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三种关键根系性状的叠加助力耐洪水稻育种。

The Pyramiding of Three Key Root Traits Aid Breeding of Flood-Tolerant Rice.

作者信息

Lin Chen, Zhu Tongtong, Ogorek Lucas León Peralta, Wang Youping, Sauter Margret, Pedersen Ole

机构信息

Key Laboratory of Plant Functional Genomics of the Ministry of Education, Yangzhou University, Yangzhou 225009, China.

Freshwater Biological Laboratory, Department of Biology, University of Copenhagen, 2100 Copenhagen, Denmark.

出版信息

Plants (Basel). 2022 Aug 4;11(15):2033. doi: 10.3390/plants11152033.

Abstract

Flooding is constantly threatening the growth and yield of crops worldwide. When flooding kicks in, the soil becomes water-saturated and, therefore, the roots are the first organs to be exposed to excess water. Soon after flooding, the soil turns anoxic and the roots can no longer obtain molecular oxygen for respiration from the rhizosphere, rendering the roots dysfunctional. Rice, however, is a semi-aquatic plant and therefore relatively tolerant to flooding due to adaptive traits developed during evolution. In the present review, we have identified three key root traits, viz. cortical aerenchyma formation, a barrier to radial oxygen loss and adventitious root growth. The understanding of the physiological function, the molecular mechanisms, and the genetic regulation of these three traits has grown substantially and therefore forms the backbone of this review. Our synthesis of the recent literature shows each of the three key root traits contributes to flood tolerance in rice. One trait, however, is generally insufficient to enhance plant tolerance to flooding. Consequently, we suggest comprehensive use of all three adaptive traits in a pyramiding approach in order to improve tolerance to flooding in our major crops, in general, and in rice, in particular.

摘要

洪水持续威胁着全球农作物的生长和产量。当洪水来袭时,土壤会变得水饱和,因此,根系是最先接触到过量水分的器官。洪水发生后不久,土壤会变成缺氧状态,根系无法再从根际获得用于呼吸的分子氧,从而使根系功能失调。然而,水稻是一种半水生植物,由于在进化过程中形成的适应性特征,它相对耐涝。在本综述中,我们确定了三个关键的根系特征,即皮层通气组织的形成、径向氧损失的屏障和不定根的生长。对这三个特征的生理功能、分子机制和遗传调控的理解有了显著进展,因此构成了本综述的核心内容。我们对近期文献的综合分析表明,这三个关键根系特征中的每一个都有助于水稻的耐涝性。然而,单一特征通常不足以提高植物的耐涝性。因此,我们建议采用聚合方法综合利用所有这三个适应性特征,以提高主要作物,特别是水稻的耐涝性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/624e/9370703/d5f7eb8c9c78/plants-11-02033-g001.jpg

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