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Differential responses of root growth, acid invertase activity and transcript level to copper stress in two contrasting populations of Elsholtzia haichowensis

机译:两种不同种群的海丝El的根系生长,酸转化酶活性和转录水平对铜胁迫的差异响应

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摘要

The present study aimed to test a hypothesis that acid invertases in root of metallophytes might play important roles in root growth under heavy metal stress. Plants of two contrasting populations, one from an ancient Cu mine (MP) and the other from a non-contaminated site (NMP), of metallophyte Elsholtzia haichowensis were treated with Cu in controlled experiments. The results showed that MP was Cu tolerant under 10 μM Cu2+ treatment. Cu treatment resulted in a higher root/shoot biomass ratio in MP compared to NMP. Scaling exponent in root/shoot allometric function in MP was lower than NMP. More complicated root architecture was observed in MP under Cu stress. Four full-length cDNAs (EhNcwINV, EhCcwINV, EhNvINV and EhCvINV) encoding cell wall and vacuolar invertases were cloned. Both of the transcript level and activity of the acid invertase in MP elevated under Cu treatment. There were positive correlations between root acid invertase transcript level, activity and root/shoot biomass ratio. The results indicated important roles of acid invertase in governing root growth under Cu stress. It also suggested that there was a possible interrelation between acid invertases and Cu tolerance mechanisms in MP of E. haichowensis.
机译:本研究旨在检验以下假设:在重金属胁迫下,金属植物根部的酸转化酶可能在根部生长中起重要作用。在对照实验中,用铜处理了两个不同种群的植物,其中一个来自古代铜矿(MP),另一个来自无污染站点(NMP)。结果表明,MP在10μMCu2 +处理下具有铜耐受性。与NMP相比,Cu处理导致MP中的根/茎生物量比更高。 MP中的根/拍摄异体功能的缩放指数低于NMP。在铜胁迫下,MP中观察到更复杂的根结构。克隆了编码细胞壁和液泡转化酶的四个全长cDNA(EhNcwINV,EhCcwINV,EhNvINV和EhCvINV)。在铜处理下,MP中的转录水平和酸性转化酶的活性均升高。根酸转化酶转录水平,活性与根/茎生物量比之间呈正相关。结果表明酸转化酶在控制铜胁迫下根系生长中的重要作用。这也表明,在大肠杆菌中酸转化酶与铜耐受机制之间可能存在相互关系。

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