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Characterization of CMR5c and CMR12a, novel fluorescent Pseudomonas strains from the cocoyam rhizosphere with biocontrol activity

机译:表征CMR5c和CMR12a,从Cocoyam根际的新型荧光假单胞菌菌株具有生物防治活性

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Aim: To screen for novel antagonistic Pseudomonas strains producing both phenazines and biosurfactants that are as effective as Pseudomonas aeruginosa PNA1 in the biocontrol of cocoyam root rot caused by Pythium myriotylum. Material and Results: Forty pseudomonads were isolated from the rhizosphere of healthy white and red cocoyam plants appearing in natural, heavily infested fields in Cameroon. In vitro tests demonstrated that Py. myriotylum antagonists could be retrieved from the red cocoyam rhizosphere. Except for one isolate, all antagonistic isolates produced phenazines. Results from whole-cell protein profiling showed that the antagonistic isolates are different from other isolated pseudomonads, while BOX-PCR revealed high genomic similarity among them. 16S rDNA sequencing of two representative strains within this group of antagonists confirmed their relatively low similarity with validly described Pseudomonas species. These antagonists are thus provisionally labelled as unidentified Pseudomonas strains. Among the antagonists, Pseudomonas CMR5c and CMR12a were selected because of their combined production of phenazines and biosurfactants. For strain CMR5c also, production of pyrrolnitrin and pyoluteorin was demonstrated. Both CMR5c and CMR12a showed excellent in vivo biocontrol activity against Py. myriotylum to a similar level as Ps. aeruginosa PNA1. Conclusion: Pseudomonas CMR5c and CMR12a were identified as novel and promising biocontrol agents of Py. myriotylum on cocoyam, producing an arsenal of antagonistic metabolites. Significance and Impact of the Study: Present study reports the identification of two newly isolated fluorescent Pseudomonas strains that can replace the opportunistic human pathogen Ps. aeruginosa PNA1 in the biocontrol of cocoyam root rot and could be taken into account for the suppression of many plant pathogens.
机译:目的:筛选出能产生吩嗪类和生物表面活性剂的新型拮抗假单胞菌菌株,该菌株与铜绿假单胞菌PNA1一样有效,可有效治疗由鼠疫性腐霉引起的可可粉根腐病。材料和结果:从健康的白色和红色可可叶植物的根际中分离出40个假单胞菌,这些植物出现在喀麦隆的自然,重度受害区域。体外试验证明Py。可以从红色的可可粉根际中提取出粉癣菌拮抗剂。除一种分离物外,所有拮抗性分离物均产生吩嗪​​。全细胞蛋白质谱分析的结果表明,拮抗菌株与其他分离的假单胞菌不同,而BOX-PCR显示它们之间具有高度的基因组相似性。这组拮抗剂中两个代表性菌株的16S rDNA测序证实了它们与有效描述的假单胞菌属物种的相对较低的相似性。这些拮抗剂因此被临时标记为未鉴定的假单胞菌菌株。在拮抗剂中,选择了假单胞菌CMR5c和CMR12a,因为它们联合产生了吩嗪和生物表面活性剂。对于菌株CMR5c,也证明了吡咯硝菌素和焦磷酸叶黄素的产生。 CMR5c和CMR12a均显示出出色的体内抗Py的生物防治活性。扁桃体与Ps相似。铜绿假单胞菌PNA1。结论:假单胞菌CMR5c和CMR12a被确定为Py的新型有前途的生物防治剂。椰油烟粉虱,产生拮抗代谢产物。该研究的意义和影响:本研究报告鉴定了两种新分离的荧光假单胞菌菌株,它们可以替代机会性人类病原体Ps。铜绿假单胞菌PNA1在可可粉根腐病的生物防治中,可以考虑抑制许多植物病原体。

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