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Variations in phyllosphere microbial community along with the development of angular leaf-spot of cucumber

机译:黄瓜根际叶斑发育与根际微生物群落的变化

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摘要

The phyllosphere is colonized by a wide variety of microorganisms including epiphytes, plant-pathogenic fungus, bacteria, as well as human or animal pathogens. However, little is known about how microbial community composition changes with the development of angular leaf-spot of cucumber. Here, 18 mixed samples were collected based on the lesion coverage rate (LCR) of angular leaf-spot of cucumber from three disease severity groups (DM1: symptomatic-mild, DM2: symptomatic-moderate, DM3: symptomatic-severe). In our study, the microbial community structure and diversity were examined by Illumina MiSeq sequencing. A significant differences was observed in α diversity and community structure among three disease severity groups. The phyllosphere microbiota was observed to be dominated by bacterial populations from Proteobacteria, Actinobacteria, and Firmicutes, as well as fungal species from Ascomycota and Basidiomycota. In addition, some plant-specific microbe such as Sphingomonas, Methylobacterium, Pseudomonas, and Alternaria showed significant changes in their relative abundance of population. The LCR was correlated negatively with Sphingomonas, Methylobacterium, Quadrisphaera, and Lactobacillus, whereas correlated positively with Pseudomonas and Kineococcus (p < 0.05). The LCR was negatively correlated with Alternaria and Arthrinium of the fungal communities (p < 0.05). Molecular ecological networks of the microbial communities were constructed to show the interactions among the OTUs. Our current results indicated that the competitive relationships among species were broken with the development of angular leaf-spot of cucumber. The microbial community composition changed over the development of angular leaf-spot of cucumber. The result of molecular ecological networks indicated that the overall bacterial community tends toward mutualism from the competition. The development of angular leaf-spot of cucumber affected the ecosystem functioning by disrupting the stability of the microbial community network. This work will help us to understand the host plant-specific microbial community structures and shows how these communities change throughout the development of angular leaf-spot of cucumber.Electronic supplementary materialThe online version of this article (10.1186/s13568-019-0800-y) contains supplementary material, which is available to authorized users.
机译:叶球层被包括附生植物,植物致病真菌,细菌以及人类或动物病原体在内的多种微生物所定居。然而,关于黄瓜的角状叶斑的发展,微生物群落组成如何变化知之甚少。在这里,根据三个疾病严重程度组(DM1:有症状的轻度,DM2:有症状的中度,DM3:有症状的中度)的黄瓜角叶斑的病斑覆盖率(LCR)收集了18个混合样本。在我们的研究中,通过Illumina MiSeq测序检查了微生物群落结构和多样性。在三个疾病严重程度组之间观察到α多样性和群落结构的显着差异。观察到叶圈微生物群主要是来自变形杆菌,放线菌和硬毛菌的细菌种群,以及来自子囊菌和担子菌的真菌物种。此外,某些植物特有的微生物,例如鞘氨醇单胞菌,甲基杆菌,假单胞菌和链格孢菌,它们的相对种群数量也发生了显着变化。 LCR与鞘氨醇单胞菌,甲基杆菌属,Quadrisphaera和乳酸杆菌呈负相关,而与假单胞菌和动球菌呈正相关(p <0.05)。 LCR与真菌群落的链格孢属和关节炎呈负相关(p <0.05)。构建了微生物群落的分子生态网络,以显示OTU之间的相互作用。我们目前的结果表明,随着黄瓜角叶斑点的发展,物种间的竞争关系被打破。随着黄瓜角叶斑的发育,微生物群落组成发生变化。分子生态网络的结果表明,整个细菌群落趋向于相互竞争。黄瓜角状叶斑的发育通过破坏微生物群落网络的稳定性影响了生态系统的功能。这项工作将帮助我们了解宿主植物特有的微生物群落结构,并显示这些群落在黄瓜角状叶斑发育过程中如何变化。电子补充材料本文的在线版本(10.1186 / s13568-019-0800-y )包含补充材料,授权用户可以使用。

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