Zhejiang Key Lab of Crop Germplasm, Department of Agronomy, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, China.
Department of Biotechnology and Genetic Engineering, Kohat University of Science and Technology, Kohat, Pakistan.
Plant Cell Environ. 2018 Jun;41(6):1453-1467. doi: 10.1111/pce.13174.
The hexavalent form of chromium [Cr(VI)] causes a major reduction in yield and quality of crops worldwide. The root is the first plant organ that interacts with Cr(VI) toxicity, which inhibits primary root elongation, but the underlying mechanisms of this inhibition remain elusive. In this study, we investigate the possibility that Cr(VI) reduces primary root growth of Arabidopsis by modulating the cell cycle-related genes and that ethylene signalling contributes to this process. We show that Cr(VI)-mediated inhibition of primary root elongation was alleviated by the ethylene perception and biosynthesis antagonists silver and cobalt, respectively. Furthermore, the ethylene signalling defective mutants (ein2-1 and etr1-3) were insensitive, whereas the overproducer mutant (eto1-1) was hypersensitive to Cr(VI). We also report that high levels of Cr(VI) significantly induce the distribution and accumulation of auxin in the primary root tips, but this increase was significantly suppressed in seedlings exposed to silver or cobalt. In addition, genetic and physiological investigations show that AUXIN-RESISTANT1 (AUX1) participates in Cr(VI)-induced inhibition of primary root growth. Taken together, our results indicate that ethylene mediates Cr(VI)-induced inhibition of primary root elongation by increasing auxin accumulation and polar transport by stimulating the expression of AUX1.
六价铬 [Cr(VI)] 会大大降低全球作物的产量和质量。根是与 Cr(VI) 毒性最先相互作用的植物器官,它会抑制主根伸长,但这种抑制的潜在机制仍不清楚。在这项研究中,我们研究了 Cr(VI) 是否通过调节与细胞周期相关的基因来减少拟南芥主根生长的可能性,以及乙烯信号是否有助于这一过程。我们表明,乙烯感受和生物合成拮抗剂银和钴分别缓解了 Cr(VI) 介导的主根伸长抑制。此外,乙烯信号缺陷突变体 (ein2-1 和 etr1-3) 不敏感,而过表达突变体 (eto1-1) 对 Cr(VI) 敏感。我们还报告说,高水平的 Cr(VI) 会显著诱导生长素在主根尖端的分布和积累,但在暴露于银或钴的幼苗中,这种增加被显著抑制。此外,遗传和生理研究表明,AUXIN-RESISTANT1 (AUX1) 通过刺激 AUX1 的表达来参与 Cr(VI) 诱导的主根生长抑制。总之,我们的结果表明,乙烯通过增加生长素的积累和极性运输来介导 Cr(VI) 诱导的主根伸长抑制,从而刺激 AUX1 的表达。