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Response to copper excess in Arabidopsis thaliana: Impact on the root system architecture, hormone distribution, lignin accumulation and mineral profile.

机译:拟南芥对铜过量的响应:对根系结构,激素分布,木质素积累和矿物质分布的影响。

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摘要

Growth, in particular reorganization of the root system architecture, mineral homeostasis and root hormone distribution were studied in Arabidopsis thaliana upon copper excess. Five-week-old Arabidopsis plants growing in hydroponics were exposed to different Cu(2+) concentrations (up to 5 muM). Root biomass was more severely inhibited than shoot biomass and Cu was mainly retained in roots. Cu(2+) excess also induced important changes in the ionome. In roots, Mg, Ca, Fe and Zn concentrations increased, whereas K and S decreased. Shoot K, Ca, P, and Mn concentrations decreased upon Cu(2+) exposure. Further, experiments with seedlings vertically grown on agar were carried out to investigate the root architecture changes. Increasing Cu(2+) concentrations (up to 50 muM) reduced the primary root growth and increased the density of short lateral roots. Experiment of split-root system emphasized a local toxicity of Cu(2+) on the root system. Observations of GUS reporter lines suggested changes in auxin and cytokinin accumulations and in mitotic activity within the primary and secondary root tips treated with Cu(2+). At toxic Cu(2+) concentrations (50 muM), these responses were accompanied by higher root apical meristem death. Contrary to previous reports, growth on high Cu(2+) did not induce an ethylene production. Finally lignin deposition was detected in Cu(2+)-treated roots, probably impacting on the translocation of nutrients. The effects on mineral profile, hormonal status, mitotic activity, cell viability and lignin deposition changes on the Cu(2+)-induced reorganization of the root system architecture are discussed.
机译:在铜过量的条件下,研究了拟南芥的生长,特别是根系结构的重组,矿物质稳态和根激素分布。在水培法中生长的五周龄拟南芥植物暴露于不同的Cu(2+)浓度(最高5μM)。根生物量比芽生物量受到更严重的抑制,而铜主要保留在根中。铜(2+)过量也引起离子组中的重要变化。在根中,Mg,Ca,Fe和Zn浓度增加,而K和S减少。射击K,Ca,P和Mn浓度在Cu(2+)暴露后降低。此外,进行了在琼脂上垂直生长的幼苗的实验,以研究根的结构变化。增加的Cu(2+)浓度(最多50μM)减少了初生根的生长并增加了短侧根的密度。分裂根系统的实验强调了Cu(2+)对根系统的局部毒性。 GUS记者系的观察表明,在用Cu(2+)处理的初级和次级根尖内,生长素和细胞分裂素的积累以及有丝分裂活性发生了变化。在有毒的Cu(2+)浓度(50μM)下,这些反应伴随着更高的根尖分生组织死亡。与以前的报告相反,在高Cu(2+)上的生长不会诱导乙烯的产生。最后,在Cu(2+)处理过的根中检测到木质素沉积,可能影响养分的转运。讨论了对矿物质概况,激素状态,有丝分裂活性,细胞活力和木质素沉积变化对根系统体系的Cu(2+)诱导的重组的影响。

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