首页> 外文期刊>Brazilian Journal of Microbiology >Illumina-based analysis of endophytic bacterial diversity of tree peony ( Paeonia Sect. Moutan ) roots and leaves
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Illumina-based analysis of endophytic bacterial diversity of tree peony ( Paeonia Sect. Moutan ) roots and leaves

机译:基于光照的牡丹牡丹根和叶内生细菌多样性分析

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ABSTRACT Diverse communities of bacteria inhabit plant tissues and those bacteria play a crucial role for plant health and growth. Tree peony ( Paeonia Sect. Moutan ) is known for its excellent ornamental and medicinal values as Chinese traditional plant, but little is known about its associated bacterial community under natural conditions. To examine how endophytic bacteria in tree peony vary across tissues and cultivars, PCR-based Illumina was applied to reveal the diversity of endophytic bacteria in tree peony. A total of 149,842 sequences and 21,463 operational taxonomic units (OTUs) were obtained. The OTU abundance of roots was higher than leaves across other three cultivars except for ?¢????Kinkaku?¢???? and ?¢????Luoyanghong?¢????. The community was composed of five dominant groups ( Proteobacteria, Firmicutes, Bacteroidetes, Acidobacteria and Actinobacteria ) in all samples. Endophytic bacteria community structures had changed in leaves and roots. Sequences of Pseudomonas and Enterobacteriaceae were prevalent in root samples, whereas Succinivibrio and Acinetobacter were the dominant genus in leaf samples. Otherwise, the distribution of each dominant genus among the 5 cultivars was either varied. These findings suggested that both plant genotype and tissues contribute to the shaping of the bacterial communities associated with tree peony.
机译:摘要细菌的多样群落栖息在植物组织中,这些细菌对植物健康和生长起着至关重要的作用。牡丹是中国传统植物,以其优良的观赏和药用价值而闻名,但在自然条件下与其相关的细菌群落知之甚少。为了检查牡丹中内生细菌如何在不同组织和品种之间变化,基于PCR的Illumina被用于揭示牡丹中内生细菌的多样性。总共获得了149,842个序列和21,463个操作生物分类单位(OTU)。除“ Kinkaku”之外,其他三个品种的根的OTU丰度均高于叶片。和?¢ ???? Luoyanghong?¢ ??????。在所有样本中,该社区由五个优势群体(变形杆菌,硬毛菌,拟杆菌,酸性细菌和放线菌)组成。内生细菌群落结构在叶和根中发生了变化。假单胞菌和肠杆菌科的序列在根样品中普遍存在,而琥珀弧菌和不动杆菌是叶样品中的主要属。否则,在5个品种中每个显性属的分布是变化的。这些发现表明,植物的基因型和组织都有助于塑造与牡丹相关的细菌群落。

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