Root Biology Center, South China Agricultural University, Guangzhou 510642, PR China.
J Plant Physiol. 2011 Dec 15;168(18):2260-7. doi: 10.1016/j.jplph.2011.07.014. Epub 2011 Sep 16.
The WNK (With No Lysine K) serine-threonine kinases have been shown to be osmosensitive regulators and are critical for cell volume homeostasis in humans. We previously identified a soybean root-specific WNK homolog, GmWNK1, which is important for normal late root development by fine-tuning regulation of ABA levels. However, the functions of WNKs in plant osmotic stress response remains uncertain. In this study, we generated transgenic Arabidopsis plants with constitutive expression of GmWNK1. We found that these transgenic plants had increased endogenous ABA levels and altered expression of ABA-responsive genes, and exhibited a significantly enhanced tolerance to NaCl and osmotic stresses during seed germination and seedling development. These findings suggest that, in addition to regulating root development, GmWNK1 also regulates ABA-responsive gene expression and/or interacts with other stress related signals, thereby modulating osmotic stress responses. Thus, these results suggest that WNKs are members of an evolutionarily conserved kinase family that modulates cellular response to osmotic stresses in both animal and plants.
WNK(无赖氨酸丝氨酸/苏氨酸激酶)已被证明是一种对渗透压敏感的调节剂,对于人类细胞体积稳态至关重要。我们之前鉴定了一种大豆根特异性 WNK 同源物 GmWNK1,它通过精细调节 ABA 水平对正常后期根发育很重要。然而,WNK 在植物渗透胁迫反应中的功能仍不确定。在这项研究中,我们生成了组成型表达 GmWNK1 的转基因拟南芥植株。我们发现这些转基因植株内源 ABA 水平升高,ABA 响应基因的表达发生改变,并在种子萌发和幼苗发育过程中对 NaCl 和渗透胁迫表现出显著增强的耐受性。这些发现表明,除了调节根发育外,GmWNK1 还调节 ABA 响应基因的表达和/或与其他应激相关信号相互作用,从而调节渗透胁迫反应。因此,这些结果表明 WNK 是一个进化上保守的激酶家族的成员,在动物和植物中调节细胞对渗透压胁迫的反应。