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Niche differentiation rather than biogeography shapes the diversity and composition of microbiome of Cycas panzhihuaensis

机译:利基差异而不是生物地作,塑造了Cycas panzhihuaensis微生物组的多样性和组成

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BACKGROUND:Given their adaptation to nutrient-poor and drought environments, cycads are vital models for plant-microbiome interaction research because they are likely to host an important reservoir of beneficial microbes that may support cycad survival. However, a comprehensive understanding of the diversity and community composition of microbiome associated with different plant compartments as well as bulk soils of cycad species remains elusive.METHOD:An extensive investigation of species diversity and community composition of bacterial and fungal microbiome in roots, seeds, unfertilized seeds, ovules, pollens, and soils of Cycas panzhihuaensis L. Zhou & S. Y. Yang has been conducted by high-through sequencing technology. Moreover, principal component analysis (PCA), hierarchical cluster analysis (HCA), and heatmap analysis were applied to test the niche-specific effect and biogeography factor among different sample types of this cycad species.RESULTS:Highly diverse microbiota and significant variation of community structure were found among different compartments of C. panzhihuaensis. Soils exhibited a remarkable differentiation of bacterial community composition compared to the other five plant organs as revealed by PCA, HCA, and heatmap analyses. Different compartments possessed unique core microbial taxa with Pseudomonadaceae and Nectriaceae shared among them. According to the indicator species analysis, there was almost no differentiation of dominant microbiomes with regard to the geography of the host cycad. Two main transmission models existed in the C. panzhihuaensis.CONCLUSIONS:Each sample type represented a unique niche and hosted a niche-specific core microbial taxa. Contrary to previous surveys, biogeography hardly exerted impact on microbial community variation in this study. The majority of the cycad-associated microbes were horizontally derived from soils and/or air environments with the rest vertically inherited from maternal plants via seeds. This study offers a robust knowledge of plant-microbiome interaction across various plant compartments and soils and lends guidelines to the investigation of adaptation mechanism of cycads in arid and nutrient-poor environments as well as their evolutionary conservation.
机译:背景:鉴于他们对营养较差和干旱环境的适应,Cycads是植物微生物组合互动研究的重要模型,因为它们可能会举办可能支持Cycad Survival的重要微生物的重要储层。然而,全面了解与不同植物隔间相关的微生物组的多样性和群落组成以及苏铁格氏物种的散装土壤仍然是Elipal.Chod:对物种多样性和群落的细菌和真菌微生物组成的广泛调查,种子,种子,种子,通过高通测技术进行了Cycas Panzhihuaensis L.周和Sy阳的未受精的种子,胚珠,花粉和土壤。此外,应用主成分分析(PCA),分层聚类分析(HCA)和热映射分析,以测试这种Cycad物种的不同样本类型的菌群特异性效应和生物地理因子。结果:高度多样化的微生物群和社区的显着变化在C.Panzhihuaensis的不同隔室中发现了结构。与PCA,HCA和Heatmap分析透露的其他五种植物器官相比,土壤表现出显着的细菌群落组成的分化。不同的隔间具有独特的核心微生物分类群,其中包括伪霉素和奈斯蒂亚群。根据指示剂物种分析,关于宿主Cycad的地理几乎没有分化显性微生物。 C.Panzhihuaensis.Conclusions中存在两个主要传输模型:每个样品类型代表独特的利基,并举办了特定的特异性核心微生物分类群。与先前的调查相反,生物地理学几乎没有对本研究中的微生物群落变异的影响。大多数含Cycad相关的微生物水平地衍生自土壤和/或空气环境,其静止通过种子从母体植物垂直遗传。本研究提供了一种稳健的植物微生物组合互动,跨各种植物隔间和土壤,并为干旱和营养贫乏环境中的狼人调整机制的调查以及它们的进化保护提供指导。

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