Management of phyto-parasitic nematodes using bacteria and fungi and their consortia as biocontrol agents

IF 3.5 Q3 ENGINEERING, ENVIRONMENTAL
Shashi Prabha Yadav, Chhavi Sharma, Puneet Pathak, Anil Kanaujia, Mohan Ji Saxena and Anup Kalra
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Abstract

Phyto-parasitic nematodes are the main risks to the agroecosystem that cause agricultural output to decline in a variety of crops around the world. An intriguing and promising substitute for the chemical practice of shielding plants against the growing hazards of these pathogens lies in biological plant protection. This approach focuses on using biological control agents (BCAs) using microbial-based biocontrol techniques to inhibit the growth of phytopathogens responsible for plant diseases. Microbial BCAs interact with pathogens or plant hosts to increase their resistance, which may be a useful way to control the development of agricultural diseases. However, in comparison to a single strain, microbial consortia with distinct modes of action might exhibit a multifunctional and more resilient effect as a biocontrol. The market is currently offering only a small number of microbial consortia-based biocontrol interventions as these products are still in their infancy of development and demand substantial research to avert phyto-parasitic nematodes. The employment of BCAs to combat phytopathogens will become an increasingly vital component of sustainable agriculture in the future. Thus, this article provides a thorough review of the current status of bacteria and fungi and their microbial consortia-based biocontrol for plant protection research through a biological manner considering upcoming and advanced technological developments. Commercialization of biocontrol products and associated challenges and ways to overcome these hurdles are also discussed as future perspectives. The present review also summarizes the latest research done (particularly the past five years' data) on the activity of BCAs bacteria, fungi and their consortium against various plant pathogens with their enormous benefits for upgrading plant growth and defense mechanisms. The present review efficiently contributes to sustainable development goal 2, which is concerned with food security and sustainable agriculture.

Abstract Image

利用细菌和真菌及其联合体作为生物防治剂的植物寄生线虫管理
植物寄生线虫是农业生态系统面临的主要风险,它导致世界各地多种作物的农业产量下降。一个有趣的和有前途的替代化学实践保护植物免受这些病原体的危害是生物植物保护。该方法的重点是使用生物防治剂(bca),利用微生物为基础的生物防治技术来抑制植物病害的植物病原体的生长。微生物bca与病原菌或植物宿主相互作用,增强其抗性,可能是控制农业病害发展的有效途径。然而,与单一菌株相比,具有不同作用模式的微生物联合体可能表现出多功能和更有弹性的生物防治效果。目前市场上仅提供少量基于微生物联合体的生物防治干预措施,因为这些产品仍处于开发的初级阶段,需要大量研究以避免植物寄生线虫。利用bca来对抗植物病原体将成为未来可持续农业中越来越重要的组成部分。因此,本文从生物学的角度,结合未来和先进的技术发展,对细菌和真菌及其微生物群落在植物保护中的生物防治研究现状进行了综述。还讨论了生物防治产品的商业化以及克服这些障碍的相关挑战和方法。本文还综述了BCAs细菌、真菌及其联合体对各种植物病原体活性的最新研究(特别是近5年来的研究数据),以及它们在提升植物生长和防御机制方面的巨大益处。本综述有效地促进了关于粮食安全和可持续农业的可持续发展目标2的实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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