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异位过表达一个新的大豆应激诱导的质膜内在蛋白增加转基因拟南芥植株对盐和干旱的敏感性。

Ectopic overexpression of a novel Glycine soja stress-induced plasma membrane intrinsic protein increases sensitivity to salt and dehydration in transgenic Arabidopsis thaliana plants.

机构信息

The Key Laboratory of Sugar Beet Genetic Breeding, Colleges of Heilongjiang Province, Heilongjiang University, No. 74 XueFu Road, NanGang District, Harbin, 150080, Heilongjiang, China,

出版信息

J Plant Res. 2015 Jan;128(1):103-13. doi: 10.1007/s10265-014-0674-7. Epub 2014 Oct 31.

Abstract

Plasma membrane intrinsic proteins (PIPs) belong to the aquaporin family and facilitate water movement across plasma membranes. Existing data indicate that PIP genes are associated with the abilities of plants to tolerate certain stress conditions. A review of our Glycine soja expressed sequence tag (EST) dataset revealed that abiotic stress stimulated expression of a PIP, herein designated as GsPIP2;1 (GenBank_Accn: FJ825766). To understand the roles of this PIP in stress tolerance, we generated a coding sequence for GsPIP2;1 by in silico elongation and cloned the cDNA by 5'-RACE. Semiquantitative RT-PCR showed that GsPIP2;1 expression was stimulated in G. soja leaves by cold, salt, or dehydration stress, whereas the same stresses suppressed GsPIP2;1 expression in the roots. Transgenic Arabidopsis thaliana plants overexpressing GsPIP2;1 grew normally under unstressed and cold conditions, but exhibited depressed tolerance to salt and dehydration stresses. Moreover, greater changes in water potential were detected in the transgenic A. thaliana shoots, implying that GsPIP2;1 may negatively impact stress tolerance by regulating water potential. These results, deviating from those obtained in previous reports, provide new insights into the relationship between PIPs and abiotic stress tolerance in plants.

摘要

质膜内在蛋白(PIPs)属于水通道蛋白家族,可促进质膜两侧的水分子运动。现有数据表明,PIP 基因与植物耐受某些胁迫条件的能力有关。对我们的大豆表达序列标签(EST)数据集的回顾表明,非生物胁迫刺激了 PIP 的表达,本文将其命名为 GsPIP2;1(GenBank_Accn:FJ825766)。为了了解该 PIP 在胁迫耐受中的作用,我们通过计算机延伸合成了 GsPIP2;1 的编码序列,并通过 5'-RACE 克隆了 cDNA。半定量 RT-PCR 显示,GsPIP2;1 在大豆叶片中受到冷、盐或干旱胁迫的刺激表达,而相同的胁迫抑制了根中的 GsPIP2;1 表达。过表达 GsPIP2;1 的转基因拟南芥在非胁迫和冷条件下正常生长,但对盐和干旱胁迫的耐受性降低。此外,在转基因拟南芥的茎中检测到更大的水势变化,这表明 GsPIP2;1 可能通过调节水势对胁迫耐受性产生负面影响。这些结果与以前的报告结果不同,为 PIPs 与植物非生物胁迫耐受性之间的关系提供了新的见解。

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