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胼胝质和水杨酸是拟南芥中独脚金内酯介导的抗病性的关键决定因素。

Callose and Salicylic Acid Are Key Determinants of Strigolactone-Mediated Disease Resistance in Arabidopsis.

作者信息

Zhao Xiaosheng, Liu Qiuping, Tan Leitao

机构信息

School of Life Sciences, Guizhou Normal University, Guiyang 550025, China.

出版信息

Plants (Basel). 2024 Oct 2;13(19):2766. doi: 10.3390/plants13192766.

Abstract

Research has demonstrated that strigolactones (SLs) mediate plant disease resistance; however, the basal mechanism is unclear. Here, we provide key genetic evidence supporting how SLs mediate plant disease resistance. Exogenous application of the SL analog, -GR24, increased resistance to virulent . SL-biosynthetic mutants and overexpression lines of more axillary growth 1 (, an SL-biosynthetic gene) enhanced and reduced bacterial susceptibility, respectively. In addition, -GR24 promoted bacterial pattern flg22-induced callose deposition and hydrogen peroxide production. SL-biosynthetic mutants displayed reduced callose deposition but not hydrogen peroxide production under flg22 treatment. Moreover, -GR24 did not affect avirulent effector-induced cell death between Col-0 and SL-biosynthetic mutants. Furthermore, -GR24 increased the free salicylic acid (SA) content and significantly promoted the expression of pathogenesis-related gene 1 related to SA signaling. Importantly, -GR24- and -induced bacterial resistance disappeared completely in Arabidopsis plants lacking both callose synthase and SA. Taken together, our data revealed that callose and SA are two important determinants in SL-mediated plant disease resistance, at least in Arabidopsis.

摘要

研究表明,独脚金内酯(SLs)介导植物抗病性;然而,其基本机制尚不清楚。在此,我们提供了关键的遗传学证据,支持SLs介导植物抗病性的方式。外源施加SL类似物-GR24可增强对致病力强的[病原菌名称未给出]的抗性。SL生物合成突变体和更多腋芽生长1(MAX1,一个SL生物合成基因)的过表达系分别增强和降低了对细菌的易感性。此外,-GR24促进了细菌模式分子flg22诱导的胼胝质沉积和过氧化氢产生。在flg22处理下,SL生物合成突变体的胼胝质沉积减少,但过氧化氢产生没有减少。此外,-GR24不影响无毒效应子诱导的Col-0和SL生物合成突变体之间的细胞死亡。此外,-GR24增加了游离水杨酸(SA)含量,并显著促进了与SA信号传导相关的病程相关基因1的表达。重要的是,在缺乏胼胝质合酶和SA的拟南芥植物中,-GR24和[未明确物质]诱导的细菌抗性完全消失。综上所述,我们的数据表明,胼胝质和SA是SL介导的植物抗病性中的两个重要决定因素,至少在拟南芥中是这样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e29/11478789/6491d0ce75d9/plants-13-02766-g001.jpg

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