State Key Laboratory of Hybrid Rice, College of Life Science, Wuhan University, Wuhan 430072, China.
J Exp Bot. 2012 Apr;63(7):2579-93. doi: 10.1093/jxb/err433. Epub 2012 Jan 20.
Drought is one of the most severe environmental stresses affecting plant growth and limiting crop production. Although many genes involved in adaptation to drought stress have been disclosed, the relevant molecular mechanisms are far from understood. This study describes an Arabidopsis gene, ASPG1 (ASPARTIC PROTEASE IN GUARD CELL 1), that may function in drought avoidance through abscisic acid (ABA) signalling in guard cells. Overexpression of the ASPG1 gene enhanced ABA sensitivity in guard cells and reduced water loss in ectopically overexpressing ASPG1 (ASPG1-OE) transgenic plants. In ASPG1-OE plants, some downstream targets in ABA and/or drought-signalling pathways were altered at various levels, suggesting the involvement of ASPG1 in ABA-dependent drought avoidance in Arabidopsis. By analysing the activities of several antioxidases including superoxide dismutase and catalase in ASPG1-OE plants, the existence was demonstrated of an effective detoxification system for drought avoidance in these plants. Analysis of ProASPG1-GUS lines showed a predominant guard cell expression pattern in various aerial tissues. Moreover, the protease activity of ASPG1 was characterized in vitro, and two aspartic acid sites, D180 and D379, were found to be key residues for ASPG1 aspartic protease activity in response to ABA. In summary, these findings suggest that functional ASPG1 may be involved in ABA-dependent responsiveness and that overexpression of the ASPG1 gene can confer drought avoidance in Arabidopsis.
干旱是影响植物生长和限制作物产量的最严重的环境胁迫之一。尽管已经揭示了许多与适应干旱胁迫相关的基因,但相关的分子机制还远未被理解。本研究描述了一个拟南芥基因 ASPG1(Guard Cell 中的天冬氨酸蛋白酶 1),它可能通过保卫细胞中的脱落酸(ABA)信号转导来避免干旱。ASPG1 基因的过表达增强了保卫细胞对 ABA 的敏感性,并减少了异位过表达 ASPG1(ASPG1-OE)转基因植物的水分流失。在 ASPG1-OE 植物中,ABA 和/或干旱信号通路的一些下游靶标在不同水平上发生了改变,表明 ASPG1 参与了拟南芥中 ABA 依赖的抗旱性。通过分析 ASPG1-OE 植物中几种抗氧化酶(包括超氧化物歧化酶和过氧化氢酶)的活性,证明这些植物中存在有效的抗氧化剂解毒系统以避免干旱。ProASPG1-GUS 系的分析显示,在各种气生组织中存在主要的保卫细胞表达模式。此外,还在体外表征了 ASPG1 的蛋白酶活性,并发现两个天冬氨酸位点 D180 和 D379 是 ASPG1 对 ABA 反应中天冬氨酸蛋白酶活性的关键残基。总之,这些发现表明功能性 ASPG1 可能参与 ABA 依赖的响应,而过表达 ASPG1 基因可以赋予拟南芥抗旱性。