生物防治菌定殖与植物健康的研究进展

IF 3.1 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Frontiers in bioscience (Landmark edition) Pub Date : 2025-01-14 DOI:10.31083/FBL23223
Roohallah Saberi Riseh, Fariba Fathi, Mozhgan Gholizadeh Vazvani, Mika Tapio Tarkka
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引用次数: 0

摘要

生物防治剂的使用是目前以生态友好方式防治植物病害的最佳策略之一。生物防治菌的研究已经进行了几十年,它能够对作物的生长和健康产生有益的影响。这突出了需要更深入地了解生物防治菌的定殖机制,以提高其在植物病原体控制中的功效。本文综述了生物防治细菌在宿主定殖过程中所涉及的步骤。定植过程从根区开始,生物防治细菌在根区与植物根系建立最初的相互作用。除根外,生物防治细菌迁移并定植于其他植物器官,包括茎、叶甚至花。此外,本综述试图探索促进细菌在植物内运动的机制,如通过血管或外质体等相互连接的空间迁移,以及在定植过程中应用群体感应或细胞外酶,以及在植物内建立长期联系所需的条件。讨论了对微生物群落动态、养分循环和植物整体健康的影响,强调了生物防治细菌与植物微生物群之间的复杂关系,以及生物防治细菌对植物地上部分的益处。通过揭示这些机制,研究人员可以制定有针对性的策略来提高生物防治细菌的定殖效率和整体有效性,从而提高可持续性和复原力。
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Plant Colonization by Biocontrol Bacteria and Improved Plant Health: A Review.

The use of biological control agents is one of the best strategies available to combat the plant diseases in an ecofriendly manner. Biocontrol bacteria capable of providing beneficial effect in crop plant growth and health, have been developed for several decades. It highlights the need for a deeper understanding of the colonization mechanisms employed by biocontrol bacteria to enhance their efficacy in plant pathogen control. The present review deals with the in-depth understanding of steps involved in host colonization by biocontrol bacteria. The colonization process starts from the root zone, where biocontrol bacteria establish initial interactions with the plant's root system. Moving beyond the roots, biocontrol bacteria migrate and colonize other plant organs, including stems, leaves, and even flowers. Also, the present review attempts to explore the mechanisms facilitating bacterial movement within the plant such as migrating through interconnected spaces such as vessels or in the apoplast, and applying quorum sensing or extracellular enzymes during colonization and what is needed to establish a long-term association within a plant. The impacts on microbial community dynamics, nutrient cycling, and overall plant health are discussed, emphasizing the intricate relationships between biocontrol bacteria and the plant's microbiome and the benefits to the plant's above-ground parts, the biocontrol 40 bacteria confer. By unraveling these mechanisms, researchers can develop targeted strategies for enhancing the colonization efficiency and overall effectiveness of biocontrol bacteria, leading to more sustainability and resilience.

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