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植物促生根际芽孢杆菌对果胶分解植物病原菌的体内生物防治潜力

In vivo biocontrol potential of Bacillus plant growth-promoting rhizobacteria against pectinolytic plant pathogens.

作者信息

Benaissa Asmaa, Bestami Merdia, Fellan Kheira, Benmalek Rokaia

机构信息

Department of Natural and Life Sciences, Faculty of Sciences and Technology, University of Amine Elokkal El Hadj Moussa Eg Akhamoukh, 11039, Sersouf, Tamanrasset, Algeria.

Laboratory of Biology and Physiology of Organisms, Faculty of Biological Sciences, University of Sciences and Technology of Houari, Boumediene - El-Alia BP 16011 Bab Ezzouar, Algiers, Algeria.

出版信息

Folia Microbiol (Praha). 2025 Jun;70(3):689-697. doi: 10.1007/s12223-024-01214-8. Epub 2024 Oct 31.

Abstract

Bacillus is well known for producing a wide range of compounds that inhibit microbial phytopathogens. From this perspective, we were interested in evaluating the biocontrol potential of 5 plant growth-promoting rhizobacteria Bacillus species (PGPR-Bacillus) on 21 microbial pectinolytic plant pathogens isolated from previous studies. Phytopathogenicity and in vivo biocontrol potential of PGPR curative and preventive treatments were investigated from this angle. Overall, the pathogenicity test on healthy tomato, zucchini, and mandarin showed low rot to no symptoms for all PGPR strain culture treatments. Conversely, zucchini pre-treated with PGPR strains B. circulans and B. cereus for 72 h showed no signs of soft rot and remained healthy when in vitro contaminated with phytopathogens (Neisseria cinerea and Pichia anomala). Additionally, the PGPR-Bacillus strains were shown to be effective in mitigating the symptoms of soft rot in tomatoes, zucchini, and oranges using in vivo curative treatment. It is true that the majority of pectinolytic phytopathogenic strains exhibited antibiotic resistance. In vivo tests revealed that PGPR-Bacillus cell culture was effective against plant pathogens. Thus, PGPR-Bacillus can be considered a potential biocontrol agent for pectinolytic plant pathogens.

摘要

芽孢杆菌以产生多种抑制微生物植物病原体的化合物而闻名。从这个角度来看,我们有兴趣评估5种促进植物生长的根际芽孢杆菌(PGPR-芽孢杆菌)对先前研究中分离出的21种微生物果胶分解植物病原体的生物防治潜力。从这个角度研究了PGPR治疗性和预防性处理的致病性和体内生物防治潜力。总体而言,对健康番茄、西葫芦和柑橘的致病性测试表明,所有PGPR菌株培养处理的腐烂程度都很低或没有症状。相反,用环状芽孢杆菌和蜡样芽孢杆菌PGPR菌株预处理72小时的西葫芦在体外被植物病原体(灰质奈瑟菌和异常毕赤酵母)污染时,没有软腐迹象,仍然健康。此外,PGPR-芽孢杆菌菌株在体内治疗中被证明对减轻番茄、西葫芦和橙子的软腐症状有效。确实,大多数果胶分解植物病原体菌株表现出抗生素抗性。体内试验表明,PGPR-芽孢杆菌细胞培养物对植物病原体有效。因此,PGPR-芽孢杆菌可被认为是果胶分解植物病原体的潜在生物防治剂。

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