Wang Yanping, Yang Li, Chen Xi, Ye Tiantian, Zhong Bao, Liu Ruijie, Wu Yan, Chan Zhulong
Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan, Hubei Province, China.
Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan, Hubei Province, China University of Chinese Academy of Sciences, Beijing, China.
J Exp Bot. 2016 Jan;67(1):421-34. doi: 10.1093/jxb/erv477. Epub 2015 Oct 27.
Drought stress is one of the disadvantageous environmental conditions for plant growth and reproduction. Given the importance of abscisic acid (ABA) to plant growth and abiotic stress responses, identification of novel components involved in ABA signalling transduction is critical. In this study, we screened numerous Arabidopsis thaliana mutants by seed germination assay and identified a mutant mlp43 (major latex protein-like 43) with decreased ABA sensitivity in seed germination. The mlp43 mutant was sensitive to drought stress while the MLP43-overexpressed transgenic plants were drought tolerant. The tissue-specific expression pattern analysis showed that MLP43 was predominantly expressed in cotyledons, primary roots and apical meristems, and a subcellular localization study indicated that MLP43 was localized in the nucleus and cytoplasm. Physiological and biochemical analyses indicated that MLP43 functioned as a positive regulator in ABA- and drought-stress responses in Arabidopsis through regulating water loss efficiency, electrolyte leakage, ROS levels, and as well as ABA-responsive gene expression. Moreover, metabolite profiling analysis indicated that MLP43 could modulate the production of primary metabolites under drought stress conditions. Reconstitution of ABA signalling components in Arabidopsis protoplasts indicated that MLP43 was involved in ABA signalling transduction and acted upstream of SnRK2s by directly interacting with SnRK2.6 and ABF1 in a yeast two-hybrid assay. Moreover, ABA and drought stress down-regulated MLP43 expression as a negative feedback loop regulation to the performance of MLP43 in ABA and drought stress responses. Therefore, this study provided new insights for interpretation of physiological and molecular mechanisms of Arabidopsis MLP43 mediating ABA signalling transduction and drought stress responses.
干旱胁迫是植物生长和繁殖的不利环境条件之一。鉴于脱落酸(ABA)对植物生长和非生物胁迫响应的重要性,鉴定参与ABA信号转导的新组分至关重要。在本研究中,我们通过种子萌发试验筛选了大量拟南芥突变体,鉴定出一个在种子萌发中ABA敏感性降低的突变体mlp43(类主要乳胶蛋白43)。mlp43突变体对干旱胁迫敏感,而MLP43过表达的转基因植物具有耐旱性。组织特异性表达模式分析表明,MLP43主要在子叶、初生根和顶端分生组织中表达,亚细胞定位研究表明MLP43定位于细胞核和细胞质中。生理生化分析表明,MLP43通过调节水分散失效率、电解质渗漏、活性氧水平以及ABA响应基因表达,在拟南芥的ABA和干旱胁迫响应中起正向调节作用。此外,代谢物谱分析表明,MLP43可以在干旱胁迫条件下调节初级代谢物的产生。在拟南芥原生质体中重建ABA信号组分表明,MLP43参与ABA信号转导,并通过酵母双杂交试验与SnRK2.6和ABF1直接相互作用,在SnRK2s上游发挥作用。此外,ABA和干旱胁迫下调MLP43表达,作为对MLP43在ABA和干旱胁迫响应中作用的负反馈调节。因此,本研究为解释拟南芥MLP43介导ABA信号转导和干旱胁迫响应的生理和分子机制提供了新的见解。