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病原体相关分子模式触发免疫的模式分子在提高作物耐寒性中的潜在作用。

Potential roles for pattern molecule of PAMP-triggered immunity in improving crop cold tolerance.

作者信息

Jin Ye, Tuang Za Khai, Wang Yizhong, Wu Zhenjiang, Yang Wannian

机构信息

Hubei Key Laboratory of Genetic Regulation and Integrative Biology, School of Life Sciences, Central China Normal University, Wuhan, 430079, China.

出版信息

Plant Cell Rep. 2022 Feb;41(2):337-345. doi: 10.1007/s00299-021-02811-4. Epub 2021 Nov 24.

Abstract

The application of flagellin 22 (flg22), the most widely studied PAMP, enhance crop cold tolerance. ICE1-CBF pathway and SA signaling is involved in the alleviation of cold injury by flg22 treatment. Pathogen infection cross-activates cold response and increase cold tolerance of host plants. However, it is not possible to use the infection to increase cold tolerance of field plants. Here flagellin 22 (flg22), the most widely studied PAMP (pathogen-associated molecular patterns), was used to mimic the pathogen infection to cross-activate cold response. Flg22 treatment alleviated the injury caused by freezing in Arabidopsis, oilseed and tobacco. In Arabidopsis, flg22 activated the expression of immunity and cold-related genes. Moreover, the flg22 induced alleviation of cold injury was lost in NahG transgenic line (SA-deficient), sid2-2 and npr1-1 mutant plants, and flg22-induced expression of cold tolerance-related genes, which indicating that salicylic acid signaling pathway is required for the alleviation of cold injury by flg22 treatment. In short flg22 application can be used to enhance cold tolerance in field via a salicylic acid-depended pathway.

摘要

鞭毛蛋白22(flg22)是研究最为广泛的病原体相关分子模式(PAMP),其应用可增强作物的耐寒性。ICE1-CBF途径和水杨酸(SA)信号传导参与了flg22处理对冷害的缓解作用。病原体感染可交叉激活植物的冷反应并提高宿主植物的耐寒性。然而,利用病原体感染来提高田间作物的耐寒性并不可行。在此,研究人员使用了研究最为广泛的病原体相关分子模式鞭毛蛋白22(flg22)来模拟病原体感染,以交叉激活植物的冷反应。Flg22处理减轻了拟南芥、油菜和烟草中冻害造成的损伤。在拟南芥中,flg22激活了免疫相关基因和冷相关基因的表达。此外,在NahG转基因系(缺乏SA)、sid2-2和npr1-1突变体植株中,flg22诱导的冷害减轻效果消失,且flg22诱导的耐寒相关基因表达也消失,这表明水杨酸信号通路是flg22处理减轻冷害所必需的。简而言之,应用flg22可通过依赖水杨酸的途径来提高田间作物的耐寒性。

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