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豌豆液泡膜运动蛋白 PsSEO-F1 的异位表达增强了烟草的耐盐性。

Ectopic expression of phloem motor protein pea forisome PsSEO-F1 enhances salinity stress tolerance in tobacco.

机构信息

International Centre for Genetic Engineering and Biotechnology (ICGEB), Aruna Asaf Ali Marg, New Delhi, 110067, India.

Amity Institute of Microbial Technology, Amity University Uttar Pradesh, Sector 125, Noida, Uttar Pradesh, 201313, India.

出版信息

Plant Cell Rep. 2016 May;35(5):1021-41. doi: 10.1007/s00299-016-1935-9. Epub 2016 Jan 29.

Abstract

PsSEOF-1 binds to calcium and its expression is upregulated by salinity treatment. PsSEOF - 1 -overexpressing transgenic tobacco showed enhanced salinity stress tolerance by maintaining cellular ion homeostasis and modulating ROS-scavenging pathway. Calcium (Ca(2+)) plays important role in growth, development and stress tolerance in plants. Cellular Ca(2+) homeostasis is achieved by the collective action of channels, pumps, antiporters and by Ca(2+) chelators present in the cell like calcium-binding proteins. Forisomes are ATP-independent mechanically active motor proteins known to function in wound sealing of injured sieve elements of phloem tissue. The Ca(2+)-binding activity of forisome and its role in abiotic stress signaling were largely unknown. Here we report the Ca(2+)-binding activity of pea forisome (PsSEO-F1) and its novel function in promoting salinity tolerance in transgenic tobacco. Native PsSEO-F1 promoter positively responded in salinity stress as confirmed using GUS reporter. Overexpression of PsSEO-F1 tobacco plants confers salinity tolerance by alleviating ionic toxicity and increased ROS scavenging activity which probably results in reduced membrane damage and improved yield under salinity stress. Evaluation of several physiological indices shows an increase in relative water content, electrolyte leakage, proline accumulation and chlorophyll content in transgenic lines as compared with null-segregant control. Expression of several genes involved in cellular homeostasis is perturbed by PsSEO-F1 overexpression. These findings suggest that PsSEO-F1 provides salinity tolerance through cellular Ca(2+) homeostasis which in turn modulates ROS machinery providing indirect link between Ca(2+) and ROS signaling under salinity-induced perturbation. PsSEO-F1 most likely functions in salinity stress tolerance by improving antioxidant machinery and mitigating ion toxicity in transgenic lines. This finding should make an important contribution in our better understanding of the significance of calcium signaling in phloem tissue leading to salinity stress tolerance.

摘要

PsSEOF-1 与钙结合,其表达受盐度处理上调。过表达 PsSEOF-1 的转基因烟草通过维持细胞离子稳态和调节 ROS 清除途径,表现出增强的耐盐胁迫能力。钙 (Ca(2+)) 在植物的生长、发育和耐胁迫中起着重要作用。细胞内 Ca(2+) 稳态是通过通道、泵、反向转运体的集体作用以及细胞内的 Ca(2+) 螯合剂(如钙结合蛋白)实现的。Forisomes 是一种不需要 ATP 的机械活性运动蛋白,已知其在韧皮部受伤筛分子的伤口密封中起作用。Forisomes 的 Ca(2+) 结合活性及其在非生物胁迫信号转导中的作用在很大程度上是未知的。在这里,我们报告了豌豆 Forisomes (PsSEO-F1) 的 Ca(2+) 结合活性及其在转基因烟草中促进耐盐性的新功能。使用 GUS 报告证实,天然 PsSEO-F1 启动子在盐胁迫下呈阳性反应。过表达 PsSEO-F1 的烟草植株通过减轻离子毒性和增加 ROS 清除活性来赋予耐盐性,这可能导致在盐胁迫下膜损伤减少和产量提高。对几种生理指标的评估表明,与空载体分离株对照相比,转基因系的相对水含量、电解质渗漏、脯氨酸积累和叶绿素含量增加。细胞内稳态相关的几个基因的表达被 PsSEO-F1 的过表达扰乱。这些发现表明,PsSEO-F1 通过细胞内 Ca(2+) 稳态提供耐盐性,从而调节 ROS 机制,在盐诱导的扰动下提供 Ca(2+) 和 ROS 信号之间的间接联系。PsSEO-F1 很可能通过改善抗氧化机制和减轻离子毒性在转基因系中发挥作用,从而在耐盐胁迫中发挥作用。这一发现应该在我们更好地理解钙信号在韧皮部组织中的意义方面做出重要贡献,从而导致耐盐胁迫。

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