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丛枝菌根共生体 Rhizophagus intraradices 孢子中分离出的根瘤菌的群体感应。

Quorum sensing in rhizobia isolated from the spores of the mycorrhizal symbiont Rhizophagus intraradices.

机构信息

Department of Agriculture, Food and Environment, University of Pisa, Via del Borghetto 80, 56124, Pisa, Italy.

"E. Avanzi" Research Center, University of Pisa, Via Vecchia di Marina 6, 56122, Pisa, Italy.

出版信息

Mycorrhiza. 2018 Nov;28(8):773-778. doi: 10.1007/s00572-018-0847-7. Epub 2018 Jun 24.

Abstract

Most beneficial services provided by arbuscular mycorrhizal fungi (AMF), encompassing improved crop performance and soil resource availability, are mediated by AMF-associated bacteria, showing key-plant growth-promoting (PGP) traits, i.e., the production of indole acetic acid, siderophores and antibiotics, and activities increasing the availability of plant nutrients by nitrogen fixation and phosphate mobilization. Such functions may be affected by the ability of AMF-associated bacteria to communicate through the production and secretion of extracellular small diffusible chemical signals, N-acyl homoserine lactone signal molecules (AHLs), that regulate bacterial behavior at the community level (quorum sensing, QS). This work investigated the occurrence and extent of QS among rhizobia isolated from AMF spores, using two different QS reporter strains, Agrobacterium tumefaciens NTL4 pZRL4 and Chromobacterium violaceum CV026. We also assessed the quorum quenching (QQ) activity among Bacillus isolated from the same AMF spores. Most rhizobia were found to be quorum-signaling positive, including six isolates producing very high levels of AHLs. The results were confirmed by microtiter plate assay, which detected 65% of the tested bacteria as medium/high AHL producers. A 16S rDNA sequence analysis grouped the rhizobia into two clusters, consistent with the QS phenotype. None of the tested bacteria showed QQ activity able to disrupt the QS signaling, suggesting the absence of antagonism among bacteria living in AMF sporosphere. Our results provide the first evidence of the ability of AMF-associated rhizobia to communicate through QS, suggesting further studies on the potential importance of such a behavior in association with key-plant growth-promoting functions.

摘要

丛枝菌根真菌(AMF)提供的最有益的服务,包括改善作物性能和土壤资源可用性,是由与 AMF 相关的细菌介导的,这些细菌具有关键的植物促生长(PGP)特性,即产生吲哚乙酸、铁载体和抗生素,以及通过固氮和磷移动来增加植物养分可用性的活性。这种功能可能受到 AMF 相关细菌通过产生和分泌细胞外可扩散化学信号、N-酰基高丝氨酸内酯信号分子(AHLs)进行交流的能力的影响,这些信号分子调节细菌在群落水平上的行为(群体感应,QS)。本研究使用两种不同的 QS 报告菌株,根癌农杆菌 NTL4 pZRL4 和紫色色杆菌 CV026,调查了从 AMF 孢子中分离出的根瘤菌中 QS 的发生和程度。我们还评估了从同一 AMF 孢子中分离出的芽孢杆菌的群体淬灭(QQ)活性。大多数根瘤菌被发现是群体信号阳性的,包括 6 个产生高水平 AHL 的分离株。通过微量滴定板测定证实了这一结果,该测定检测到 65%的测试细菌为中/高 AHL 生产者。16S rDNA 序列分析将根瘤菌分为两个聚类,与 QS 表型一致。测试的细菌均未表现出能够破坏 QS 信号的 QQ 活性,这表明生活在 AMF 孢子球中的细菌之间没有拮抗作用。我们的研究结果首次提供了 AMF 相关根瘤菌通过 QS 进行交流的能力的证据,这表明需要进一步研究这种行为与关键植物促生长功能之间的潜在重要性。

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