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源强特性影响小麦产量潜力的“布线图”。

A 'wiring diagram' for source strength traits impacting wheat yield potential.

机构信息

Division of Plant and Crop Science, School of Biosciences, University of Nottingham, Sutton Bonington LE12 5RD, UK.

International Maize and Wheat Improvement Center (CIMMYT), Km. 45, Carretera Mexico-Veracruz, El Batan, Texcoco, Mexico.

出版信息

J Exp Bot. 2023 Jan 1;74(1):72-90. doi: 10.1093/jxb/erac415.

Abstract

Source traits are currently of great interest for the enhancement of yield potential; for example, much effort is being expended to find ways of modifying photosynthesis. However, photosynthesis is but one component of crop regulation, so sink activities and the coordination of diverse processes throughout the crop must be considered in an integrated, systems approach. A set of 'wiring diagrams' has been devised as a visual tool to integrate the interactions of component processes at different stages of wheat development. They enable the roles of chloroplast, leaf, and whole-canopy processes to be seen in the context of sink development and crop growth as a whole. In this review, we dissect source traits both anatomically (foliar and non-foliar) and temporally (pre- and post-anthesis), and consider the evidence for their regulation at local and whole-plant/crop levels. We consider how the formation of a canopy creates challenges (self-occlusion) and opportunities (dynamic photosynthesis) for components of photosynthesis. Lastly, we discuss the regulation of source activity by feedback regulation. The review is written in the framework of the wiring diagrams which, as integrated descriptors of traits underpinning grain yield, are designed to provide a potential workspace for breeders and other crop scientists that, along with high-throughput and precision phenotyping data, genetics, and bioinformatics, will help build future dynamic models of trait and gene interactions to achieve yield gains in wheat and other field crops.

摘要

源特性目前对于提高产量潜力非常重要;例如,人们正在努力寻找改变光合作用的方法。然而,光合作用只是作物调节的一个组成部分,因此必须在综合的系统方法中考虑汇活动和整个作物中各种过程的协调。已经设计了一组“接线图”作为一种可视化工具,以整合小麦不同发育阶段各组成过程的相互作用。它们使人们能够在汇发育和整个作物生长的背景下看到叶绿体、叶片和整个冠层过程的作用。在这篇综述中,我们从解剖学(叶片和非叶片)和时间(开花前和开花后)上剖析源特性,并考虑其在局部和整株/作物水平上的调节证据。我们考虑了冠层的形成如何为光合作用的组成部分带来挑战(自遮挡)和机遇(动态光合作用)。最后,我们讨论了源活性的反馈调节。本综述是在接线图的框架内编写的,作为支撑粒产量的特性的综合描述符,旨在为育种家和其他作物科学家提供一个潜在的工作空间,这些特性与高通量和精确表型数据、遗传学和生物信息学一起,将有助于构建未来的动态特性和基因相互作用模型,以实现小麦和其他大田作物的产量增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6658/9786870/6206980feb50/erac415f0001.jpg

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