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异位过表达番茄热激转录因子 SlHsfA3 赋予转基因拟南芥萌发的耐热性和耐盐性增加。

Ectopic overexpression of SlHsfA3, a heat stress transcription factor from tomato, confers increased thermotolerance and salt hypersensitivity in germination in transgenic Arabidopsis.

机构信息

College of Horticulture, Northeast Agricultural University, Harbin, Heilongjiang, China.

出版信息

PLoS One. 2013;8(1):e54880. doi: 10.1371/journal.pone.0054880. Epub 2013 Jan 22.

Abstract

Plant heat stress transcription factors (Hsfs) are the critical components involved in mediating responses to various environmental stressors. However, the detailed roles of many plant Hsfs are far from fully understood. In this study, an Hsf (SlHsfA3) was isolated from the cultivated tomato (Solanum lycopersicum, Sl) and functionally characterized at the genetic and developmental levels. The nucleus-localized SlHsfA3 was basally and ubiquitously expressed in different plant organs. The expression of SlHsfA3 was induced dramatically by heat stress, moderately by high salinity, and slightly by drought, but was not induced by abscisic acid (ABA). The ectopic overexpression of SlHsfA3 conferred increased thermotolerance and late flowering phenotype to transgenic Arabidopsis plants. Moreover, SlHsfA3 played a negative role in controlling seed germination under salt stress. RNA-sequencing data demonstrated that a number of heat shock proteins (Hsps) and stress-associated genes were induced in Arabidopsis plants overexpressing SlHsfA3. A gel shift experiment and transient expression assays in Nicotiana benthamiana leaves demonstrated that SlHsfA3 directly activates the expression of SlHsp26.1-P and SlHsp21.5-ER. Taken together, our results suggest that SlHsfA3 behaves as a typical Hsf to contribute to plant thermotolerance. The late flowering and seed germination phenotypes and the RNA-seq data derived from SlHsfA3 overexpression lines lend more credence to the hypothesis that plant Hsfs participate in diverse physiological and biochemical processes related to adverse conditions.

摘要

植物热应激转录因子(Hsfs)是参与介导对各种环境胁迫响应的关键组成部分。然而,许多植物 Hsfs 的详细作用还远未完全了解。在这项研究中,从栽培番茄(Solanum lycopersicum,Sl)中分离出一个 Hsf(SlHsfA3),并在遗传和发育水平上对其功能进行了表征。定位于核内的 SlHsfA3 在不同的植物器官中基础广泛且普遍表达。SlHsfA3 的表达被热应激强烈诱导,被高盐适度诱导,被干旱轻微诱导,但不受脱落酸(ABA)诱导。SlHsfA3 的异位过表达赋予转基因拟南芥植物增加的耐热性和晚花表型。此外,SlHsfA3 在盐胁迫下对种子萌发起负调控作用。RNA-seq 数据表明,在过表达 SlHsfA3 的拟南芥植物中,许多热休克蛋白(Hsps)和应激相关基因被诱导。凝胶迁移实验和在本氏烟叶片中的瞬时表达分析表明,SlHsfA3 直接激活 SlHsp26.1-P 和 SlHsp21.5-ER 的表达。总之,我们的结果表明 SlHsfA3 作为一种典型的 Hsf,有助于植物耐热性。过表达 SlHsfA3 的晚花和种子萌发表型以及 RNA-seq 数据进一步证实了植物 Hsfs 参与与不利条件相关的多种生理和生化过程的假说。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31bc/3551807/3b747deca5ef/pone.0054880.g001.jpg

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