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豆科植物的NOOT-BOP-COCH-LIKE基因是脱落过程的保守调控因子,脱落是栽培作物中的一个主要农艺性状。

The legume NOOT-BOP-COCH-LIKE genes are conserved regulators of abscission, a major agronomical trait in cultivated crops.

作者信息

Couzigou Jean-Malo, Magne Kevin, Mondy Samuel, Cosson Viviane, Clements Jonathan, Ratet Pascal

机构信息

Institute of Plant Sciences Paris-Saclay (IPS2), CNRS, INRA, Université Paris-Sud, Université Evry, Université Paris-Diderot, Université Paris-Saclay, Bâtiment 630, 91405, Orsay, France.

Laboratoire de Recherche en Sciences Végétales, UMR5546, Université de Toulouse, CNRS, 31326, Castanet Tolosan, France.

出版信息

New Phytol. 2016 Jan;209(1):228-40. doi: 10.1111/nph.13634. Epub 2015 Sep 21.

Abstract

Plants are able to lose organs selectively through a process called abscission. This process relies on the differentiation of specialized territories at the junction between organs and the plant body that are called abscission zones (AZ). Several genes control the formation or functioning of these AZ. We have characterized BLADE-ON-PETIOLE (BOP) orthologues from several legume plants and studied their roles in the abscission process using a mutant approach. Here, we show that the Medicago truncatula NODULE ROOT (NOOT), the Pisum sativum COCHLEATA (COCH) and their orthologue in Lotus japonicus are strictly necessary for the abscission of not only petals, but also leaflets, leaves and fruits. We also showed that the expression pattern of the M. truncatula pNOOT::GUS fusion is associated with functional and vestigial AZs when expressed in Arabidopsis. In addition, we show that the stip mutant from Lupinus angustifolius, defective in stipule formation and leaf abscission, is mutated in a BOP orthologue. In conclusion, this study shows that this clade of proteins plays an important conserved role in promoting abscission of all aerial organs studied so far.

摘要

植物能够通过一个称为脱落的过程选择性地脱落器官。这个过程依赖于器官与植物体连接处称为脱落区(AZ)的特化区域的分化。几个基因控制着这些脱落区的形成或功能。我们已经鉴定了几种豆科植物中的叶柄上的叶片(BOP)直系同源物,并使用突变体方法研究了它们在脱落过程中的作用。在这里,我们表明,蒺藜苜蓿的结节根(NOOT)、豌豆的耳蜗状(COCH)及其在百脉根中的直系同源物不仅对于花瓣的脱落,而且对于小叶、叶片和果实的脱落都是绝对必要的。我们还表明,当在拟南芥中表达时,蒺藜苜蓿pNOOT::GUS融合蛋白的表达模式与功能性和残留的脱落区相关。此外,我们表明,窄叶羽扇豆中在托叶形成和叶片脱落方面有缺陷的stip突变体在一个BOP直系同源物中发生了突变。总之,这项研究表明,这一类蛋白质在促进迄今为止所研究的所有地上器官的脱落方面发挥着重要的保守作用。

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