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从耐盐海滨香豌豆中分离出的LmSAP基因可提高转基因烟草品系的耐盐性和离子耐受性。

The LmSAP gene isolated from the halotolerant Lobularia maritima improves salt and ionic tolerance in transgenic tobacco lines.

作者信息

Ben Saad Rania, Farhat-Khemekhem Ameny, Ben Halima Nihed, Ben Hamed Karim, Brini Faical, Saibi Walid

机构信息

Biotechnology and Plant Improvement Laboratory, Centre of Biotechnology of Sfax, University of Sfax, B.P '1177', 3018, Sfax - Tunisia.

Laboratory of Microorganisms and Biomolecules, Centre of Biotechnology of Sfax, University of Sfax, B.P 1177, 3018, Sfax - Tunisia.

出版信息

Funct Plant Biol. 2018 Feb;45(3):378-391. doi: 10.1071/FP17202.

Abstract

The A20/AN1 zinc-finger domain-containing proteins of the stress-associated proteins (SAPs) family are fast emerging as potential candidates for biotechnological approaches to improve abiotic stress tolerance in plants. We identified LmSAP, one of the SAPs genes in Lobularia maritima (L.) Desv., a halophyte brassicaceae, through its transcript accumulation in response to salinity and ionic stresses. Sequence homology analysis revealed that LmSAP contains two conserved zinc-finger domains A20 and AN1. Phylogeny analyses showed that LmSAP exhibited high amino acid sequence identity to other plant SAPs. Heterologous expression of LmSAP in yeast increased cell tolerance to salt and osmotic stress. In addition, the overexpression of LmSAP conferred high salt and ionic tolerance to transgenic tobacco plants. Transgenic tobacco seedlings showed higher survival rates and antioxidant activities under salt and ionic stresses. Enhanced antioxidant activities paralleled lower malondialdehyde and superoxide anion O2- levels in the LmSAP transgenic seedlings. Overall, our results suggest that overexpression of LmSAP enhanced salt tolerance by maintaining ionic balance and limiting oxidative and osmotic stresses.

摘要

胁迫相关蛋白(SAPs)家族中含A20/AN1锌指结构域的蛋白正迅速成为通过生物技术方法提高植物非生物胁迫耐受性的潜在候选对象。我们通过盐度和离子胁迫下的转录积累,鉴定出了滨海香豌豆(十字花科盐生植物)中SAPs基因之一的LmSAP。序列同源性分析表明,LmSAP包含两个保守的锌指结构域A20和AN1。系统发育分析表明,LmSAP与其他植物SAPs具有高度的氨基酸序列同一性。LmSAP在酵母中的异源表达提高了细胞对盐和渗透胁迫的耐受性。此外,LmSAP的过表达赋予了转基因烟草植株高盐和离子耐受性。转基因烟草幼苗在盐和离子胁迫下表现出更高的存活率和抗氧化活性。LmSAP转基因幼苗中增强的抗氧化活性与较低的丙二醛和超氧阴离子O2-水平平行。总体而言,我们的结果表明,LmSAP的过表达通过维持离子平衡以及限制氧化和渗透胁迫来增强耐盐性。

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