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Cadmium stress inhibits the growth of primary roots by interfering auxin homeostasis in Sorghum bicolor seedlings

机译:镉胁迫通过干扰高粱双色幼苗在高粱稳态稳定性稳定性源性的生长

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Phytotoxic effects of cadmium (Cd), a heavy metal pollutant, on plants have been extensively examined. Auxin plays vital roles in many aspects of plant development. The association between root growth and auxin signaling in Cd-stressed Sorghum bicolor was analyzed in our study. Root elongation, shoot length and the maximal photochemical efficiency (F-v/F-m) in S. bicolor seedlings were dramatically reduced after Cd stress treatment. Cd was found to be predominantly confined in the meristematic zone using a Cd-staining method. Cd stress remarkably influenced the cell cycle progression at the root tip as shown by EdU (ethynyl deoxyuridine) assay. The content of IAA was markedly diminished in the roots of Cd-stressed S. bicolor, which was along with the increase of IAA oxidase activity. Auxin transport inhibitors, 1-naphthoxyacetic acid (1-NOA) or 1- naphthylphthalamic acid (NPA), greatly reduced plant tolerance to Cd stress, whereas exogenous application of 1-naphthaleneacetic acid (NAA) improved Cd tolerance in S. bicolor seedlings. Cd stress altered the transcript level of some putative auxin biosynthetic genes. In addition, NAA interfered with the homeostasis of Cd-induced reactive oxygen species (ROS). These results revealed that Cd stress disturbed the growth of S. bicolor seedlings by affecting the homeostasis of auxin and ROS.
机译:重金属污染物镉对植物的植物毒性效应已被广泛研究。生长素在植物发育的许多方面起着至关重要的作用。本研究分析了镉胁迫下二色高粱根系生长与生长素信号传导的关系。镉胁迫处理后,双色沙棘幼苗的根伸长、芽长和最大光化学效率(F-v/F-m)显著降低。用Cd染色法发现Cd主要局限于分生带。EdU(乙炔基脱氧尿苷)分析表明,镉胁迫显著影响根尖的细胞周期进程。镉胁迫下二色瓢虫根中IAA含量显著降低,IAA氧化酶活性升高。生长素转运抑制剂1-萘氧基乙酸(1-NOA)或1-萘酞酸(NPA)大大降低了植物对镉胁迫的耐受性,而外源施用1-萘乙酸(NAA)提高了双色链霉菌幼苗的镉耐受性。镉胁迫改变了一些生长素生物合成基因的转录水平。此外,NAA干扰了镉诱导的活性氧(ROS)的稳态。这些结果表明,镉胁迫通过影响生长素和活性氧的动态平衡而干扰了双色链霉菌幼苗的生长。

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