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Identification of endogenous small peptides involved in rice immunity through transcriptomics‐ and proteomics‐based screening

机译:通过转录组织和基于蛋白质组学的筛选鉴定稻免疫中的内源性小肽

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Small signalling peptides, generated from larger protein precursors, are important components to orchestrate various plant processes such as development and immune responses. However, small signalling peptides involved in plant immunity remain largely unknown. Here, we developed a pipeline using transcriptomics‐ and proteomics‐based screening to identify putative precursors of small signalling peptides: small secreted proteins (SSPs) in rice, induced by rice blast fungus Magnaporthe oryzae and its elicitor, chitin. We identified 236 SSPs including members of two known small signalling peptide families, namely rapid alkalinization factors and phytosulfokines, as well as many other protein families that are known to be involved in immunity, such as proteinase inhibitors and pathogenesis‐related protein families. We also isolated 52 unannotated SSPs and among them, we found one gene which we named immune response peptide (IRP) that appeared to encode the precursor of a small signalling peptide regulating rice immunity. In rice suspension cells, the expression of IRP was induced by bacterial peptidoglycan and fungal chitin. Overexpression of IRP enhanced the expression of a defence gene, PAL1 and induced the activation of the MAPKs in rice suspension?cells. Moreover, the IRP protein level increased in suspension cell medium after chitin treatment. Collectively, we established a simple and efficient pipeline to discover SSP candidates that probably play important roles in rice immunity and identified 52 unannotated SSPs that may be useful for further elucidation of rice immunity. Our method can be applied to identify SSPs that are involved not only in immunity but also in other plant functions.
机译:从较大的蛋白质前体产生的小信号肽是协调各种植物方法的重要组成部分,如发育和免疫应答。然而,植物免疫中涉及的小信号肽仍然很大程度上是未知的。在这里,我们开发了一种使用转录组织和蛋白质组学的筛查的管道,以鉴定小型信号肽的推定前体:水稻癌水稻的小分泌蛋白(SSP),由稻瘟病植物及其引导者诱导。我们鉴定了236个SSP,包括两种已知的小信号肽家族的成员,即快速的碱化因子和植物霉菌,以及已知涉及免疫的许多其他蛋白质家族,例如蛋白酶抑制剂和病因相关的蛋白质。我们还孤立52个未解释的SSP和其中,我们发现了一种我们被称为免疫应答肽(IRP)的一个基因,所述免疫应答肽(IRP)似乎编码了一种小型信号肽调节稻免疫的前体。在水稻悬浮细胞中,通过细菌肽聚糖和真菌甲壳素诱导IRP的表达。 IRP的过度表达增强了防御基因,PAL1的表达,并诱导了水稻悬浮液中MAPKS的激活。此外,丁蛋白处理后,IRP蛋白水平在悬浮细胞培养基中增加。共同努力,我们建立了一个简单有效的管道,以发现SSP候选人可能在稻米免疫中发挥重要作用,并确定了52个未释放的SSP,可用于进一步阐明水稻免疫力。我们的方法可以应用于识别不仅涉及免疫的SSP,还可以在其他工厂功能中识别。

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