School of Biosciences, Mahatma Gandhi University, P.D Hills (P.O), Kottayam, Kerala, 686 560, India.
Curr Microbiol. 2021 Mar;78(3):904-910. doi: 10.1007/s00284-020-02317-4. Epub 2021 Feb 12.
In order to meet the agricultural requirement for the expanding population, pesticides have been used regularly even with their severe threat. The uncontrolled use of these pesticides can cause irreparable damage to both soil and plant-associated microbiome. Therefore, an environment friendly alternative to enhance plant productivity and yield is highly important. Here comes the importance of endophytic microorganisms with multi-plant beneficial mechanisms to protect plants from the biotic and abiotic stress factors. However, their performance can be negatively affected under pesticide exposure. Hence the present study was conducted to analyse the tolerating ability of a Bacillus sp. Fcl1 which was originally isolated from the rhizome of Curcuma longa towards the pesticide quinalphos and also its ability to reduce the quinalphos-induced toxicity in Vigna unguiculata. The results revealed that the viability of endophytic Bacillus sp. Fcl1 depended on the concentration of quinalphos used for the study. Further, Fcl1 supplementation was found to alleviate the quinalphos-induced toxicity in Vigna unguiculata seedlings. The study is environmentally significant due to the pesticide tolerating and alleviating effect of Bacillus sp. Fcl1 in quinalphos-induced plant toxicity. This could suggest the application of microbes of endophytic origin as an efficient bioinoculant for field application even in the presence of pesticide residues.
为了满足不断增长的人口对农业的需求,尽管这些农药存在严重威胁,但仍被定期使用。这些农药的滥用会对土壤和与植物相关的微生物群落造成不可挽回的损害。因此,寻找一种环保的替代品来提高植物的生产力和产量非常重要。具有多种植物有益机制的内生微生物在保护植物免受生物和非生物胁迫因素方面就显得尤为重要。然而,它们的性能在接触农药时可能会受到负面影响。因此,本研究旨在分析最初从姜黄根茎中分离出的芽孢杆菌 Fcl1 对农药喹硫磷的耐受能力,以及其减轻豇豆中喹硫磷诱导毒性的能力。结果表明,内生芽孢杆菌 Fcl1 的生存能力取决于研究中使用的喹硫磷浓度。此外,发现 Fcl1 的补充可以减轻豇豆幼苗中喹硫磷诱导的毒性。由于芽孢杆菌 Fcl1 具有耐受和减轻喹硫磷诱导植物毒性的作用,因此这项研究具有重要的环境意义。这表明即使在存在农药残留的情况下,内生微生物也可以作为一种有效的生物接种剂应用于田间。