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Nickel Toxicity Targets Cell Wall-Related Processes and PIN2-MeaiaLed Auxin Transport to Inhibit Root Elongation and Gravitropic Responses in Arabidopsis

机译:镍毒性靶向细胞壁相关的过程和Pin2 - Mealed植物素转运,以抑制拟南芥中的根伸长率和重力应答

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摘要

Contamin; 'ion of soils with heavy metals, such as nickel (Ni), is a major environmental concern due to increasing pollution from industrial activities, burning of fossil fuels, incorrect disposal of sewage sludge, excessive manure application and the use of fertilizers and pesticides in agriculture. Excess Ni induces leaf chlorosis and inhibits plant growth, but the mechanisms underlying growth inhibition remain largely unknown. A detailed analysis of root development in Arabidopsis thaliana in the presence of Ni revealed that this heavy metal induces gravitropic defects and locally inhibits root growth by suppressing cell elongation without significantly disrupting the integrity of the stem cell niche. The analysis of auxin-responsive reporters revealed that excess Ni inhibits shootward auxin distribution. Furthermore, we found that PIN2 is very sensitive to Ni, as the presence of this heavy metal rapidly reduced PIN2 levels in roots. A transcriptome analysis also showed that Ni affects the expression of many genes associated with plant cell walls and that Ni-induced transcriptional changes are largely independent of iron (Fe). In addition, we raised evidence that excess Ni increases the accumulation of reactive oxygen species and disturbs the integrity and orientation of microtubules. Together, our results highlight which processes are primarily targeted by Ni to alter root growth and development.
机译:康塔明由于工业活动、化石燃料燃烧、污水污泥处理不当、过度施用肥料以及农业中使用化肥和农药造成的污染日益严重,土壤中的镍(Ni)等重金属离子是一个主要的环境问题。过量的镍会诱导叶片褪绿并抑制植物生长,但生长抑制的机制仍不清楚。对镍存在下拟南芥根系发育的详细分析表明,这种重金属会诱导向重力性缺陷,并通过抑制细胞伸长而局部抑制根系生长,但不会显著破坏干细胞生态位的完整性。对生长素反应的报告者的分析显示,过量的镍抑制了生长素向射击方向的分布。此外,我们发现PIN2对镍非常敏感,因为这种重金属的存在迅速降低了根中的PIN2水平。转录组分析还表明,镍影响许多与植物细胞壁相关的基因的表达,镍诱导的转录变化在很大程度上独立于铁(Fe)。此外,我们提出的证据表明,过量的镍会增加活性氧的积累,扰乱微管的完整性和方向。总之,我们的结果强调了Ni主要针对哪些过程来改变根系生长和发育。

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