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首页> 外文期刊>The Plant Cell >Pod shattering in grain legumes: emerging genetic and environment-related patterns
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Pod shattering in grain legumes: emerging genetic and environment-related patterns

机译:在粮食豆类中破碎的豆荚:新兴遗传和环境相关的模式

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摘要

A reduction in pod shattering is one of the main components of grain legume domestication. Despite this, many domesticated legumes suffer serious yield losses due to shattering, particularly under arid conditions. Mutations related to pod shattering modify the twisting force of pod walls or the structural strength of the dehiscence zone in pod sutures. At a molecular level, a growing body of evidence indicates that these changes are controlled by a relatively small number of key genes that have been selected in parallel across grain legume species, supporting partial molecular convergence. Legume homologs of Arabidopsis thaliana silique shattering genes play only minor roles in legume pod shattering. Most domesticated grain legume species contain multiple shattering-resistance genes, with mutants of each gene typically showing only partial shattering resistance. Hence, crosses between varieties with different genes lead to transgressive segregation of shattering alleles, producing plants with either enhanced shattering resistance or atavistic susceptibility to the trait. The frequency of these resistance pod-shattering alleles is often positively correlated with environmental aridity. The continued development of pod-shattering-related functional information will be vital for breeding crops that are suited to the increasingly arid conditions expected in the coming decades.
机译:减少豆荚破碎是谷类豆类驯化的主要组成部分之一。尽管如此,许多驯化豆科植物由于粉碎而遭受严重的产量损失,尤其是在干旱条件下。与豆荚破碎相关的突变会改变豆荚壁的扭转力或豆荚缝合线中裂开区的结构强度。在分子水平上,越来越多的证据表明,这些变化由相对较少的关键基因控制,这些基因在谷类豆类物种中平行选择,支持部分分子聚合。拟南芥豆荚破碎基因的豆科同源物在豆科豆荚破碎中仅起次要作用。大多数驯化的谷类豆科植物都含有多个抗粉碎性基因,每个基因的突变体通常只表现出部分抗粉碎性。因此,具有不同基因的品种之间的杂交导致破碎等位基因的越界分离,产生对该性状具有增强的破碎抗性或返祖易感性的植株。这些抗豆荚破碎等位基因的频率通常与环境干旱呈正相关。持续开发与豆荚破碎相关的功能信息对于培育适合未来几十年日益干旱条件的作物至关重要。

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  • 来源
    《The Plant Cell》 |2021年第2期|共21页
  • 作者单位

    Univ Calif Davis Dept Plant Sci MS1 Sect Crop &

    Ecosyst Sci 1 Shields Ave Davis CA 95616 USA;

    Univ Calif Davis Dept Plant Sci MS1 Sect Crop &

    Ecosyst Sci 1 Shields Ave Davis CA 95616 USA;

    Univ Calif Davis Dept Plant Sci MS1 Sect Crop &

    Ecosyst Sci 1 Shields Ave Davis CA 95616 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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