首页> 外文期刊>Phytopathologia Mediterranea >Bacterial endophytes of weeds are effective biocontrol agents of Agrobacterium spp., Pectobacterium spp., and promote growth of tomato plants
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Bacterial endophytes of weeds are effective biocontrol agents of Agrobacterium spp., Pectobacterium spp., and promote growth of tomato plants

机译:杂草的细菌内心细胞是农杆菌SPP的有效生物控制剂。,胶杆菌SPP,促进番茄植物的生长

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Bacterial endophytes were isolated from native plants growing in a fallow field. Taxonomy of these bacteria, and their beneficial effects to plants, were determined. Seventeen strains were selected from a group of 73 isolates on the basis of origin, colony morphology and antagonistic properties and were characterized by 16S rRNA gene sequence and phylogenetic analyses. These strains were assayed in vivo against pathogenic strains of Agrobacterium and Pectobacterium spp. Their ability to improve plant growth was also evaluated. The Gram positive Bacillus amyloliquefaciens, B. cereus, B. methylotrophicus, B. pumilus and Curtobacterium flaccumfaciens and the Gram negative Pseudomonas brassicacearum were identified. The Bacillus and Pseudomonas were shared among five plant species while C. flaccumfaciens was isolated only from Euphorbia spp. Biocontrol activity of endophytic strains was evaluated on potato disks inoculated with Pectobacterium spp. and on tomato plants grown in sterile soil, root- bacterized with endophytes and stem inoculated with Agrobacterium spp. A reduction of soft rot caused by Pectobacterium spp. on three potato varieties treated with Bacilluss pp. strains was observed. Bacillus methylotrophicus strain OS4 strongly reduced gall development induced by Agrobacterium spp. and gave 100% germination of tomato seeds compared with 75.5% for the non- treated seeds. Pseudomonas brassicacearum strain PS1 enhanced tomato seed germination and increased plant growth parameters. These results indicate that native plants harbour various endophytic bacterial species that possess potentially valuable biocontrol and growth promotion activities.
机译:从生长在休耕领域生长的天然植物中分离细菌内心细胞。确定这些细菌的分类,以及对植物的有益效果。基于原点,菌落形态和拮抗特性,从一组73个分离物中选择17个菌株,并以16S rRNA基因序列和系统发育分析表征。这些菌株在体内测定了农杆菌和胶杆菌SPP的致病菌菌株。还评估了改善植物生长的能力。克阳性芽孢杆菌淀粉胺,B.Cereus,B.甲基雌激素,B.Pumilus和瘢痕曲杆菌Flaccumfaciens和Gram阴性假单胞菌芸苔属。芽孢杆菌和假单胞菌在五种植物种类中分离,而C.Flaccumfaciens仅来自大戟属SPP。对接种胶杆菌SPP的马铃薯磁盘评估了内生菌株的生物防治活性。在无菌土壤种植的番茄植物上,用生物细胞和茎被接种与土壤杆菌的根茎。由胶杆菌SPP引起的软腐的减少。用Bacilluss PP治疗的三种薯类品种。观察菌株。 Bacillus甲基雌激素菌株OS4强烈降低了由土壤杆菌SPP诱导的胆发育。并给予100%的番茄种子萌发,而非治疗的种子为75.5%。 Pseudomonas Brassicacearum菌株PS1增强番茄种子萌发和增加的植物生长参数。这些结果表明,本地植物含有各种内生细菌物种,具有潜在有价值的生物控制和生长促进活动。

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