Singh Harshita, Bhat Javaid Akhter, Singh Vijay Pratap, Corpas Francisco J, Yadav Shri Ram
Department of Biotechnology, Indian Institute of Technology, Roorkee 247667, Uttarakhand, India.
National Center for Soybean Improvement, Key L aboratory of Biology and Genetics and Breeding for Soybean, Ministry of Agriculture, State Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, China.
J Hazard Mater. 2021 Mar 5;405:124250. doi: 10.1016/j.jhazmat.2020.124250. Epub 2020 Oct 12.
Metalloids are among the major pollutants posing a risk to the environment and global food security. Plant roots uptake these toxic metalloids from the soil along with other essential minerals. Plants respond to metalloid stress by regulating the distribution and levels of various endogenous phytohormones. Recent research showed that auxin is instrumental in mediating resilience to metalloid-induced stress in plants. Exogenous supplementation of the auxin or plant growth-promoting micro-organisms (PGPMs) alleviates metalloid uptake, localization, and accumulation in the plant tissues, thereby improving plant growth under metalloid stress. Moreover, auxin triggers various biological responses such as the production of enzymatic and non-enzymatic antioxidants to combat nitro-oxidative stress induced by the metalloids. However, an in-depth understanding of the auxin stimulated molecular and physiological responses to the metalloid toxicity needs to be investigated in future studies. The current review attempts to provide an update on the recent advances and the current state-of-the-art associated with auxin and metalloid interaction, which could be used as a start point to develop biotechnological tools and create an eco-friendly environment.
类金属是对环境和全球粮食安全构成风险的主要污染物之一。植物根系会从土壤中吸收这些有毒类金属以及其他必需矿物质。植物通过调节各种内源性植物激素的分布和水平来应对类金属胁迫。最近的研究表明,生长素在介导植物对类金属诱导胁迫的抗性中起作用。外源补充生长素或植物促生微生物(PGPMs)可减轻植物组织中类金属的吸收、定位和积累,从而改善类金属胁迫下的植物生长。此外,生长素会引发各种生物学反应,如产生酶促和非酶促抗氧化剂以对抗类金属诱导的硝基氧化应激。然而,未来的研究需要深入了解生长素刺激的对类金属毒性的分子和生理反应。本综述试图提供有关生长素与类金属相互作用的最新进展和当前技术水平的最新信息,这可作为开发生物技术工具和创造生态友好环境的起点。