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Influences of Plant Species Season and Location on Leaf Endophytic Bacterial Communities of Non-Cultivated Plants

机译:植物种类季节和位置对非栽培植物叶片内生细菌群落的影响

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摘要

Bacteria are known to be associated endophytically with plants. Research on endophytic bacteria has identified their importance in food safety, agricultural production and phytoremediation. However, the diversity of endophytic bacterial communities and the forces that shape their compositions in non-cultivated plants are largely uncharacterized. In this study, we explored the diversity, community structure, and dynamics of endophytic bacteria in different plant species in the Tallgrass Prairie Preserve of northern Oklahoma, USA. High throughput sequencing of amplified segments of bacterial rDNA from 81 samples collected at four sampling times from five plant species at four locations identified 335 distinct OTUs at 97% sequence similarity, representing 16 phyla. Proteobacteria was the dominant phylum in the communities, followed by the phyla Bacteriodetes and Actinobacteria. Bacteria from four classes of Proteobacteria were detected with Alphaproteobacteria as the dominant class. Analysis of molecular variance revealed that host plant species and collecting date had significant influences on the compositions of the leaf endophytic bacterial communities. The proportion of Alphaproteobacteria was much higher in the communities from Asclepias viridis than from other plant species and differed from month to month. The most dominant bacterial groups identified in LDA Effect Size analysis showed host-specific patterns, indicating mutual selection between host plants and endophytic bacteria and that leaf endophytic bacterial compositions were dynamic, varying with the host plant’s growing season in three distinct patterns. In summary, next generation sequencing has revealed variations in the taxonomic compositions of leaf endophytic bacterial communities dependent primarily on the nature of the plant host species.
机译:已知细菌与植物内生结合。对内生细菌的研究已经确定了它们在食品安全,农业生产和植物修复中的重要性。然而,内生细菌群落的多样性以及在非栽培植物中影响其组成的力量在很大程度上没有特征。在这项研究中,我们探索了美国俄克拉荷马州北部高草草原保护区不同植物物种中内生细菌的多样性,群落结构和动力学。从四个位置的五个植物物种的四个采样时间收集的81个样品的细菌rDNA扩增片段的高通量测序,鉴定出335个不同的OTU,序列相似性为97%,代表16个门。变形杆菌是群落中的主要门,其次是细菌十二指肠和放线菌。以丙酸杆菌为主导,检出了四类细菌中的细菌。分子变异分析表明,寄主植物的种类和采集日期对叶片内生细菌群落的组成有重要影响。绿菌中群落中丙酸杆菌的比例要比其他植物物种高得多,并且每个月都不同。在LDA效应大小分析中鉴定出的最主要细菌群显示出宿主特定的模式,表明宿主植物与内生细菌之间的相互选择,并且叶片内生细菌的组成是动态的,随宿主植物的生长季节以三种不同的模式变化。总而言之,下一代测序揭示了叶内生细菌群落的生物分类组成的变化,这些变化主要取决于植物宿主物种的性质。

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    Tao Ding; Ulrich Melcher;

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  • 年(卷),期 -1(11),3
  • 年度 -1
  • 页码 e0150895
  • 总页数 13
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