College of Agronomy, Northwest A & F University, Yangling, Shaanxi, China.
PLoS One. 2010 Dec 30;5(12):e16041. doi: 10.1371/journal.pone.0016041.
Drought, salinity and low temperatures are major factors limiting crop productivity and quality. Sucrose non-fermenting1-related protein kinase 2 (SnRK2) plays a key role in abiotic stress signaling in plants. In this study, TaSnRK2.8, a SnRK2 member in wheat, was cloned and its functions under multi-stress conditions were characterized. Subcellular localization showed the presence of TaSnRK2.8 in the cell membrane, cytoplasm and nucleus. Expression pattern analyses in wheat revealed that TaSnRK2.8 was involved in response to PEG, NaCl and cold stresses, and possibly participates in ABA-dependent signal transduction pathways. To investigate its role under various environmental stresses, TaSnRK2.8 was transferred to Arabidopsis under control of the CaMV-35S promoter. Overexpression of TaSnRK2.8 resulted in enhanced tolerance to drought, salt and cold stresses, further confirmed by longer primary roots and various physiological characteristics, including higher relative water content, strengthened cell membrane stability, significantly lower osmotic potential, more chlorophyll content, and enhanced PSII activity. Meanwhile, TaSnRK2.8 plants had significantly lower total soluble sugar levels under normal growing conditions, suggesting that TaSnRK2.8 might be involved in carbohydrate metabolism. Moreover, the transcript levels of ABA biosynthesis (ABA1, ABA2), ABA signaling (ABI3, ABI4, ABI5), stress-responsive genes, including two ABA-dependent genes (RD20A, RD29B) and three ABA-independent genes (CBF1, CBF2, CBF3), were generally higher in TaSnRK2.8 plants than in WT/GFP controls under normal/stress conditions. Our results suggest that TaSnRK2.8 may act as a regulatory factor involved in a multiple stress response pathways.
干旱、盐度和低温是限制作物生产力和品质的主要因素。蔗糖非发酵相关蛋白激酶 2(SnRK2)在植物的非生物胁迫信号转导中发挥关键作用。本研究克隆了小麦中的 SnRK2 成员 TaSnRK2.8,并对其在多种胁迫条件下的功能进行了表征。亚细胞定位显示 TaSnRK2.8 存在于细胞膜、细胞质和细胞核中。在小麦中的表达模式分析表明,TaSnRK2.8参与对 PEG、NaCl 和冷胁迫的响应,并且可能参与 ABA 依赖的信号转导途径。为了研究其在各种环境胁迫下的作用,将 TaSnRK2.8 转移到拟南芥中,由 CaMV-35S 启动子控制。过表达 TaSnRK2.8 导致对干旱、盐和冷胁迫的耐受性增强,这进一步通过较长的主根和各种生理特性得到证实,包括相对较高的水含量、增强的细胞膜稳定性、显著较低的渗透势、更多的叶绿素含量和增强的 PSII 活性。同时,在正常生长条件下,TaSnRK2.8 植株的总可溶性糖水平显著降低,表明 TaSnRK2.8 可能参与碳水化合物代谢。此外,在正常/胁迫条件下,ABA 生物合成(ABA1、ABA2)、ABA 信号转导(ABI3、ABI4、ABI5)、应激响应基因的转录水平,包括两个 ABA 依赖基因(RD20A、RD29B)和三个 ABA 非依赖基因(CBF1、CBF2、CBF3),在 TaSnRK2.8 植株中通常高于 WT/GFP 对照。我们的研究结果表明,TaSnRK2.8 可能作为一种参与多种应激反应途径的调节因子发挥作用。