Plant Bioengineering Laboratory, Northeast Agricultural University, Harbin 150030, China.
J Plant Physiol. 2013 Mar 15;170(5):505-15. doi: 10.1016/j.jplph.2012.11.017. Epub 2012 Dec 29.
Receptor-like protein kinases (RLKs) play vital roles in sensing outside signals, yet little is known about RLKs functions and roles in stress signal perception and transduction in plants, especially in wild soybean. Through the microarray analysis, GsSRK was identified as an alkaline (NaHCO3)-responsive gene, and was subsequently isolated from Glycine soja by homologous cloning. GsSRK encodes a 93.22kDa protein with a highly conserved serine/threonine protein kinase catalytic domain, a G-type lectin region, and an S-locus region. Real-time PCR results showed that the expression levels of GsSRK were largely induced by ABA, salt, and drought stresses. Over expression of GsSRK in Arabidopsis promoted seed germination, as well as primary root and rosette leaf growth during the early stages of salt stress. Compared to the wild type Arabidopsis, GsSRK overexpressors exhibited enhanced salt tolerance and higher yields under salt stress, with higher chlorophyll content, lower ion leakage, higher plant height, and more siliques at the adult developmental stage. Our studies suggest that GsSRK plays a crucial role in plant response to salt stress.
受体样蛋白激酶(RLKs)在感知外部信号方面发挥着重要作用,但人们对 RLKs 在植物应激信号感知和转导中的功能和作用知之甚少,尤其是在野生大豆中。通过微阵列分析,鉴定 GsSRK 是一个碱性(NaHCO3)响应基因,并通过同源克隆从大豆中分离出来。GsSRK 编码一个 93.22kDa 的蛋白质,具有高度保守的丝氨酸/苏氨酸蛋白激酶催化结构域、G 型凝集素区和 S 座位区。实时 PCR 结果表明,GsSRK 的表达水平受 ABA、盐和干旱胁迫的强烈诱导。在拟南芥中过表达 GsSRK 促进了种子萌发以及盐胁迫早期的主根和莲座叶生长。与野生型拟南芥相比,GsSRK 过表达植株在盐胁迫下表现出增强的耐盐性和更高的产量,具有更高的叶绿素含量、更低的离子渗漏、更高的株高和更多的成熟阶段的角果。我们的研究表明,GsSRK 在植物对盐胁迫的反应中起着关键作用。