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The Arabidopsis leucine-rich repeat receptor kinase MIK2/LRR-KISS connects cell wall integrity sensing, root growth and response to abiotic and biotic stresses.

机译:富含拟南芥的亮氨酸重复受体激酶MIK2 / LRR-KISS连接细胞壁完整性感应,根生长以及对非生物和生物胁迫的响应。

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摘要

Plants actively perceive and respond to perturbations in their cell walls which arise during growth, biotic and abiotic stresses. However, few components involved in plant cell wall integrity sensing have been described to date. Using a reverse-genetic approach, we identified the Arabidopsis thaliana leucine-rich repeat receptor kinase MIK2 as an important regulator of cell wall damage responses triggered upon cellulose biosynthesis inhibition. Indeed, loss-of-function mik2 alleles are strongly affected in immune marker gene expression, jasmonic acid production and lignin deposition. MIK2 has both overlapping and distinct functions with THE1, a malectin-like receptor kinase previously proposed as cell wall integrity sensor. In addition, mik2 mutant plants exhibit enhanced leftward root skewing when grown on vertical plates. Notably, natural variation in MIK2 (also named LRR-KISS) has been correlated recently to mild salt stress tolerance, which we could confirm using our insertional alleles. Strikingly, both the increased root skewing and salt stress sensitivity phenotypes observed in the mik2 mutant are dependent on THE1. Finally, we found that MIK2 is required for resistance to the fungal root pathogen Fusarium oxysporum. Together, our data identify MIK2 as a novel component in cell wall integrity sensing and suggest that MIK2 is a nexus linking cell wall integrity sensing to growth and environmental cues.
机译:植物在生长,生物和非生物胁迫期间主动感知并响应其细胞壁中的扰动。然而,迄今为止,几乎没有涉及植物细胞壁完整性感测的组件。使用反向遗传方法,我们确定了拟南芥富含亮氨酸的重复受体激酶MIK2是纤维素生物合成抑制触发的细胞壁损伤反应的重要调节剂。实际上,功能丧失的mik2等位基因在免疫标记基因表达,茉莉酸生产和木质素沉积中受到严重影响。 MIK2与THE1既有重叠功能又有不同的功能,THE1是先前被提议作为细胞壁完整性传感器的马来蛋白样受体激酶。另外,当在垂直平板上生长时,mik2突变植物显示出增强的向左偏斜。值得注意的是,MIK2(也称为LRR-KISS)的自然变异最近与轻度盐胁迫耐受性相关,我们可以使用我们的插入等位基因证实这一点。令人惊讶的是,在mik2突变体中观察到的增加的根偏斜和盐胁迫敏感性表型均依赖于THE1。最后,我们发现MIK2是抗真菌根病菌尖镰孢(Fusarium oxysporum)所必需的。总之,我们的数据将MIK2鉴定为细胞壁完整性感测的一种新型成分,并暗示MIK2是将细胞壁完整性感测与生长和环境暗示联系起来的纽带。

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