首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Transcriptome Analysis to Shed Light on the Molecular Mechanisms of Early Responses to Cadmium in Roots and Leaves of King Grass (Pennisetum americanum × P. purpureum)
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Transcriptome Analysis to Shed Light on the Molecular Mechanisms of Early Responses to Cadmium in Roots and Leaves of King Grass (Pennisetum americanum × P. purpureum)

机译:转录的转录组分析揭示了景天草(Pennisetum americanum×P. purpureum)根和叶中镉早期响应的分子机制。

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摘要

King grass, a hybrid grass between pearl millet and elephant grass, has many excellent characteristics such as high biomass yield, great stress tolerance, and enormous economic and ecological value, which makes it ideal for development of phytoremediation. At present, the physiological and molecular response of king grass to cadmium (Cd) stress is poorly understood. Transcriptome analysis of early response (3 h and 24 h) of king grass leaves and roots to high level Cd (100 µM) has been investigated and has shed light on the molecular mechanism underlying Cd stress response in this hybrid grass. Our comparative transcriptome analysis demonstrated that in combat with Cd stress, king grass roots have activated the glutathione metabolism pathway by up-regulating glutathione S-transferases (GSTs) which are a multifunctional family of phase II enzymes that detoxify a variety of environmental chemicals, reactive intermediates, and secondary products of oxidative damages. In roots, early inductions of phenylpropanoid biosynthesis and phenylalanine metabolism pathways were observed to be enriched in differentially expressed genes (DEGs). Meanwhile, oxidoreductase activities were significantly enriched in the first 3 h to bestow the plant cells with resistance to oxidative stress. We also found that transporter activities and jasmonic acid (JA)-signaling might be activated by Cd in king grass. Our study provided the first-hand information on genome-wide transcriptome profiling of king grass and novel insights on phytoremediation.
机译:王草是珍珠粟与象草的杂种草,具有生物量高,抗逆性强,巨大的经济和生态价值等许多优良特性,非常适合植物修复的发展。目前,人们还不太了解国王草对镉(Cd)胁迫的生理和分子反应。研究了国王草叶和根对高水平Cd(100 µM)的早期响应(3 h和24 h)的转录组分析,为该杂草中Cd胁迫响应的分子机制提供了线索。我们的比较转录组分析表明,在与Cd胁迫作斗争的过程中,国王草根通过上调谷胱甘肽S转移酶(GST)激活了谷胱甘肽的代谢途径,谷胱甘肽S转移酶是多功能的II期酶家族,可以使多种环境化学物质解毒,中间体,以及氧化损伤的副产物。在根中,观察到苯丙烷类生物合成和苯丙氨酸代谢途径的早期诱导富含差异表达基因(DEG)。同时,在最初的3小时内氧化还原酶的活性显着增加,赋予植物细胞抗氧化胁迫的能力。我们还发现转运蛋白的活性和茉莉酸(JA)信号可能被金草中的Cd激活。我们的研究提供了国王草全基因组转录组谱分析的第一手信息,以及有关植物修复的新见解。

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