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In Arabidopsis thaliana Cadmium Impact on the Growth of Primary Root by Altering SCR Expression and Auxin-Cytokinin Cross-Talk

机译:拟南芥中的镉通过改变SCR表达和生长素-细胞分裂素交叉对话对原根生长的影响

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摘要

Cadmium is one of the most widespread pollutant in both terrestrial and marine environment, and its inhibitory effect on plant growth has been largely demonstrated. However, the molecular mechanisms underlying Cd toxicity in plant and mainly in root, as the first organ sensing soil heavy metals, need to be better investigated. To this aim, in the present work we analyzed the growth and the organization of Arabidopsis thaliana primary root in seedlings exposed to Cd (25 and 50 μM) for 8 days starting from germination. Root length, root meristem size, and organization were evaluated together with the behavior of some of the major molecular players in root growth and patterning. In particular, by using different GFP transgenic lines, we monitored: (i) the expression pattern of WOX5 and SCR transcription factors involved in the establishment and maintenance of stem cell niche and in the control of meristem size; (ii) the expression pattern of the IAA-inducible pDR5::GFP reporter, PIN 1, 2, 3, 7 auxin carriers and TCSn::GFP cytokinin-sensitive sensor as relevant components of hormone circuit controlling root growth. We report that Cd exposure inhibits primary root growth via affecting RAM stem cell niche and root radial pattern. At the molecular level, an impairment of auxin maximum accumulation at the root tip, related to a down-regulation and mislocalisation of PIN proteins, and an enhancement of TCSn::GFP cytokinin-sensitive sensor signal is also detected under Cd treatment, thus suggesting an alteration in the homeostasis of auxin/cytokinin signaling. Moreover, and for the first time Cd toxicity on root growth and pattern has been related to a misexpression of SCR transcription factors which is known to interplay with auxin/cytokinin cross-talk in the control of RAM maintenance and activity.
机译:镉是陆地和海洋环境中最广泛的污染物之一,其对植物生长的抑制作用已得到充分证明。然而,作为第一个检测土壤重金属的器官,需要进一步研究植物中和主要在根中的Cd毒性的分子机制。为此,在本工作中,我们分析了从萌芽开始暴露于Cd(25和50μM)8天的拟南芥拟南芥根的生长和组织。评估了根长,根分生组织大小和组织,以及一些主要分子在根生长和构图中的行为。特别是,通过使用不同的GFP转基因品系,我们监测:(i)WOX5和SCR转录因子的表达模式,涉及干细胞生态位的建立和维持以及分生组织大小的控制; (ii)IAA诱导型pDR5 :: GFP报告基因,PIN 1、2、3、7生长素载体和TCSn :: GFP细胞分裂素敏感传感器的表达模式,这些激素是控制根生长的激素回路的相关成分。我们报告镉暴露通过影响RAM干细胞的利基和根径向模式抑制初级根生长。在分子水平上,在Cd处理下还检测到了根末端生长素最大积累的损伤,这与PIN蛋白的下调和定位错误以及TCSn :: GFP细胞激肽敏感传感器信号的增强有关,这表明生长素/细胞分裂素信号传递稳态的改变。而且,Cd对根生长和模式的毒性第一次与SCR转录因子的错误表达有关,已知该转录因子在控制RAM维持和活性中与生长素/细胞分裂素的串扰相互作用。

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