College of Resources and Environmental Sciences, Hunan Agricultural University, 410128, Changsha, China.
Key Laboratory of Agro-ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, 410128, Changsha, China.
Environ Pollut. 2022 Jun 1;302:119063. doi: 10.1016/j.envpol.2022.119063. Epub 2022 Mar 3.
Ethylene regulates plant root growth and resistance to environment stress. However, the role and mechanism of ethylene signaling in response to Cd stress in rice remains unclear. Here, we revealed that ethylene signaling plays a positive role in the resistance of rice to Cd toxicity. Blocking the ethylene signal facilitated root elongation under normal conditions, but resulted in severe oxidative damage and inhibition of root growth under Cd stress. Conversely, ethylene signal enhancement by EIN2 overexpression caused root bending, similar to the response of roots to Cd stress, and displayed higher Cd tolerance than the wildtype (WT) plants. Comparative transcriptome analysis indicated EIN2-mediated upregulation of genes involved in flavonoid biosynthesis and peroxidase activity under Cd stress. The synthesis of phenolic acids and flavonoids were positively regulated by ethylene. Thus, the ein2 (ethylene insensitive 2) mutants displayed lower ROS scavenging capacity than the WT. Moreover, a significant increase in Cd accumulation and relatively increased apoplastic flow were observed in the root apex of the ein2 mutant compared with the WT plants. Overall, EIN2-mediated Cd resistance in rice is mediated by the upregulation of flavonoid biosynthesis and peroxidase activity to induce ROS scavenging, and apoplastic transport barrier formation reduces Cd uptake.
乙烯调节植物根系生长和对环境胁迫的抗性。然而,乙烯信号在水稻响应 Cd 胁迫中的作用和机制仍不清楚。在这里,我们揭示了乙烯信号在水稻对 Cd 毒性的抗性中发挥积极作用。阻断乙烯信号在正常条件下促进根系伸长,但在 Cd 胁迫下会导致严重的氧化损伤和根系生长抑制。相反,通过过表达 EIN2 增强乙烯信号会导致根弯曲,类似于根对 Cd 胁迫的反应,并表现出比野生型(WT)植株更高的 Cd 耐受性。比较转录组分析表明,EIN2 介导的 Cd 胁迫下参与类黄酮生物合成和过氧化物酶活性的基因上调。酚酸和类黄酮的合成受乙烯的正向调节。因此,与 WT 相比,ein2(ethylene insensitive 2)突变体表现出较低的 ROS 清除能力。此外,与 WT 植株相比,ein2 突变体根尖中 Cd 积累增加,质外体流动增加。总之,EIN2 介导的水稻 Cd 抗性是通过上调类黄酮生物合成和过氧化物酶活性来诱导 ROS 清除,以及形成质外体运输屏障来减少 Cd 摄取来实现的。