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首页> 外文期刊>Journal of pineal research >Overexpression of MzASMT improves melatonin production and enhances drought tolerance in transgenic Arabidopsis thaliana plants
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Overexpression of MzASMT improves melatonin production and enhances drought tolerance in transgenic Arabidopsis thaliana plants

机译:MzASMT的过表达提高了转基因拟南芥植物中褪黑激素的产生并增强了耐旱性

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Melatonin is a potent naturally occurring reactive oxygen species (ROS) and reactive nitrogen species (RNS) scavenger in plants. Melatonin protects plants from oxidative stress and, therefore, it improves their tolerance against a variety of environmental abiotic stressors. N-acetylserotonin-O-methyltransferase (ASMT) is a specific enzyme required for melatonin synthesis. In this report, an ASMT gene was cloned from apple rootstock (Malus zumi Mats) and designated as MzASMT1 (KJ123721). The MzASMT1 expression was induced by drought stress in apple leaves. The upregulation of MzASMT1 in the apple leaf positively relates to melatonin production over a 24-hr dark/light cycle. Purified MzASMT1 protein expressed in E.coli converted its substrates to melatonin with an activity of approximately 5.5pmol/min/mg protein. The transient transformation in tobacco identified that MzASMT1 is located in cytoplasm of the cell. When MzASMT1 gene driven by 35S promoter was transferred to Arabidopsis, melatonin levels in transgenic Arabidopsis plants were 2-4 times higher than those in the wild type. The transgenic Arabidopsis plants had significantly lower intrinsic ROS than the wild type and therefore these plants exhibited greater tolerance to drought stress than that of wild type. This is, at least partially, attributed to the elevated melatonin levels resulting from the overexpression of MzASMT1. The results elucidated the important role that membrane-located melatonin synthase plays in drought tolerance. These findings have significant implications in agriculture.
机译:褪黑激素是植物中有效的天然活性氧(ROS)和活性氮(RNS)清除剂。褪黑素可以保护植物免受氧化胁迫,因此可以提高植物对各种环境非生物胁迫源的耐受性。 N-乙酰基5-羟色胺-O-甲基转移酶(ASMT)是褪黑激素合成所需的特定酶。在此报告中,从苹果砧木(Malus zumi Mats)克隆了一个ASMT基因,并将其命名为MzASMT1(KJ123721)。 MzASMT1表达是由干旱胁迫诱导的苹果叶片中的表达。苹果叶中MzASMT1的上调与24小时暗/亮周期中褪黑激素的产生呈正相关。在大肠杆菌中表达的纯化的MzASMT1蛋白将其底物转化为褪黑激素,其活性约为5.5pmol / min / mg蛋白。烟草中的瞬时转化确定了MzASMT1位于细胞的细胞质中。当由35S启动子驱动的MzASMT1基因转移到拟南芥中时,转基因拟南芥植物中的褪黑激素水平是野生型中的2-4倍。转基因拟南芥植物的内源活性氧显着低于野生型,因此与野生型相比,这些植物对干旱的耐受性更高。这至少部分归因于由MzASMT1过表达导致的褪黑激素水平升高。结果阐明了位于膜上的褪黑激素合酶在抗旱性中的重要作用。这些发现对农业具有重要意义。

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