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Glutathione Transferases Superfamily: Cold-Inducible Expression of Distinct GST Genes in Brassica oleracea

机译:谷胱甘肽转移酶超家族:油菜中不同GST基因的冷诱导表达。

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摘要

Plants, as sessile organisms, can suffer serious growth and developmental consequences under cold stress conditions. Glutathione transferases (GSTs, EC 2.5.1.18) are ubiquitous and multifunctional conjugating proteins, which play a major role in stress responses by preventing oxidative damage by reactive oxygen species (ROS). Currently, understanding of their function(s) during different biochemical and signaling pathways under cold stress condition remain unclear. In this study, using combined computational strategy, we identified 65 Brassica oleracea glutathione transferases (BoGST) and characterized them based on evolutionary analysis into 11 classes. Inter-species and intra-species duplication was evident between BoGSTs and Arabidopsis GSTs. Based on localization analyses, we propose possible pathways in which GST genes are involved during cold stress. Further, expression analysis of the predicted putative functions for GST genes were investigated in two cold contrasting genotypes (cold tolerance and susceptible) under cold condition, most of these genes were highly expressed at 6 h and 1 h in the cold tolerant (CT) and cold susceptible (CS) lines, respectively. Overall, BoGSTU19, BoGSTU24, BoGSTF10 are candidate genes highly expressed in B. oleracea. Further investigation of GST superfamily in B. oleracea will aid in understanding complex mechanism underlying cold tolerance in plants.
机译:作为固着生物的植物在寒冷胁迫条件下会遭受严重的生长和发育后果。谷胱甘肽转移酶(GSTs,EC 2.5.1.18)是普遍存在的多功能缀合蛋白,通过防止活性氧(ROS)引起的氧化损伤,在应激反应中起主要作用。目前,尚不清楚在冷胁迫条件下它们在不同生化和信号传导途径中的功能的了解。在这项研究中,使用组合的计算策略,我们确定了65个甘蓝型谷胱甘肽谷胱甘肽转移酶(BoGST),并根据进化分析将其表征为11类。 BoGST和拟南芥GST之间存在种间和种内重复。基于定位分析,我们提出了冷胁迫期间涉及GST基因的可能途径。此外,研究了在寒冷条件下两种冷对比基因型(耐寒性和易感性)中GST基因的预测推定功能的表达分析,其中大多数基因在耐寒性(CT)和耐寒性(CT)中分别在6 h和1 h高表达。冷感(CS)线。总体而言,BoGSTU19,BoGSTU24,BoGSTF10是在油菜双歧杆菌中高表达的候选基因。对油菜芽孢杆菌中GST超家族的进一步研究将有助于理解植物耐寒性的复杂机制。

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