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      秦烟96烟株不同部位内生细菌的多样性及群落结构

      Diversity and Community Structure of Endophytic Bacteria in Different Parts of the Qinyan96 Tobacco Cultivar

      • 摘要: 为揭示秦烟96烟株不同部位(根、茎、叶)内生细菌的多样性及群落结构,采用Illumina MiSeq高通量测序技术,对内生细菌16S rRNA基因V5~V6区进行扩增和测序,分析根、茎、叶组织中内生细菌的多样性及群落结构差异。结果表明,从所有样品中共检测到2123个操作分类单元(Operational Taxonomic Units,OTUs),隶属于18门、40纲、103目、168科和323属。根部的核心OTUs数量显著高于茎和叶。Alpha多样性指数由大到小为根>茎>叶。Beta多样性和聚类分析表明,茎与叶的内生细菌群落结构较为相似,但与根部的内生细菌群落结构差异较大。变形菌门(Proteobacteria)是烟株根、茎、叶的优势菌门。LEfSe分析结果表明,根部显著富集的差异菌属主要为假单胞菌属(Pseudomonas)、肠杆菌属(Enterobacter)、剑菌属(Ensifer)、噬几丁质菌属(Chitinophaga)、代尔夫特菌属(Delftia)和贪噬菌属(Variovorax);茎部显著差异菌属为伯克霍尔德氏菌属(Burkholderia−Caballeronia−Paraburkholderia)、盐单胞菌属(Halomonas罗尔斯通氏菌属(Ralstonia和Paucibacter;叶部未检测出显著差异菌属。基于PICRUSt2功能预测结果显示,秦烟96烟株内生细菌在新陈代谢功能方面的丰度最高,其根、茎、叶内生细菌功能信息主要分布于30类代谢通路,在免疫防御和环境适应等方面具有潜在的应用价值。本研究揭示了烟株内生细菌的多样性、群落结构及功能,为有益内生细菌的挖掘与靶向应用提供理论基础。

         

        Abstract: This study investigated the diversity and community structure of endophytic bacteria in different parts (root, stem, and leaf) of the Qinyan96 tobacco cultivar. The V5-V6 region of the bacterial 16S rRNA gene was amplified and sequenced using Illumina MiSeq high-throughput sequencing technology to analyze differences in the endophytic bacterial communities among root, stem, and leaf tissues. A total of 2,123 operational taxonomic units (OTUs) were detected across all samples, belonging to 18 phyla, 40 classes, 103 orders, 168 families, and 323 genera. The number of core OTUs in roots was significantly higher than that in stems and leaves. Alpha diversity indices decreased in the order: root > stem > leaf. Beta diversity and clustering analyses indicated that the endophytic bacterial community structures of stems and leaves were similar to each other but distinct from those of roots. At the phylum level, Proteobacteria was the dominant phylum in all three tissues. LEfSe analysis revealed that the root tissues were significantly enriched with abundant genera, including Pseudomonas, Enterobacter, Ensifer, Chitinophaga, Delftia, and Variovorax. The stem tissues were significantly enriched with Burkholderia–Caballeronia–Paraburkholderia, Halomonas, Ralstonia, and Paucibacter. No significantly enriched bacterial genera were detected in leaves. PICRUSt2-based functional prediction indicated that endophytic bacteria in Qinyan 96 tobacco plants were predominantly involved in metabolic functions, with functional profiles mainly distributed across 30 categories of metabolic pathways in roots, stems, and leaves, suggesting potential application value in immune defense and environmental adaptation. This study reveals the diversity, community structure, and potential functions of endophytic bacteria in the Qinyan96 tobacco plants, providing a theoretical basis for the exploration and targeted application of beneficial endophytic bacteria.

         

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