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The Functional and Regulatory Mechanisms of the Thellungiella salsuginea Ascorbate Peroxidase 6 (TsAPX6) in Response to Salinity and Water Deficit Stresses

机译:Salsuginea抗坏血酸小球藻过氧化物酶6(TsAPX6)的功能和调节机制对盐度和水分亏缺胁迫的响应

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摘要

Soil salinization is a resource and ecological problem in the world. Thellungiella salsuginea is becoming a new model plant because it resembles its relative species, Arabidopsis thaliana, in small genome and short life cycle. It is highly tolerant to salinity and drought stresses. Ascorbate peroxidase (APX) is an enzyme that clears H2O2 in plants. The function and molecular and regulation mechanisms of APX in T. salsuginea have rarely been reported. In this study, an APX gene, TsApx6, was cloned from T. salsuginea and its responses to abiotic stresses in transgenic Arabidopsis were studied. Under high salinity treatment, the expression of TsApx6 was significantly induced. Under drought treatment, overexpression of TsApx6 increased the survival rate and reduced leaf water loss rate in Arabidopsis. Compared to the wild type plants, high salinity treatment reduced the concentrations of MDA, H2O2 and proline but elevated the activities of APX, GPX, CAT and SOD in the TsApx6-overexpressing plants. Meanwhile, germination rate, cotyledon greening, and root length were improved in the transgenic plants compared to the wild type plants under salt and water deficit conditions. Based on these findings, TsApx6 has an important function in the resistance of plants to certain abiotic stresses. The TsApx6 promoter sequence was obtained using Genome Walking technology. Bioinformatics analysis indicated that it contains some cis-acting elements related to stress response. The treatments of salt, dehydration, and ABA induced the expression of Gus gene under the regulation of the TsApx6 promoter. Mutation analysis showed that the MBS motif present in the TsApx6 promoter might be a key negative regulatory element which has an important effect on the growth and developmental process of plants.
机译:土壤盐碱化是世界上的资源和生态问题。 Salsuginea拟南芥(Thellungiella salsuginea)正在成为一种新的模式植物,因为它类似于其相对物种拟南芥(Arabidopsis thaliana),基因组少且生命周期短。它高度耐受盐分和干旱胁迫。抗坏血酸过氧化物酶(APX)是一种清除植物中H2O2的酶。很少有人报道过沙门氏菌中APX的功能,分子和调控机制。在这项研究中,从S. salsuginea克隆了一个APX基因TsApx6,并研究了其对转基因拟南芥中非生物胁迫的响应。在高盐度处理下,明显诱导了TsApx6的表达。在干旱处理下,TsApx6的过表达提高了拟南芥的存活率并降低了叶片失水率。与野生型植物相比,高盐处理降低了过表达TsApx6的植物中MDA,H2O2和脯氨酸的浓度,但增加了APX,GPX,CAT和SOD的活性。同时,与野生型植物相比,在缺水和缺水的条件下,转基因植物的发芽率,子叶绿化和根长得到改善。基于这些发现,TsApx6在植物对某些非生物胁迫的抗性中具有重要功能。使用基因组步行技术获得TsApx6启动子序列。生物信息学分析表明,它包含一些与应激反应有关的顺式作用元件。在 TsApx6 启动子的调控下,盐,脱水和ABA处理诱导Gus基因表达。突变分析表明, TsApx6 启动子中存在的MBS基序可能是关键的负调控元件,对植物的生长发育过程具有重要影响。

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