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植物促生根际细菌联合体在正常和盐胁迫条件下促进油菜(甘蓝型油菜)生长。

Consortium of plant growth-promoting rhizobacteria enhances oilseed rape (Brassica napus L.) growth under normal and saline conditions.

机构信息

Department of Environmental Microbiology and Biotechnology, Faculty of Biological and Veterinary Sciences, Nicolaus Copernicus University in Torun, Gagarina 11, 87100, Torun, Poland.

Department of Geobotany and Landscape Planning, Faculty of Biological and Veterinary Sciences, Nicolaus Copernicus University in Torun, Gagarina 11, 87 100, Torun, Poland.

出版信息

Arch Microbiol. 2022 Jun 15;204(7):393. doi: 10.1007/s00203-022-03018-1.

Abstract

A preparation development, which stimulates plant growth under normal and saline conditions, and protects against fungal infections, would increase crop yields and reduce damage in agriculture. This study was conducted using bacterial isolates from rape rhizosphere as a plant growth promoter and an alternative to chemical fertilizers. Three from fifty bacterial isolates: B14 (Pseudomonas sp.), B16 (Sphingobacterium sp.), and B19 (Microbacterium sp.) showed the best in vitro plant growth-promoting (PGP) characteristics. B14 strain had the best antifungal activity against phytopathogens inhibiting growth of B. cinerea, C. acutatum, and P. lingam. Moreover, B14, B16 and B19 isolates coded for several genes involved in PGP activities, aimed at improving nutrient availability, resistance to abiotic stress, and fungal pathogen suppression. Microbial consortium (B14, B16, and B19) had the best effect on rape growth, significantly increasing number of live leaves, compared to the untreated control and single inoculant treatments. Moreover, the consortium induced significant increase in shoots length and chlorophyll content in comparison to Pseudomonas sp. B14 and Microbacterium sp. B19. The consortium also induced plants tolerance to salt stress. The genomic information as well as the observed traits, and beneficial attributes towards rape, make the rhizobacterial consortium an ideal candidate for further development as biofertilizers.

摘要

一种能够在正常和盐胁迫条件下刺激植物生长并防治真菌病害的制剂,可以提高作物产量并减少农业损失。本研究以油菜根际细菌分离物为植物生长促进剂和化肥替代品,开展了相关研究。从 50 个细菌分离物中筛选出的 3 个:B14(假单胞菌)、B16(鞘氨醇单胞菌)和 B19(微杆菌),具有最佳的体外植物促生(PGP)特性。B14 菌株对病原菌(灰葡萄孢、尖孢镰刀菌和辣椒疫霉)具有最佳的抑菌活性。此外,B14、B16 和 B19 分离株编码了几种与 PGP 活性相关的基因,旨在提高养分利用率、增强抗逆性和抑制真菌病原体。与未处理对照和单一接种处理相比,微生物混合菌(B14、B16 和 B19)对油菜生长的效果最佳,显著增加了活叶数量。此外,与单独接种 Pseudomonas sp. B14 和 Microbacterium sp. B19 相比,混合菌还显著增加了茎的长度和叶绿素含量。该混合菌还诱导植物耐受盐胁迫。根际细菌混合菌具有丰富的基因组信息以及观察到的特性和对油菜的有益属性,使其成为进一步开发为生物肥料的理想候选物。

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