首页> 外文期刊>Molecular Plant >The LysM Receptor-Like Kinase LysM RLK1 Is Required to Activate Defense and Abiotic-Stress Responses Induced by Overexpression of Fungal Chitinases in Arabidopsis Plants
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The LysM Receptor-Like Kinase LysM RLK1 Is Required to Activate Defense and Abiotic-Stress Responses Induced by Overexpression of Fungal Chitinases in Arabidopsis Plants

机译:需要LysM受体样激酶LysM RLK1来激活拟南芥植物中真菌几丁质酶过表达诱导的防御和非生物胁迫响应。

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摘要

Application of crab shell chitin or pentamer chitin oligosaccharide to Arabidopsis seedlings increased tolerance to salinity in wild-type but not in knockout mutants of the LysM Receptor-Like Kinase1 (CERK1/LysM RLK1) gene, known to play a critical role in signaling defense responses induced by exogenous chitin. Arabidopsis plants overexpressing the endochitinase chit36 and hexoaminidase excy1 genes from the fungus Trichoderma asperelleoides T203 showed increased tolerance to salinity, heavy-metal stresses, and Botrytis cinerea infection. Resistant lines, overexpressing fungal chitinases at different levels, were outcrossed to lysm rlk1 mutants. Independent homozygous hybrids lost resistance to biotic and abiotic stresses, despite enhanced chitinase activity. Expression analysis of 270 stress-related genes, including those induced by reactive oxygen species (ROS) and chitin, revealed constant up-regulation (at least twofold) of 10 genes in the chitinase-overexpressing line and an additional 76 salt-induced genes whose expression was not elevated in the lysm rlk1 knockout mutant or the hybrids harboring the mutation. These findings elucidate that chitin-induced signaling mediated by LysM RLK1 receptor is not limited to biotic stress response but also encompasses abiotic-stress signaling and can be conveyed by ectopic expression of chitinases in plants.
机译:在拟南芥幼苗上应用蟹壳甲壳质或五聚体甲壳质低聚糖可提高野生型对盐分的耐受性,但对LysM Receptor-Like Kinase1(CERK1 / LysM RLK1)基因的敲除突变体却不起作用,已知其在防御信号反应中起关键作用由外源几丁质诱导。过表达真菌木霉T203的内切几丁质酶chit36和己糖胺酶excy1基因的拟南芥植物对盐分,重金属胁迫和灰霉病的耐受性增强。在不同水平上过表达真菌几丁质酶的抗性系与lysm rlk1突变体杂交。尽管几丁质酶活性增强,但独立的纯合子杂种仍丧失了对生物和非生物胁迫的抗性。对270个与压力有关的基因的表达分析,包括由活性氧(ROS)和几丁质诱导的基因,发现几丁质酶过表达株系中的10个基因和另外76个盐诱导的基因的恒定上调(至少两倍)在lysm rlk1基因敲除突变体或携带该突变体的杂种中表达没有升高。这些发现阐明了由LysM RLK1受体介导的几丁质诱导的信号传导不仅限于生物胁迫反应,而且还包括非生物胁迫信号传导,并且可以通过在植物中几丁质酶的异位表达来传达。

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