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Leaf morphogenesis:The multifaceted roles of mechanics

摘要Plants produce a rich diversity of biological forms,and the diversity of leaves is especially notable.Mech-anisms of leaf morphogenesis have been studied in the past two decades,with a growing focus on the inter-active roles of mechanics in recent years.Growth of plant organs involves feedback by mechanical stress:growth induces stress,and stress affects growth and morphogenesis.Although much attention has been given to potential stress-sensing mechanisms and cellular responses,the mechanical principles guiding morphogenesis have not been well understood.Here we synthesize the overarching roles of mechanics and mechanical stress in multilevel and multiple stages of leaf morphogenesis,encompassing leaf primor-dium initiation,phyllotaxis and venation patterning,and the establishment of complex mature leaf shapes.Moreover,the roles of mechanics at multiscale levels,from subcellular cytoskeletal molecules to single cells to tissues at the organ scale,are articulated.By highlighting the role of mechanical buckling in the for-mation of three-dimensional leaf shapes,this review integrates the perspectives of mechanics and biology to provide broader insights into the mechanobiology of leaf morphogenesis.

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作者 Kexin Guo [1] Changjin Huang [1] Yansong Miao [2] Daniel J.Cosgrove [3] K.Jimmy Hsia [4] 学术成果认领
作者单位 School of Mechanical and Aerospace Engineering,Nanyang Technological University,Singapore 639798,Singapore [1] School of Biological Sciences,Nanyang Technological University,Singapore 637551,Singapore [2] Department of Biology,The Pennsylvania State University,University Park,PA 16802,USA [3] School of Mechanical and Aerospace Engineering,Nanyang Technological University,Singapore 639798,Singapore;School of Chemical and Biomedical Engineering,Nanyang Technological University,Singapore 637459,Singapore [4]
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发布时间 2022-08-23
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分子植物(英文版)

分子植物(英文版)

2022年15卷7期

1098-1119页

SCIMEDLINEISTICCSCDCABP

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