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The soybean GmbZIP1 transcription factor enhances multiple abiotic stress tolerances in transgenic plants

机译:大豆GmbZIP1转录因子增强转基因植物的多种非生物胁迫耐受性

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摘要

Abscisic acid (ABA)-responsive element binding proteins (AREBs) are basic domain/leucine zipper transcription factors that bind to the ABA-responsive element (ABRE) in the promoter regions of ABA-inducible genes in plants. A novel bZIP transcription factor gene, GmbZIP1, encoding 438 amino acids with a conserved bZIP domain composed of 60 amino acids was isolated from salt-tolerant soybean cv. Tiefeng 8. Southern blotting showed that only one copy was present in the soybean genome. Phylogenetic analyses showed that GmbZIP1 belonged to the AREB subfamily of the bZIP family and was most closely related to AtABF2 and OsTRAB1. The expression of GmbZIP1 was highly induced by ABA, drought, high salt and low temperature; and GmbZIP1 was expressed in soybean roots, stems and leaves under different stress conditions. GmbZIP1 was localized inside the nuclei of transformed onion epidermal cells. Overexpression of GmbZIP1 enhanced the responses of transgenic plants to ABA and triggered stomatal closure under stresses, potentially leading to improved tolerances to several abiotic stresses such as high salt, low temperature and drought in transgenic plants. Furthermore, overexpression of GmbZIP1 affected the expression of some ABA or stress-related genes involved in regulating stomatal closure in Arabidopsis under ABA, drought and high salt stress conditions. A few AREB elements were detected in the promoter region of those ABA or stress-related genes, suggesting that GmbZIP1 regulates the ABA response or stomatal closure mediated by those downstream genes in transgenic Arabidopsis. Moreover, GmbZIP1 was used to improve the drought tolerance trait of Chinese wheat varieties BS93. Functional analysis showed that overexpression of GmbZIP1 enhanced the drought tolerance of transgenic wheat, and transcripts of GmbZIP1 were detected in transgenic wheat using RT-PCR. In addition, GmbZIP1 overexpression did not result in growth retardation in all transgenic plants, suggesting that GmbZIP1 may be a valuable genetic resource for engineering stress tolerance of crops.
机译:脱落酸(ABA)反应元件结合蛋白(AREB)是基本域/亮氨酸拉链转录因子,其与植物中ABA诱导基因的启动子区域中的ABA反应元件(ABRE)结合。从耐盐大豆cv中分离出一个新的bZIP转录因子基因GmbZIP1,该基因编码438个氨基酸,具有由60个氨基酸组成的保守bZIP结构域。铁峰8. Southern杂交表明,大豆基因组中仅存在一个拷贝。系统发育分析表明,GmbZIP1属于bZIP家族的AREB亚家族,与AtABF2和OsTRAB1最为相关。 ABA,干旱,高盐和低温强烈诱导了GmbZIP1的表达。 GmbZIP1在不同胁迫条件下在大豆根,茎和叶中表达。 GmbZIP1位于转化洋葱表皮细胞的细胞核内。 GmbZIP1的过表达增强了转基因植物对ABA的反应,并在压力下触发了气孔关闭,可能导致转基因植物对几种非生物胁迫(如高盐,低温和干旱)的耐受性提高。此外,在ABA,干旱和高盐胁迫条件下,GmbZIP1的过表达影响了拟南芥气孔关闭相关的一些ABA或胁迫相关基因的表达。在那些ABA或胁迫相关基因的启动子区域检测到一些AREB元件,表明GmbZIP1调节转基因拟南芥中那些下游基因介导的ABA反应或气孔关闭。此外,GmbZIP1被用于改善中国小麦品种BS93的耐旱性状。功能分析表明,GmbZIP1的过表达增强了转基因小麦的耐旱性,RT-PCR检测到转基因小麦的转录本。此外,GmbZIP1的过表达并未在所有转基因植物中导致生长迟缓,这表明GmbZIP1可能是作物抗逆转工程的宝贵遗传资源。

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