首页> 外文期刊>Vegetos: an international journal of plant research >Characterization and biocontrol measures of Pseudomonas syringae pv. syringae associated with citrus blast disease
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Characterization and biocontrol measures of Pseudomonas syringae pv. syringae associated with citrus blast disease

机译:假单胞菌光伏PS的表征与生物防治措施。 与柑橘爆炸疾病相关的

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摘要

The present study was conducted to identify the two Pseudomonas syringae pv. syringae strains attained from the citrus blast infected tissues and also to find out the antimicrobial potentiality of plant extracts and antagonistic bacteria Bacillus spp.both under in vitro and in vivo conditions. Based on the microscopic observation and biochemical features including colouring, magnitude, size, and form of colonies displayed on LB medium, we speculate that ps17a and ps18a strains were similar to P. syringae pv syringae. For molecular identification, 16S rRNA and multi-locus sequence analysis (MLSA) with two housekeeping gene (rpoD and gyrB) sequences indicated an identical pattern to the corresponding sequences of other P. syringae pv. syringae strains which confirmed that a genetically homologous species of P. syringae pv. syringae was responsible for bacterial blast disease of citrus cultivars. Later, PCR amplification using two primer pairs (B1 and B2) yielded 752-bp fragments to confirm that syrBgene present on both isolated P. syringae pv syringae and reference strains (Pss16) can synthesize syringomycin, a potent toxin for plant pathogenicity induction. Based on the pathogenicity tests, two strains were similar in terms of virulence activity,however, were not analogous thus, having the same level of severity effect to induce bacterial blast. Moreover, antibiotic sensitivity assay showed disproportionate result for both strains which resemble susceptible strains determination. From the in vitro investigation of six plant extracts and three Bacillus isolates against ps17a and ps18a, the ethanolic extract of Allium sativum, Moringa oleifera, and Azadirachta indica showed the highest antibacterial activity against two isolated bacterial strains up to inhibition zone 23.4, 24.4 and 18.2 mm in diameter, respectively while Bacillus isolates proved to be better natural antimicrobial agents against the disease. Finally, based on in vivo experiment, the most effective plant extracts and antagonistic isolates BS5 exhibited significant necrosis growth reduction after 10 weeks of inoculation by ps17a up to 67.48 and 52.88% as compared to 65.42 and 55.3% by ps18a, respectively. Thus, six selected ethanolic plant extracts and three isolates of Bacillusspp. have a broad-spectrum antimicrobial activity which can be used as effective biocontrol agent.
机译:本研究旨在鉴定两株丁香假单胞菌pv。从柑橘瘟疫感染的组织中获得丁香菌株,并在体外和体内条件下研究植物提取物和拮抗细菌芽孢杆菌的抗菌潜力。基于显微镜观察和生化特征,包括LB培养基上显示的菌落颜色、大小和形式,我们推测ps17a和ps18a菌株与丁香P.syringae pv-syringae相似。对于分子鉴定,16S rRNA和带有两个看家基因(rpoD和gyrB)序列的多位点序列分析(MLSA)表明,与其他丁香pv的相应序列具有相同的模式。其中丁香属菌株证实了一个与丁香属植物遗传同源的物种。丁香是柑橘品种细菌性瘟病的主要病原。随后,使用两对引物(B1和B2)进行PCR扩增,得到752个bp的片段,以确认存在于分离的丁香假单胞菌和参考菌株(Pss16)上的丁香烯可以合成丁香霉素,这是一种用于植物致病性诱导的强效毒素。根据致病性试验,两株菌株在毒力活性方面相似,但并不相似,因此,它们对诱导细菌爆炸的严重程度相同。此外,抗生素敏感性试验显示,这两种菌株的结果与敏感菌株的测定结果相似。通过对六种植物提取物和三种芽孢杆菌菌株对ps17a和ps18a的体外研究,大蒜、辣木和印楝的乙醇提取物对两种分离的细菌菌株显示出最高的抗菌活性,直径分别为23.4、24.4和18.2mm,而芽孢杆菌菌株则被证明是更好的天然抗菌剂。最后,根据体内实验,最有效的植物提取物和拮抗菌株BS5在接种ps17a 10周后表现出显著的坏死生长减少,与ps18a分别为65.42%和55.3%相比,分别高达67.48%和52.88%。因此,选择了六种乙醇植物提取物和三种杆菌菌株。具有广谱抗菌活性,可作为有效的生防剂。

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