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首页> 外文期刊>Journal of Plant Physiology >Constitutive expression of Arabidopsis bZIP transcription factor AREB1 activates cross-signaling responses in soybean under drought and flooding stresses
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Constitutive expression of Arabidopsis bZIP transcription factor AREB1 activates cross-signaling responses in soybean under drought and flooding stresses

机译:Arabidopsis Bzip转录因子AmB1在干旱和洪水胁迫下激活大豆中的交叉信号响应的组成型表达

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摘要

Abiotic stress, such as drought and flooding, are responsible for considerable losses in grain production worldwide. Soybean, the main cultivated oilseed in the world, is sensitive to both stresses. Plant molecular mechanisms answer via crosstalk of several signaling pathways, in which particular genes can respond to different stresses. Previous studies confirmed that overexpression of transcription factor AtAREB1 confers drought tolerance in soybean. However, plants containing this gene have not yet been tested under flooding. Thus, the objective of this study was to characterize genetically modified (GM) soybean plants overexpressing AtAREB1 under drought and flooding conditions in comparison to its genetic background. Physiological and biochemical measurements were performed. In addition, the expression level of genes commonly activated under both stresses was evaluated. The results supported the role of the AtAREB1 gene in conferring tolerance to water deficit in soybeans. Furthermore, under flooding, the GM line was efficient in maintaining a higher photosynthetic rate, intrinsic efficiency in water use, and instantaneous carboxylation efficiency, resulting in higher grain yield under stress. The GM line also presented higher protein content, lower concentration of hydrogen peroxide, and lower expression levels of genes related to fermentative metabolism and alanine biosynthesis. These results indicate that in addition to drought stress, plants overexpressing AtAREB1 exhibited better performance under flooding when compared to the non-GM line, suggesting a cross-signaling response to both abiotic factors.
机译:干旱和洪水等非生物胁迫造成了全球粮食生产的巨大损失。大豆是世界上主要的栽培油料作物,对这两种胁迫都很敏感。植物的分子机制是通过几个信号通路的串扰来回答的,在这些通路中,特定的基因可以对不同的胁迫做出反应。此前的研究证实,转录因子AtAREB1的过度表达赋予大豆抗旱性。然而,含有这种基因的植物尚未在洪水中进行测试。因此,本研究的目的是比较干旱和洪水条件下过度表达AtAREB1的转基因(GM)大豆植株的遗传背景。进行生理和生化测量。此外,还评估了在两种胁迫下通常被激活的基因的表达水平。这些结果支持了AtAREB1基因在赋予大豆耐水性方面的作用。此外,在淹水条件下,转基因系能够有效地保持较高的光合速率、内在水分利用效率和瞬时羧化效率,从而在胁迫下获得较高的粮食产量。转基因株系的蛋白质含量较高,过氧化氢浓度较低,与发酵代谢和丙氨酸生物合成相关的基因表达水平较低。这些结果表明,除了干旱胁迫外,与非转基因系相比,过度表达AtAREB1的植物在淹水条件下表现出更好的表现,表明对这两种非生物因素都有交叉信号反应。

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