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来自意大利黑麦草的 PLDα1 基因的过表达增强了拟南芥对脱落酸的敏感性,并提高了其耐旱性。

Overexpression of a PLDα1 gene from Setaria italica enhances the sensitivity of Arabidopsis to abscisic acid and improves its drought tolerance.

机构信息

State Key Laboratory of Agrobiotechnology, China Agricultural University, Beijing, 100193, China.

出版信息

Plant Cell Rep. 2010 Jul;29(7):793-802. doi: 10.1007/s00299-010-0865-1. Epub 2010 May 19.

Abstract

Phospholipase D (PLD) plays an important role in various physiological processes in plants, including drought tolerance. Here, we report the cloning and characterization of the full-length cDNA of PLDalpha1 from foxtail millet, which is a cereal crop with high water use efficiency. The expression pattern of the SiPLDalpha1 gene in foxtail millet revealed that it is up-regulated under dehydration, ABA and NaCl treatments. Heterologous overexpression of SiPLDalpha1 in Arabidopsis can significantly enhance their sensitivity to ABA, NaCl and mannitol during post-germination growth. Under water deprivation, overexpression of SiPLDalpha1 in Arabidopsis resulted in significantly enhanced tolerance to drought stress, displaying higher biomass and RWC, lower ion leakage and higher survival percentages than the wild type. Further analysis indicated that transgenic plants showed increased transcription of the stress-related genes, RD29A, RD29B, RAB18 and RD22, and the ABA-related genes, ABI1 and NCED3 under dehydration conditions. These results demonstrate that SiPLDalpha1 is involved in plant stress signal transduction, especially in the ABA signaling pathway. Moreover, no obvious adverse effects on growth and development in the 35S::SiPLDalpha1 transgenic plants implied that SiPLDalpha1 is a good candidate gene for improving crop drought tolerance.

摘要

磷脂酶 D (PLD) 在植物的各种生理过程中发挥着重要作用,包括耐旱性。在这里,我们报告了从谷子中克隆和鉴定全长 PLDalpha1 cDNA 的情况,谷子是一种具有高水分利用效率的谷类作物。SiPLDalpha1 基因在谷子中的表达模式表明,它在脱水、ABA 和 NaCl 处理下上调。在拟南芥中异源过表达 SiPLDalpha1 可以显著增强其在萌发后生长过程中对 ABA、NaCl 和甘露醇的敏感性。在水分胁迫下,拟南芥中过表达 SiPLDalpha1 导致对干旱胁迫的耐受性显著增强,与野生型相比,表现出更高的生物量和 RWC、更低的离子渗漏和更高的存活率。进一步分析表明,在脱水条件下,转基因植物表现出应激相关基因 RD29A、RD29B、RAB18 和 RD22 以及 ABA 相关基因 ABI1 和 NCED3 的转录增加。这些结果表明 SiPLDalpha1 参与植物应激信号转导,特别是 ABA 信号通路。此外,35S::SiPLDalpha1 转基因植物在生长和发育方面没有明显的不良影响,这意味着 SiPLDalpha1 是提高作物耐旱性的一个良好候选基因。

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