首页> 外文期刊>Journal of Phytopathology >Emergence of Antagonism Against the Pathogenic Fungus Fusarium oxysporum by Interplay Among Non-Antagonistic Bacteria in a Hydroponics Using Multiple Parallel Mineralization
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Emergence of Antagonism Against the Pathogenic Fungus Fusarium oxysporum by Interplay Among Non-Antagonistic Bacteria in a Hydroponics Using Multiple Parallel Mineralization

机译:通过多重平行矿化作用在水培法中非拮抗细菌之间的相互作用对病原真菌尖孢镰刀菌的拮抗作用的出现。

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The rhizosphere microbial community in a multiple parallel mineralization (MPM) system contributes to suppression of root-borne diseases. We hypothesized this phenomenon can be attributed to the interplay of non-antagonistic bacteria rather than to a single antagonistic microbe. In this study, we tested this hypothesis by investigating the potential roles of bacterial interplay in a subset of MPM microbiota in the suppression of the fungal phytopathogen Fusarium oxysporum. Bacterial strains isolated from the MPM system were subjected to invitro and in planta tests on F.oxysporum. A community of seven bacterial strains (Kaistia sp. TBD58, Sphingopyxis sp. TBD84, Bosea sp. TBD101, Ancylobacter sp. TBD132, Cupriavidus sp. TBD162, Brevibacillus sp. TBD179 and Sphingopyxis sp. TBD181) suppressed F.oxysporum growth. None of the strains alone was antagonistic against F.oxysporum, whereas several pairs of those non-antagonistic strains inhibited its growth. Morphological observations showed the formation of swollen F.oxysporum cells in the presence of these bacterial pairs. The same bacterial pairs also suppressed Fusarium wilt disease in Arabidopsis thaliana. These results indicate that a complex bacterial interplay among non-antagonistic bacteria can significantly contribute to the development of antagonism against F.oxysporum in the context of the MPM system.
机译:多重平行矿化(MPM)系统中的根际微生物群落有助于抑制根源性疾病。我们假设这种现象可归因于非拮抗细菌的相互作用,而不是单一的拮抗微生物。在这项研究中,我们通过研究MPM微生物群中的细菌相互作用在抑制真菌性植物病原菌尖孢镰刀菌中的潜在作用来检验该假设。对从MPM系统分离的细菌菌株进行体外试验,并在F.oxysporum上进行植物试验。七个细菌菌株(Kaistia sp.TBD58,Sphingopyxis sp.TBD84,Bosea sp.TBD101,Ancylobacter sp.TBD132,Cupriavidus sp.TBD162,Brevibacillus sp.TBD179和Sphingopyxis sp.TBD181)的群落抑制了F.oxysporum的生长。单独的菌株没有一个能对抗氧化孢霉,而这些非拮抗菌株中有几对抑制了其生长。形态学观察显示在这些细菌对的存在下,溶氧镰孢细胞形成。同样的细菌对也抑制了拟南芥中的枯萎病。这些结果表明,在MPM系统的背景下,非拮抗细菌之间复杂的细菌相互作用可显着促进对毛孢镰刀菌的拮抗作用的发展。

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