of NODAL signaling triggers primitive streak regression and axial body formation in amniote embryosNODALシグナルの急激な低下が羊膜類における体軸形成と原始線条縮退を誘導する

*Yu Ieda1,2, Carole Phan1, Olinda Alegria-Prévot1, Lieng Taing3, Takayuki Suzuki4, Aurélien Villedieu1, Jérôme Gros1(1. Institut Pasteur, Université de Paris, CNRS UMR3738, Developmental and Stem Cell Biology Department, 75015 Paris, France., 2. Collège Doctoral, Complexité du Vivant, Sorbonne Université, Paris, France., 3. Institut Pasteur, Université Paris Cité, CNRS UMR 3738, Epigenomics, Proliferation, and the Identity of Cells, Department of Developmental and Stem Cell Biology, 75015 Paris, France., 4. Department of Biology, Graduate School of Science, Osaka Metropolitan University, Osaka, Japan)

[OP05-06(P048)]Dynamics of SOX17-expressing endothelial precursors during vascular network formation integrating extraembryonic and embryonic circulation胚体内外の血流を統合する血管内皮ネットワーク形成における SOX17 陽性前駆細胞群の動態

*Rie Saba1, Naoki Takeshita1, So Miyanishi1, Kana Kitazaki1, Mitsuru Morimoto2, Kenta Yashiro1(1. Kyoto Prefectural University of Medicine, 2. RIKEN, BDR)

[S07-04]A DLX5 distal enhancer is a skeleton specific cis-regulatory element involved in bone homeostasis and osteoporosisあるDLX5遠位エンハンサーは骨代謝や骨粗鬆症に関わる骨格特異的なシス制御エレメントである

*Shinse Fujita1,2,6, Shoichiro Tani3, Harumi Nakao4, Yasuhide Iwanaga1,2,6, Hiroyuki Okada1,2, Shinsuke Ohba5, Taku Saito2, Sakae Tanaka2, Ung-il Chung1,6, Hironori Hojo7(1. Laboratory of Clinical Biotechnology, Center for Disease Biology and Integrative Medicine, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan, 2. Department of Orthopaedic Surgery, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan, 3. Children’s Medical Center Research Institute at the University of Texas Southwestern, Dallas, TX, USA, 4. Laboratory of Animal Resources, Center for Disease Biology and Integrative Medicine, Graduate School of Medicine, the University of Tokyo, Tokyo, Japan, 5. Department of Tissue and Developmental Biology, Graduate School of Dentistry, The University of Osaka , Osaka, Japan, 6. Department of Bioengineering, Graduate School of Engineering, The University of Tokyo, Tokyo, Japan, 7. Bioinformatics Research Unit, Graduate School of Dentistry, The University of Osaka, Osaka, Japan)

[S08-04]Study on the epigenome evolution in primates using iPS cellsiPS細胞を用いた霊長類のエピゲノム進化の研究

*Kenji Ichiyanagi1(1. Graduate School of Bioagricultural Sciences, Nagoya University)

[OP01-07(P016)]Mechanical force generated by the uterine myometrium specifies the direction of the anterior-posterior axis in the mouse post-implantation embryo子宮筋層からの力がマウス胚の前後軸方向を決める

*Toshihiko Fujimori1,2, Seiya Mikoshiba1,3, Sanae Oka1, Takaya Abe4, Hiroshi Kiyonari4(1. National Institute for Basic Biology, 2. SOKENDAI (The Graduate School of Advanced Studies), 3. Nagoya Univ., 4. Riken BDR)

[OP02-07(P047)]Root waving enables obstacle-avoiding and diverse gravitropic growth根の波打ち運動による障害物環境下での重力指向成長と運動多様性の促進

Toya Suzuki1, Tatsuaki Goh2, *Koichi Fujimoto1(1. Hiroshima University, 2. Nara Institute of Science and Technology)

[OP05-07(P031)]3D imaging of the pulmonary vein-left atrium connection in mouse embryogenesisマウス胚発生における肺静脈-左心房接合部の3Dイメージング

*Sou Miyanishi1, Rie Saba1, Kana Kitazaki1, Naoki Takeshita1,2, Yoshiro Nakajima1, Kenta Yashiro1(1. Anatomy & Developmental Biology, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, 2. Pediatrics, Graduate School of Medical Science, Kyoto Prefectural University of Medicine)

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