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Stress-inducible GmGSTU4 shapes transgenic tobacco plants metabolome towards increased salinity tolerance

机译:胁迫诱导型GmGsTU4转基因烟草植物代谢组形成增加的耐盐性

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The involvement of glutathione transferases (GSTs) in plant’s tolerance to abiotic stresses has been extensively studied; however, the metabolic changes occurring in the plants with altered GSTs expression have not been studied in detail. We have previously demonstrated that GmGSTU4 overexpression in tobacco plants conferred increased tolerance to herbicides, partly through its peroxidase activity. Here, we investigated GmGSTU4 transcriptional response to abiotic and chemical stimuli in soybean. Transgenic tobacco plants overexpressing GmGSTU4 were also evaluated regarding their phenotypic and metabolomics responses under salt stress. GmGSTU4 expression was highly induced after salt stress and atrazine treatment. Tobacco plants overexpressing GmGSTU4 were highly tolerant to 150 mM NaCl in vitro. Metabolomics comparison of plants growing under optimal conditions, indicating a shift of the transgenic plants metabolism towards the metabolic profiles observed under stress, increased concentration of precursors of glutathione biosynthesis and hexose concentration reduction. Under salt stress, transgenic plants maintained their cellular homeostasis in contrast to wild-type plants which exhibited deregulated energy metabolism. The metabolic response of the transgenic plants was characterized by higher concentration of protective metabolites such as proline and trehalose and greater induction of the oxidative pentose phosphate pathway. These results confirm GmGSTU4 contribution to salt stress tolerance, and outline a regulatory role that primes plants towards the up-regulation of protective and detoxification mechanisms under abiotic stress.
机译:谷胱甘肽转移酶(GSTs)参与植物对非生物胁迫的耐受性已得到广泛研究;然而,尚未详细研究在GSTs表达改变的植物中发生的代谢变化。先前我们已经证明,烟草植物中GmGSTU4的过表达赋予了对除草剂的耐受性,部分是由于其过氧化物酶活性。在这里,我们调查了大豆中非生物和化学刺激的GmGSTU4转录反应。还评估了盐胁迫下过表达GmGSTU4的转基因烟草植物的表型和代谢组学响应。在盐胁迫和at去津处理后,高度诱导了GmGSTU4表达。过量表达GmGSTU4的烟草植物在体外对150 mM NaCl高度耐受。在最佳条件下生长的植物的代谢组学比较,表明转基因植物的代谢向着在压力,谷胱甘肽生物合成前体的浓度增加和己糖浓度降低的情况下观察到的代谢模式转移。在盐胁迫下,转基因植物与表现出能量代谢失调的野生型植物保持细胞稳态。转基因植物的代谢反应的特征在于更高浓度的保护性代谢产物(例如脯氨酸和海藻糖)和更大的氧化性戊糖磷酸途径的诱导。这些结果证实了GmGSTU4对盐胁迫耐受性的贡献,并概述了调节作用,使植物在非生物胁迫下趋于上调保护性和解毒机制。

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