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乙烯响应因子Sl-ERF.B.3对非生物胁迫有响应,并介导番茄中的盐胁迫和冷胁迫响应调控。

Ethylene response factor Sl-ERF.B.3 is responsive to abiotic stresses and mediates salt and cold stress response regulation in tomato.

作者信息

Klay Imen, Pirrello Julien, Riahi Leila, Bernadac Anne, Cherif Ameur, Bouzayen Mondher, Bouzid Sadok

机构信息

Laboratoire de Morphogenèse et de Biotechnologie Végétale, Faculté des Sciences de Tunis (FST), Campus Universitaire 2092 El Manar Tunis, Tunisia ; Université Toulouse, INP ENSA Toulouse, 31326 Castanet-Tolosan, France ; INRA, 31326 Castanet-Tolosan, France.

Université Toulouse, INP ENSA Toulouse, 31326 Castanet-Tolosan, France ; INRA, 31326 Castanet-Tolosan, France.

出版信息

ScientificWorldJournal. 2014;2014:167681. doi: 10.1155/2014/167681. Epub 2014 Aug 6.

Abstract

Sl-ERF.B.3 (Solanum lycopersicum ethylene response factor B.3) gene encodes for a tomato transcription factor of the ERF (ethylene responsive factor) family. Our results of real-time RT-PCR showed that Sl-ERF.B.3 is an abiotic stress responsive gene, which is induced by cold, heat, and flooding, but downregulated by salinity and drought. To get more insight into the role of Sl-ERF.B.3 in plant response to separate salinity and cold, a comparative study between wild type and two Sl-ERF.B.3 antisense transgenic tomato lines was achieved. Compared with wild type, Sl-ERF.B.3 antisense transgenic plants exhibited a salt stress dependent growth inhibition. This inhibition was significantly enhanced in shoots but reduced in roots, leading to an increased root to shoot ratio. Furthermore, the cold stress essay clearly revealed that introducing antisense Sl-ERF.B.3 in transgenic tomato plants reduces their cell injury and enhances their tolerance against 14 d of cold stress. All these results suggest that Sl-ERF.B.3 gene is involved in plant response to abiotic stresses and may play a role in the layout of stress symptoms under cold stress and in growth regulation under salinity.

摘要

Sl-ERF.B.3(番茄乙烯响应因子B.3)基因编码一种番茄ERF(乙烯响应因子)家族的转录因子。我们实时逆转录聚合酶链反应的结果表明,Sl-ERF.B.3是一个非生物胁迫响应基因,受寒冷、高温和水淹诱导,但受盐度和干旱抑制。为了更深入了解Sl-ERF.B.3在植物对盐度和寒冷的响应中的作用,我们对野生型和两个Sl-ERF.B.3反义转基因番茄品系进行了比较研究。与野生型相比,Sl-ERF.B.3反义转基因植物表现出盐胁迫依赖性生长抑制。这种抑制在地上部分显著增强,但在根部减弱,导致根冠比增加。此外,冷胁迫试验清楚地表明,在转基因番茄植株中导入反义Sl-ERF.B.3可减少细胞损伤,并增强其对14天冷胁迫的耐受性。所有这些结果表明,Sl-ERF.B.3基因参与植物对非生物胁迫的响应,可能在冷胁迫下的胁迫症状布局和盐度下的生长调节中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c85/4142182/0a233b85125a/TSWJ2014-167681.001.jpg

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