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噬菌体介导的植物病原体控制进展

Advances in bacteriophage-mediated control of plant pathogens.

作者信息

Frampton Rebekah A, Pitman Andrew R, Fineran Peter C

机构信息

Department of Microbiology & Immunology, University of Otago, P.O. Box 56, Dunedin 9054, New Zealand.

出版信息

Int J Microbiol. 2012;2012:326452. doi: 10.1155/2012/326452. Epub 2012 Aug 13.

Abstract

There is continuing pressure to maximise food production given a growing global human population. Bacterial pathogens that infect important agricultural plants (phytopathogens) can reduce plant growth and the subsequent crop yield. Currently, phytopathogens are controlled through management programmes, which can include the application of antibiotics and copper sprays. However, the emergence of resistant bacteria and the desire to reduce usage of toxic products that accumulate in the environment mean there is a need to develop alternative control agents. An attractive option is the use of specific bacteriophages (phages), viruses that specifically kill bacteria, providing a more targeted approach. Typically, phages that target the phytopathogen are isolated and characterised to determine that they have features required for biocontrol. In addition, suitable formulation and delivery to affected plants are necessary to ensure the phages survive in the environment and do not have a deleterious effect on the plant or target beneficial bacteria. Phages have been isolated for different phytopathogens and have been used successfully in a number of trials and commercially. In this paper, we address recent progress in phage-mediated control of plant pathogens and overcoming the challenges, including those posed by CRISPR/Cas and abortive infection resistance systems.

摘要

鉴于全球人口不断增长,最大化粮食产量的压力持续存在。感染重要农作物的细菌病原体(植物病原体)会降低植物生长及后续作物产量。目前,植物病原体通过管理方案进行控制,其中可能包括使用抗生素和铜喷雾剂。然而,耐药细菌的出现以及减少环境中累积的有毒产品使用量的需求意味着有必要开发替代控制剂。一个有吸引力的选择是使用特定的噬菌体,即专门杀死细菌的病毒,提供一种更具针对性的方法。通常,分离并鉴定靶向植物病原体的噬菌体,以确定它们具有生物防治所需的特性。此外,需要合适的制剂并将其递送至受影响的植物,以确保噬菌体在环境中存活,并且不对植物或目标有益细菌产生有害影响。已针对不同的植物病原体分离出噬菌体,并已在多项试验和商业应用中成功使用。在本文中,我们阐述了噬菌体介导的植物病原体控制方面的最新进展以及克服相关挑战的情况,包括由CRISPR/Cas和流产感染抗性系统带来的挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7922/3426239/a490b530bc8b/IJMB2012-326452.001.jpg

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