School of Agricultural, Forestry, Food and Environmental Sciences, University of Basilicata, Viale dell'Ateneo Lucano, 10, I-85100, Potenza, Italy.
Environmental Biology Centre for Environmental Sciences, Hasselt University, B-3590, Diepenbeek, Belgium.
Physiol Plant. 2013 Dec;149(4):487-98. doi: 10.1111/ppl.12050. Epub 2013 Apr 10.
To date, almost no information is available in roots and shoots of the model plant Arabidopsis thaliana about the hierarchic relationship between metal accumulation, phytohormone levels, and glutathione/phytochelatin content, and how this relation affects root development. For this purpose, specific concentrations of cadmium, copper and zinc, alone or in triple combination, were supplied for 12 days to in vitro growing seedlings. The accumulation of these metals was measured in roots and shoots, and a significant competition in metal uptake was observed. Microscopic analyses revealed that root morphology was affected by metal exposure, and that the levels of trans-zeatin riboside, dihydrozeatin riboside, indole-3-acetic acid and the auxin/cytokinin ratio varied accordingly. By contrast, under metal treatments, minor modifications in gibberellic acid and abscisic acid levels occurred. Real-time polymerase chain reaction analysis of some genes involved in auxin and cytokinin synthesis (e.g. AtNIT in roots and AtIPT in shoots) showed on average a metal up-regulated transcription. The production of thiol-peptides was induced by all the metals, alone or in combination, and the expression of the genes involved in thiol-peptide synthesis (AtGSH1, AtGSH2, AtPCS1 and AtPCS2) was not stimulated by the metals, suggesting a full post-transcriptional control. Results show that the Cd/Cu/Zn-induced changes in root morphology are caused by a hormonal unbalance, mainly governed by the auxin/cytokinin ratio.
迄今为止,关于模式植物拟南芥的根和地上部分中金属积累、植物激素水平以及谷胱甘肽/植物螯合肽含量之间的层次关系,以及这种关系如何影响根系发育,几乎没有信息。为此,我们将单独或组合的特定浓度的镉、铜和锌供应给体外生长的幼苗 12 天。测量了这些金属在根和地上部分的积累情况,并观察到金属摄取的显著竞争。显微镜分析显示,金属暴露会影响根形态,而反式玉米素核苷、二氢玉米素核苷、吲哚-3-乙酸和生长素/细胞分裂素比例也相应变化。相比之下,在金属处理下,赤霉素和脱落酸的水平发生了较小的变化。一些参与生长素和细胞分裂素合成的基因(如根中的 AtNIT 和地上部分的 AtIPT)的实时聚合酶链反应分析显示,金属平均上调转录。所有金属单独或组合处理都会诱导硫肽的产生,而参与硫肽合成的基因(AtGSH1、AtGSH2、AtPCS1 和 AtPCS2)的表达不受金属刺激,表明存在完全的转录后调控。结果表明,Cd/Cu/Zn 诱导的根形态变化是由激素失衡引起的,主要受生长素/细胞分裂素比例的控制。