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水稻中的中度水分胁迫诱导与脱落酸和生长素反应相关的根鞘形成。

Moderate water stress in rice induces rhizosheath formation associated with abscisic acid and auxin responses.

作者信息

Zhang Yingjiao, Du Huan, Gui Yao, Xu Feiyun, Liu Jianping, Zhang Jianhua, Xu Weifeng

机构信息

Center for Plant Water-use and Nutrition Regulation and College of Life Sciences, Joint International Research Laboratory of Water and Nutrient in Crop, Fujian Agriculture and Forestry University, Fuzhou, China.

Institute of Oceanography, Minjiang University, Fuzhou, China.

出版信息

J Exp Bot. 2020 May 9;71(9):2740-2751. doi: 10.1093/jxb/eraa021.

Abstract

The rhizosheath is known to be beneficial for drought resistance in many plants, but the regulation of rhizosheath formation in rice plants is unclear. Here, we investigate rhizosheath formation in different rice varieties and root hair mutants. Our results showed that moderate water stress in rice induced rhizosheath formation. The soil porosity and water content were higher in the rice rhizosheath than in the rice bulk soil under moderate water stress. Additionally, rhizosheath formation in short root hair mutants was lower than in wild-type rice under moderate water stress. Moreover, transcriptomic results indicated that abscisic acid (ABA) and auxin were involved in root and root hair responses in rhizosheath formation. Further, blocking ABA and auxin pathways in wild type and in rhl1-1, the shortest root hair mutant, rhizosheath formation and root hair length were significantly decreased under moderate water stress. However, wild type plants maintained a higher root ABA content, root basipetal auxin transport, root hair length, and amount of rhizosheath than did rhl1-1. Our results suggest that moderate water stress in rice induces rhizosheath formation by modulating the ABA and auxin responses to regulate root and root hair growth, which may be used to breed rice varieties resistant to drought.

摘要

已知根际鞘对许多植物的抗旱性有益,但水稻中根际鞘形成的调控尚不清楚。在此,我们研究了不同水稻品种和根毛突变体中的根际鞘形成。我们的结果表明,水稻中的适度水分胁迫诱导了根际鞘的形成。在适度水分胁迫下,水稻根际鞘中的土壤孔隙度和含水量高于水稻整体土壤。此外,在适度水分胁迫下,短根毛突变体中的根际鞘形成低于野生型水稻。而且,转录组学结果表明,脱落酸(ABA)和生长素参与了根际鞘形成过程中的根和根毛反应。此外,在野生型和最短根毛突变体rhl1-1中阻断ABA和生长素途径后,在适度水分胁迫下根际鞘形成和根毛长度显著降低。然而,野生型植株比rhl1-1保持了更高的根ABA含量、根向基生长素运输、根毛长度和根际鞘数量。我们的结果表明,水稻中的适度水分胁迫通过调节ABA和生长素反应来诱导根际鞘形成,从而调节根和根毛生长,这可用于培育抗旱水稻品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb20/7210750/49393e9fa31d/eraa021f0001.jpg

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