Division of Plant Biology, Bose Institute, Centenary Campus, P1/12, CIT Scheme, VIIM, Kankurgachi, Kolkata-700054, West Bengal, India.
Plant Cell Physiol. 2017 Nov 1;58(11):1934-1952. doi: 10.1093/pcp/pcx126.
Drought and salinity are the two major environmental constraints that severely affect global agricultural productivity. Plant-specific HD-Zip transcription factors are involved in plant growth, development and stress responses. In the present study, we explored the functional characteristics and regulation of a novel HD-Zip (I) gene from chickpea, CaHDZ12, in response to water-deficit and salt-stress conditions. Transgenic tobacco lines over-expressing CaHDZ12 exhibited improved tolerance to osmotic stresses and increased sensitivity to abscisic acid (ABA). Physiological compatibility of transgenic lines was found to be more robust compared to the wild-type plants under drought and salinity stress. Additionally, expression of several stress-responsive genes was significantly induced in CaHDZ12 transgenic plants. On the other hand, silencing of CaHDZ12 in chickpea resulted in increased sensitivity to salt and drought stresses. Analysis of different promoter deletion mutants identified CaWRKY70 transcription factor as a transcriptional regulator of CaHDZ12 expression. In vivo and in vitro interaction studies detected an association between CaWRKY70 and CaHDZ12 promoter during stress responses. Epigenetic modifications underlying histone acetylation at the CaHDZ12 promoter region play a significant role in stress-induced activation of this gene. Collectively, our study describes a crucial and unique mechanistic link between two distinct transcription factors in regulating plant adaptive stress response.
干旱和盐度是严重影响全球农业生产力的两个主要环境限制因素。植物特异性 HD-Zip 转录因子参与植物的生长、发育和应激反应。在本研究中,我们探讨了鹰嘴豆中一个新的 HD-Zip (I) 基因 CaHDZ12 对水分亏缺和盐胁迫条件的功能特征和调控。过表达 CaHDZ12 的转基因烟草品系表现出对渗透胁迫的耐受性提高,对脱落酸 (ABA) 的敏感性增加。与野生型植物相比,转基因系在干旱和盐胁迫下的生理相容性更稳健。此外,在 CaHDZ12 转基因植物中,几种应激响应基因的表达显著诱导。另一方面,在鹰嘴豆中沉默 CaHDZ12 导致对盐和干旱胁迫的敏感性增加。不同启动子缺失突变体的分析确定 CaWRKY70 转录因子是 CaHDZ12 表达的转录调节剂。体内和体外相互作用研究在应激反应过程中检测到 CaWRKY70 和 CaHDZ12 启动子之间的关联。组蛋白乙酰化在 CaHDZ12 启动子区域的表观遗传修饰在该基因的应激诱导激活中起着重要作用。总的来说,我们的研究描述了两个不同的转录因子在调节植物适应性应激反应中的一个关键和独特的机制联系。