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首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Quorum sensing communication: Bradyrhizobium-Azospirillum interaction via N-acyl-homoserine lactones in the promotion of soybean symbiosis
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Quorum sensing communication: Bradyrhizobium-Azospirillum interaction via N-acyl-homoserine lactones in the promotion of soybean symbiosis

机译:法定传感通信:Bradyrhizobium-azospirillum通过N-酰基 - 甲晶内酯在大豆共生促进中的相互作用

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摘要

Quorum-sensing (QS) mechanisms are important in intra- and inter-specific communication among bacteria. We investigated QS mechanisms in Bradyrhizobium japonicum strain CPAC 15 and Azospirillum brasilense strains Ab-V5 and Ab-V6, used in commercial co-inoculants for the soybean crop in Brazil. A transconjugant of CPAC 15-QS with partial inactivation of N-acyl-homoserine lactones (AHLs) was obtained and several parameters were evaluated; in vitro, CPAC 15 and the transconjugant differed in growth, but not in biofilm formation, and no differences were observed in the symbiotic performance in vivo. The genome of CPAC 15 carries functional luxI and luxR genes and low amounts of three AHL molecules were detected: 3-OH-C12-AHL, 3-OH-C14-AHL, and 3-oxo-C14-AHL. Multiple copies of luxR-like genes, but not of luxI are present in the genomes of Ab-V5 and Ab-V6, and differences in gene expression were observed when the strains were co-cultured with B. japonicum; we may infer that the luxR-genes of A. brasilense may perceive the AHL molecules of B. japonicum. Soybean symbiotic performance was improved especially by co-inoculation with Ab-V6, which, contrarily to Ab-V5, did not respond to the AHLs of CPAC 15. We concluded that A. brasilense Ab-V5, but not Ab-V6, responded to the QS signals of CPAC 15, and that the synergistic interaction may be credited, at least partially, to the QS interaction. In addition, we confirmed inter- and intra-species QS communication between B. japonicum and A. brasilense and, for Azospirillum, at the strain level, impacting several steps of the symbiosis, from cell growth to plant nodulation and growth.
机译:仲裁感应(QS)机制在细菌之间的帧内和特异性间通信中是重要的。我们研究了在巴西大豆作物的商业共同植物中使用的Bradyrhizobium japonicum菌株CPAC 15和Azospirillum Brasilense菌株AB-V5和AB-V6的QS机制。获得了具有部分灭活的N-酰基 - 甲晶内酯内酯(AHL)的CPAC 15-QS的跨转换器,评价了几个参数;体外,CPAC 15和经型杂交剂在生长中不同,但在生物膜形成中,在体内的共生性能下没有观察到差异。 CPAC 15的基因组携带函数鲁西和Luxr基因,检测到少量的三种AHL分子:3-OH-C12-AHL,3-OH-C14-AHL和3-氧代-C14-AHL。在AB-V5和AB-V6的基因组中存在多个Luxr样基因的副本,而不是Luxi,并且当菌株与B.Paponicum共同培养时,观察到基因表达的差异;我们可以推断A. Braasilense的Luxr-基因可能会感知B.Paponicum的AHL分子。大豆共生性能尤其通过与AB-V6共同接种,这与AB-V5相反,没有响应CPAC 15的AHL。我们得出结论,A. Brasilense AB-V5,但不是AB-V6,回应到CPAC 15的QS信号,并且可以至少部分地将协同交互归功于QS交互。此外,我们确认了B.Paponicum和A.Basilisse之间的QS间QS通信,并且对于氮螺柱体,在应变水平下,影响共生的几个步骤,从细胞生长到植物染色和生长。

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