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首页> 外文期刊>Genes >A Novel G-Protein-Coupled Receptors Gene from Upland Cotton Enhances Salt Stress Tolerance in Transgenic Arabidopsis
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A Novel G-Protein-Coupled Receptors Gene from Upland Cotton Enhances Salt Stress Tolerance in Transgenic Arabidopsis

机译:来自陆地棉的新型G蛋白偶联受体基因增强了转基因拟南芥中的盐胁迫耐受性

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Plants have developed a number of survival strategies which are significant for enhancing their adaptation to various biotic and abiotic stress factors. At the transcriptome level, G-protein-coupled receptors (GPCRs) are of great significance, enabling the plants to detect a wide range of endogenous and exogenous signals which are employed by the plants in regulating various responses in development and adaptation. In this research work, we carried out genome-wide analysis of target of Myb1 ( TOM1 ), a member of the GPCR gene family. The functional role of TOM1 in salt stress tolerance was studied using a transgenic Arabidopsis plants over-expressing the gene. By the use of the functional domain PF06454, we obtained 16 TOM genes members in Gossypium hirsutum , 9 in Gossypium arboreum , and 11 in Gossypium raimondii . The genes had varying physiochemical properties, and it is significant to note that all the grand average of hydropathy (GRAVY) values were less than one, indicating that all are hydrophobic in nature. In all the genes analysed here, both the exonic and intronic regions were found. The expression level of Gh_A07G0747 (GhTOM) was significantly high in the transgenic lines as compared to the wild type; a similar trend in expression was observed in all the salt-related genes tested in this study. The study in epidermal cells confirmed the localization of the protein coded by the gene TOM1 in the plasma membrane. Analysis of anti-oxidant enzymes showed higher concentrations of antioxidants in transgenic lines and relatively lower levels of oxidant substances such as H 2 O 2 . The low malondialdehyde (MDA) level in transgenic lines indicated that the transgenic lines had relatively low level of oxidative damage compared to the wild types. The results obtained indicate that Gh_A07G0747 (GhTOM) can be a putative target gene for enhancing salt stress tolerance in plants and could be exploited in the future for the development of salt stress-tolerant cotton cultivars.
机译:植物已经开发出许多生存策略,这些生存策略对于增强它们对各种生物和非生物胁迫因素的适应性具有重要意义。在转录组水平上,G蛋白偶联受体(GPCR)具有重要意义,使植物能够检测广泛的内源性和外源性信号,这些信号可被植物用于调节发育和适应过程中的各种反应。在这项研究工作中,我们对Myb1(TOM1)(GPCR基因家族的成员)的靶标进行了全基因组分析。使用过表达该基因的转基因拟南芥植物研究了TOM1在盐胁迫耐受性中的功能作用。通过使用功能域PF06454,我们在陆地棉中获得了16个TOM基因成员,在植物棉中获得了9个TOM基因成员,在雷蒙德棉中获得了11个TOM基因成员。这些基因具有不同的理化特性,值得注意的是,所有亲水性的总平均值(GRAVY)均小于1,表明所有疏水性均具有疏水性。在这里分析的所有基因中,都发现了外显子和内含子区域。与野生型相比,转基因品系中Gh_A07G0747(GhTOM)的表达水平显着较高;在这项研究中测试的所有盐相关基因中都观察到了类似的表达趋势。对表皮细胞的研究证实了由TOM1基因编码的蛋白质在质膜中的定位。抗氧化剂酶的分析表明,转基因品系中抗氧化剂的浓度较高,而氧化剂物质如H 2 O 2的含量相对较低。转基因品系中的丙二醛(MDA)水平低表明与野生型相比,转基因品系具有相对较低的氧化损伤水平。获得的结果表明,Gh_A07G0747(GhTOM)可以作为增强植物耐盐胁迫的推定靶基因,并且可以在将来用于开发耐盐胁迫的棉花品种。

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