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Infection of Plasmodiophora brassicae changes the fungal endophyte community of tumourous stem mustard roots as revealed by high-throughput sequencing and culture-dependent methods

机译:Plasmodiophora Brassicae的感染改变了高通量测序和培养依赖性方法揭示的肿瘤茎芥末根的真菌内心群落

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摘要

Diverse fungal endophytes live in plants and are shaped by some abiotic and biotic stresses. Plant disease as particular biotic stress possibly gives an impact on the communities of fungal endophytes. In this study, clubroot disease caused by an obligate biotroph protist, Plasmodiophora brassicae, was considered to analyze its influence on the fungal endophyte community using an internal transcribed spacer (ITS) through high-throughput sequencing and culture-dependent methods. The results showed that the diversity of the endophyte community in the healthy roots was much higher than the clubroots. Ascomycota was the dominant group of endophytes (Phoma, Mortierella, Penicillium, etc.) in the healthy roots while P. brassicae was the dominant taxon in the clubroots. Hierarchical clustering, principal component analysis (PCA), principal coordinates analysis (PCoA) and analysis of similarities (ANOSIM) indicated significant differences between the endophyte communities in the healthy roots and clubroots. Linear discriminant analysis effect size (LefSe) analysis showed that the dominant genera could be regarded as potential biomarkers. The endophyte community in the healthy roots had a more complex network compared with the clubroots. Also, many plant pathogenic Fusarium were isolated from the clubroots by the culture-dependent method. The outcome of this study illustrates that P. brassicae infection may change the fungal endophyte community associated with the roots of tumourous stem mustard and facilitates the entry of soil pathogen into the roots.
机译:不同的真菌内心体在植物中生活,并被一些非生物和生物应激形状。植物病如特殊的生物应激可能会对真菌内心细胞的社区产生影响。在这项研究中,被迫使生物乳突蛋白质(Plasmodiophora Brassicae)引起的球杆菌疾病被认为是通过通过高通量测序和培养的方法使用内部转录的间隔物(其)对真菌内体群落的影响。结果表明,健康根中内心群落的多样性远远高于滚珠菌。 Ascomycota是健康根中的内心细胞(Phoma,Mortierella,Penicillium等)的主要组,而P. Brassicae是球杆菌中的主要分类。分层聚类,主成分分析(PCA),主坐标分析(PCOA)和相似性分析(Anosim)表明了健康根和球杆菌中的内心社区之间的显着差异。线性判别分析效果大小(lefse)分析表明,显性属可被视为潜在的生物标志物。与球杆素相比,健康根中的内心群落具有更复杂的网络。此外,许多植物致病镰刀菌通过培养依赖性方法与杆菌分离。这项研究的结果说明了P.甘蓝感染可以改变与肿瘤性榨菜的根源相关的内生真菌群落和有利于土壤病原体进入根。

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