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从堆肥浸提液中分离出的细菌的生物防治和促进植物生长潜力。

Biocontrol and plant growth-promoting potentiality of bacteria isolated from compost extract.

机构信息

Laboratory of Biopesticides, Centre of Biotechnology of Sfax, P.B. 1177, 3018, Sfax, Tunisia.

Laboratory of Environmental Sciences and Sustainable Development (LASED), Sfax Preparatory Engineering Institute, University of Sfax, BP 1172-3018, Sfax, Tunisia.

出版信息

Antonie Van Leeuwenhoek. 2020 Dec;113(12):2107-2122. doi: 10.1007/s10482-020-01481-8. Epub 2020 Nov 6.

Abstract

The use of compost extracts is steadily increasing, offering an attractive way for plant growth enhancement and disease management replacing chemical pesticides. In this study, potential mechanisms involved in plant growth promotion and suppressive activity against fungal diseases, of a compost extract produced from poultry manure/olive husk compost, were investigated. Results of physico-chemical and microbiological investigations showed high ability to reduce Fusarium oxysporum, Alternaria alternata, Aspergillus niger and Botrytis cinerea growth. The suppressive ability detected using confrontation test and the phytostimulatory effect tested on tomato seeds were related mainly to its microbial population content. Among 150 bacterial strains, isolated from the compost extract, 13 isolates showed antifungal activity against the four tested plant pathogenic fungi. Their identification based on 16S rRNA gene sequence revealed they belonged to different species of the genus Bacillus, Alcaligenes, Providencia and Ochrobactrum. When tested for their ability to produce cell wall degradation enzymes using specific media, the majority of the 13 isolates were shown to synthesize proteases, lipases and glucanases. Similarly, the best part of them showed positive reaction for plant growth promoting substances liberation, biosurfactant production and biofilm formation. In vivo tests were carried out using tomato seeds and fruits and proved that 92% of strains improved tomato plants vigor indexes when compared to the control and 6 among them were able to reduce decay severity caused by B. cinerea over 50%. Principal component analysis showed an important correlation between in vitro and in vivo potentialities and that Bacillus siamensis CEBZ11 strain was statistically the most effective strain in protecting tomato plants from gray mould disease. This study revealed the selected strains would be useful for plant pathogenic fungi control and plant growth promotion.

摘要

堆肥提取物的使用正在稳步增加,为植物生长增强和疾病管理提供了一种有吸引力的方法,可替代化学农药。在这项研究中,研究了一种由家禽粪便/橄榄壳堆肥制成的堆肥提取物在促进植物生长和抑制真菌病害方面的潜在机制。理化和微生物学研究结果表明,其具有抑制尖孢镰刀菌、交链孢霉、黑曲霉和灰葡萄孢生长的高能力。对峙试验中检测到的抑制能力和对番茄种子的植物刺激作用主要与它的微生物种群含量有关。从堆肥提取物中分离出的 150 株细菌中,有 13 株对 4 种测试的植物病原菌表现出抗真菌活性。基于 16S rRNA 基因序列的鉴定表明,它们属于芽孢杆菌属、产碱杆菌属、普罗威登斯菌属和黄杆菌属的不同种。当使用特定培养基测试它们产生细胞壁降解酶的能力时,大多数 13 株菌被证明能合成蛋白酶、脂肪酶和葡聚糖酶。同样,它们中的大部分也对植物生长促进物质的释放、生物表面活性剂的产生和生物膜的形成表现出阳性反应。在体内试验中,使用番茄种子和果实进行了试验,结果表明,与对照相比,92%的菌株提高了番茄植株活力指数,其中 6 株能将由灰葡萄孢引起的腐烂严重程度降低 50%以上。主成分分析表明,体外和体内潜力之间存在重要相关性,芽孢杆菌 CEBZ11 菌株在统计学上是保护番茄植株免受灰霉病的最有效菌株。本研究表明,所选菌株将有助于控制植物病原菌和促进植物生长。

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