A molecular framework underlying the compound leaf pattern of Medicago truncatula

被引:0
|
作者
Liangliang He
Yu Liu
Hua He
Ye Liu
Jinfeng Qi
Xiaojia Zhang
Youhan Li
Yawen Mao
Shaoli Zhou
Xiaoling Zheng
Quanzi Bai
Baolin Zhao
Dongfa Wang
Jiangqi Wen
Kirankumar S. Mysore
Million Tadege
Yongmei Xia
Jianghua Chen
机构
[1] CAS Key Laboratory of Tropical Plant Resources and Sustainable Use,School of Life Sciences
[2] CAS Center for Excellence for Molecular Plant Sciences,Department of Plant and Soil Sciences, Institute for Agricultural Biosciences
[3] Xishuangbanna Tropical Botanical Garden,undefined
[4] Chinese Academy of Sciences,undefined
[5] Center of Economic Botany,undefined
[6] Core Botanical Gardens,undefined
[7] Chinese Academy of Sciences,undefined
[8] Menglun,undefined
[9] University of Chinese Academy of Sciences,undefined
[10] University of Science and Technology of China,undefined
[11] Noble Research Institute,undefined
[12] Oklahoma State University,undefined
来源
Nature Plants | 2020年 / 6卷
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摘要
Compound leaves show more complex patterns than simple leaves, and this is mainly because of a specific morphogenetic process (leaflet initiation and arrangement) that occurs during their development. How the relevant morphogenetic activity is established and modulated to form a proper pattern of leaflets is a central question. Here we show that the trifoliate leaf pattern of the model leguminous plant Medicago truncatula is controlled by the BEL1-like homeodomain protein PINNATE-LIKE PENTAFOLIATA1 (PINNA1). We identify PINNA1 as a determinacy factor during leaf morphogenesis that directly represses transcription of the LEAFY (LFY) orthologue SINGLE LEAFLET1 (SGL1), which encodes an indeterminacy factor key to the morphogenetic activity maintenance. PINNA1 functions alone in the terminal leaflet region and synergizes with another determinacy factor, the C2H2 zinc finger protein PALMATE-LIKE PENTAFOLIATA1 (PALM1), in the lateral leaflet regions to define the spatiotemporal expression of SGL1, leading to an elaborate control of morphogenetic activity. This study reveals a framework for trifoliate leaf-pattern formation and sheds light on mechanisms generating diverse leaf forms.
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页码:511 / 521
页数:10
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