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What Has Natural Variation Taught Us about Plant Development, Physiology, and Adaptation?

机译:自然变化对我们的植物发育,生理学和适应性有什么启发?

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摘要

Nearly 100 genes and functional polymorphisms underlying natural variation in plant development and physiology have been identified. In crop plants, these include genes involved in domestication traits, such as those related to plant architecture, fruit and seed structure and morphology, as well as yield and quality traits improved by subsequent crop breeding. In wild plants, comparable traits have been dissected mainly in Arabidopsis thaliana. In this review, we discuss the major contributions of the analysis of natural variation to our understanding of plant development and physiology, focusing in particular on the timing of germination and flowering, plant growth and morphology, primary metabolism, and mineral accumulation. Overall, functional polymorphisms appear in all types of genes and gene regions, and they may have multiple mutational causes. However, understanding this diversity in relation to adaptation and environmental variation is a challenge for which tools are now available.
机译:已经鉴定出将近100种基因和功能性多态性是植物发育和生理学中自然变异的基础。在农作物中,这些基因包括与驯化性状有关的基因,例如与植物结构,果实和种子结构及形态有关的基因,以及通过随后的农作物育种改良的产量和品质性状。在野生植物中,可比较的性状主要在拟南芥中被解剖。在这篇综述中,我们讨论了自然变异分析对我们对植物发育和生理的理解的主要贡献,尤其着重于发芽和开花的时间,植物生长和形态,初级代谢和矿物质积累。总体而言,功能多态性出现在所有类型的基因和基因区域中,并且它们可能具有多种突变原因。但是,了解与适应性和环境变化有关的多样性是目前可用工具的挑战。

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