首页> 外文期刊>Frontiers in Microbiology >Versatile Antagonistic Activities of Soil-Borne Bacillus spp. and Pseudomonas spp. against Phytophthora infestans and Other Potato Pathogens
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Versatile Antagonistic Activities of Soil-Borne Bacillus spp. and Pseudomonas spp. against Phytophthora infestans and Other Potato Pathogens

机译:土壤伯氏杆菌属的多态性拮抗活性。和假单胞菌 spp。对抗疫霉菌和其他马铃薯病原体

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The world potato is facing major economic losses due to disease pressure and environmental concerns regarding pesticides use. This work aims at addressing these two issues by isolating indigenous bacteria that can be integrated into pest management strategies. More than 2,800 strains of Bacillus -like and Pseudomonas -like were isolated from several soils and substrates associated with potato agro-systems in Belgium. Screenings for antagonistic activities against the potato pathogens Alternaria solani, Fusarium solani (BCCM-MUCL 5492), Pectobacterium carotovorum (ATCC 15713), Phytophthora infestans (CRA-W10022) and Rhizoctonia solani (BCCM-MUCL 51929) were performed, allowing the selection of 52 Bacillus spp. and eight Pseudomonas spp. displaying growth inhibition of at least 50% under in vitro conditions, particularly against P. infestans . All 60 bacterial isolates were identified based on 16S rRNA gene sequencing and further characterized for the production of potential bio-active secondary metabolites. The antagonistic activities displayed by the selected strains indicated that versatile metabolites can be produced by the strains. For instance, the detection of genes involved bacilysin biosynthesis was correlated with the strong antagonism of Bacillus pumilus strains toward P. infestans , whereas the production of both bio-surfactants and siderophores might explain the high antagonistic activities against late blight. Greenhouse assays with potato plants were performed with the most effective strains (seven Bacillus spp. and four Pseudomonas spp.) in order to evaluate their in vivo antagonistic effect against P. infestans . Based on these results, four strains ( Bacillus amyloliquefaciens 17A-B3, Bacillus subtilis 30B-B6, Pseudomonas brenneri 43R-P1 and Pseudomonas protegens 44R-P8) were retained for further evaluation of their protection index against P. infestans in a pilot field trial. Interestingly, B. subtilis 30B-B6 was shown to significantly decrease late blight severity throughout the crop season. Overall, this study showed that antagonistic indigenous soil bacteria can offer an alternative to the indiscriminate use of pesticide in potato agro-systems.
机译:由于疾病压力和与杀虫剂使用有关的环境问题,世界马铃薯正面临重大的经济损失。这项工作旨在通过分离可整合到有害生物管理策略中的本地细菌来解决这两个问题。从比利时的与马铃薯农业系统有关的几种土壤和基质中分离出了2,800多株类似芽孢杆菌和假单胞菌的菌株。进行了针对马铃薯病原体链格孢,链霉镰刀菌(BCCM-MUCL 5492),胡萝卜杆菌(ATCC 15713),致病疫霉(CRA-W10022)和根瘤菌(BCM-MUCL 51929)拮抗活性的筛选。 52芽孢杆菌属和八个假单胞菌属。在体外条件下表现出至少50%的生长抑制作用,特别是针对P. infestans。根据16S rRNA基因测序鉴定了所有60种细菌分离株,并进一步表征了潜在的生物活性次级代谢产物的产生。所选菌株表现出的拮抗活性表明该菌株可以产生多种代谢产物。例如,基因检测涉及芽胞杆菌溶素的生物合成与短小芽孢杆菌菌株对致病疫霉的强烈拮抗作用有关,而生物表面活性剂和铁载体的产生可能解释了对晚疫病的高拮抗活性。为了评价马铃薯在体内对P. infestans的拮抗作用,用最有效的菌株(七个芽孢杆菌属和四个假单胞菌属)进行了马铃薯植株的温室测定。根据这些结果,保留了四种菌株(解淀粉芽孢杆菌17A-B3,枯草芽孢杆菌30B-B6,布氏假单胞菌43R-P1和蛋白质假单胞菌44R-P8),以在初步的田间试验中进一步评估它们对致病疫霉的保护指数。 。有趣的是,枯草芽孢杆菌30B-B6可以在整个作物季节显着降低晚疫病的严重程度。总的来说,这项研究表明,拮抗的土著土壤细菌可以为在马铃薯农业系统中不加选择地使用农药提供替代方法。

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