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气候智能型作物:赋予耐涝性的关键根系解剖学特征。

Climate-smart crops: key root anatomical traits that confer flooding tolerance.

作者信息

Yamauchi Takaki, Noshita Koji, Tsutsumi Nobuhiro

机构信息

Japan Science and Technology Agency, PRESTO, Kawaguchi, Saitama 332-0012, Japan.

Graduate School of Agricultural and Life Sciences, The University of Tokyo, Bunkyo, Tokyo 113-8657, Japan.

出版信息

Breed Sci. 2021 Feb;71(1):51-61. doi: 10.1270/jsbbs.20119. Epub 2021 Jan 6.

Abstract

Plants require water, but a deficit or excess of water can negatively impact their growth and functioning. Soil flooding, in which root-zone is filled with excess water, restricts oxygen diffusion into the soil. Global climate change is increasing the risk of crop yield loss caused by flooding, and the development of flooding tolerant crops is urgently needed. Root anatomical traits are essential for plants to adapt to drought and flooding, as they determine the balance between the rates of water and oxygen transport. The stele contains xylem and the cortex contains aerenchyma (gas spaces), which respectively contribute to water uptake from the soil and oxygen supply to the roots; this implies that there is a trade-off between the ratio of cortex and stele sizes with respect to adaptation to drought or flooding. In this review, we analyze recent advances in the understanding of root anatomical traits that confer drought and/or flooding tolerance to plants and illustrate the trade-off between cortex and stele sizes. Moreover, we introduce the progress that has been made in modelling and fully automated analyses of root anatomical traits and discuss how key root anatomical traits can be used to improve crop tolerance to soil flooding.

摘要

植物需要水,但水分不足或过多都会对其生长和功能产生负面影响。土壤淹水时,根区充满过量水分,会限制氧气向土壤中的扩散。全球气候变化正在增加因洪水导致作物减产的风险,因此迫切需要培育耐淹作物。根系解剖特征对于植物适应干旱和淹水至关重要,因为它们决定了水分和氧气运输速率之间的平衡。中柱包含木质部,皮层包含通气组织(气腔),它们分别有助于从土壤中吸收水分和为根系供应氧气;这意味着在适应干旱或淹水方面,皮层和中柱大小的比例存在权衡。在本综述中,我们分析了在理解赋予植物耐旱和/或耐淹能力的根系解剖特征方面的最新进展,并阐述了皮层和中柱大小之间的权衡。此外,我们介绍了在根系解剖特征的建模和全自动分析方面取得的进展,并讨论了关键根系解剖特征如何用于提高作物对土壤淹水的耐受性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f6b/7973492/cc587bb9ac2b/71_051-g001.jpg

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