首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Overexpression of the receptor-like protein kinase genes AtRPK1 and OsRPK1 reduces the salt tolerance of Arabidopsis thaliana.
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Overexpression of the receptor-like protein kinase genes AtRPK1 and OsRPK1 reduces the salt tolerance of Arabidopsis thaliana.

机译:受体样蛋白激酶基因AtRPK1和OsRPK1的过表达降低了拟南芥的耐盐性。

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摘要

AtRPK1 (AT1G69270) is a leucine-rich repeat receptor-like protein kinase (LRR-RLK) gene in Arabidopsis thaliana. The rice gene Os07 g0602700 (OsRPK1) is the homolog of AtRPK1. AtRPK1 and OsRPK1 were overexpressed and the expression of AtRPK1 was inhibited by RNAi in A. thaliana. The functional results showed that the degrees of salt tolerance of the 35S:RPK1 A. thaliana plants were significantly lower than that of the control plants. The AtRPK1-RNAi A. thaliana plants exhibited higher salt tolerance than the wild-type plants (Col). The subcellular localisation results showed that the RPK1 proteins were mainly distributed on the cell membrane and that the overexpressed AtRPK1 proteins exhibited a significantly clustered distribution. The physiological analyses revealed that the overexpression of the RPK1 genes increased the membrane permeability in the transgenic A. thaliana plants. In response to salt stress, these plants exhibited an increased Na+ flux into the cell, which caused greater damage to the cell. The real-time quantitative PCR analysis showed that the expression of the P5CS1 gene was inhibited and the SOS signalling pathway was blocked in the 35S:AtRPK1 A. thaliana plants. These effects at least partially contribute to the salt-sensitive phenotype of the 35S:RPK1 plants.
机译:AtRPK1(AT1G69270)是拟南芥中富含亮氨酸的重复受体样蛋白激酶(LRR-RLK)基因。水稻基因Os07 g0602700(OsRPK1)是AtRPK1的同源物。拟南芥中RNAi抑制了AtRPK1和OsRPK1的表达,并抑制了AtRPK1的表达。功能性结果表明,35S:RPK1拟南芥植物的耐盐度明显低于对照植物。 AtRPK1-RNAi拟南芥植物比野生型植物(Col)具有更高的耐盐性。亚细胞定位结果表明,RPK1蛋白主要分布在细胞膜上,而过表达的AtRPK1蛋白则表现出明显的聚集分布。生理分析表明,RPK1基因的过表达增加了转基因拟南芥植物的膜通透性。响应盐胁迫,这些植物向细胞内的Na + 通量增加,这对细胞造成了更大的损害。实时定量PCR分析表明,在35S:AtRPK1拟南芥植物中P5CS1基因的表达受到抑制,SOS信号通路被阻断。这些作用至少部分有助于35S:RPK1植物的盐敏感性表型。

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