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Bacterial endophytes as potential biocontrol agents of vascular wilt diseases - Review and future prospects

机译:细菌内生菌作为潜在的维管束萎缩病生物防治剂-回顾与未来展望

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摘要

Vascular wilts are devastating plant diseases that can affect both annual crops as well as woody perennials, hence inducing major food losses and damaging valuable natural ecosystems. Because of ecological and economical reasons, the management of vascular wilt diseases by conventional chemical methods is raising concerns. More environmentally friendly alternatives such as the use of microbial antagonists to control phytopathogens are now of growing interest. The fact that bacterial endophytes are able to colonize an ecological niche similar to that of vascular wilt pathogens favors them as potential biocontrol agents against wilt diseases. Several possible disease suppression mechanisms of beneficial bacteria were proposed, among them induction of systemic resistance, growth promotion, competition, etc. However, there are still numerous challenges for the development and exploitation of bacterial endophytes such as the inherent characteristics of the endophyte itself or the environmental conditions. The optimization and improvement of the strategies employed in the endophytic research from early stages can help finding effective and competent biocontrol bacterial endophytes. Additionally, the use of genomic technologies and interdisciplinary research approaches in investigating the biocontrol potential of specific bacterial endophytes can deepen our knowledge of their mode of action and its regulatory backgrounds which may lead to more predictable and consistent beneficial effects from these microorganisms. (C) 2016 Published by Elsevier Inc.
机译:枯萎病是毁灭性的植物病害,可能影响一年生作物和多年生木本植物,从而导致重大粮食损失并破坏宝贵的自然生态系统。由于生态和经济原因,通过常规化学方法处理血管萎缩病引起了人们的关注。现在,越来越环保的替代方法,例如使用微生物拮抗剂来控制植物病原体,越来越引起人们的关注。细菌内生菌能够在类似于血管萎病原体的生态位上定殖的事实,使它们成为潜在的防治枯萎病的生物防治剂。提出了有益细菌的几种可能的疾病抑制机制,其中包括诱导系统抗性,促进生长,竞争等。然而,细菌内生菌的开发和利用仍然面临许多挑战,例如内生菌本身或内生菌的固有特性。环境条件。从早期阶段对内生植物研究中所用策略的优化和改进可以帮助找到有效且称职的生物防治细菌内生菌。此外,在研究特定细菌内生菌的生物防治潜力时,使用基因组学技术和跨学科研究方法可以加深我们对它们的作用方式及其调控背景的了解,这可能会导致这些微生物产生更多可预测和持续的有益作用。 (C)2016由Elsevier Inc.发布

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