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Genetic control of compound leaf development in the mungbean (Vigna radiata L.)

机译:绿豆(Vigna radiata L.)复叶发育的遗传控制

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摘要

Many studies suggest that there are distinct regulatory processes controlling compound leaf development in different clades of legumes. Loss of function of the LEAFY (LFY) orthologs results in a reduction of leaf complexity to different degrees in inverted repeat-lacking clade (IRLC) and non-IRLC species. To further understand the role of LFY orthologs and the molecular mechanism in compound leaf development in non-IRLC plants, we studied leaf development in unifoliate leaf (un) mutant, a classical mutant of mungbean (Vigna radiata L.), which showed a complete conversion of compound leaves into simple leaves. Our analysis revealed that UN encoded the mungbean LFY ortholog (VrLFY) and played a significant role in leaf development. In situ RNA hybridization results showed that STM-like KNOXI genes were expressed in compound leaf primordia in mungbean. Furthermore, increased leaflet number in heptafoliate leaflets1 (hel1) mutants was demonstrated to depend on the function of VrLFY and KNOXI genes in mungbean. Our results suggested that HEL1 is a key factor coordinating distinct processes in the control of compound leaf development in mungbean and its related non-IRLC legumes.
机译:许多研究表明,在不同的豆类进化枝中有不同的调控过程来控制复合叶片的发育。 LEAFY(LFY)直系同源物的功能丧失导致反向重复缺失进化枝(IRLC)和非IRLC物种的叶片复杂性降低程度不同。为了进一步了解LFY直系同源物在非IRLC植物中复合叶发育中的作用及其分子机制,我们研究了单叶叶(un)突变体(绿豆(Vigna radiata L.)的经典突变体)的叶发育将复合叶转化为单叶。我们的分析表明,联合国对绿豆LFY直系同源物(VrLFY)进行编码,并在叶片发育中发挥了重要作用。原位RNA杂交结果表明,STM-like KNOXI基因在绿豆复合叶原基中表达。此外,已证明在七叶形Leaflet1(hel1)突变体中增加的小叶数目取决于绿豆中VrLFY和KNOXI基因的功能。我们的结果表明,HEL1是协调控制绿豆及其相关非IRLC豆科植物复合叶片发育过程中不同过程的关键因素。

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