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Linking Statistical and Ecological Theory: Hubbell's Unified Neutral Theory of Biodiversity as a Hierarchical Dirichlet Process

机译:将统计和生态理论联系起来:Hubbell统一的生物多样性中立理论作为分层狄利克雷过程

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摘要

Neutral models which assume ecological equivalence between species provide null models for community assembly. In Hubbell's unified neutral theory of biodiversity (UNTB), many local communities are connected to a single metacommunity through differing immigration rates. Our ability to fit the full multisite UNTB has hitherto been limited by the lack of a computationally tractable and accurate algorithm. We show that a large class of neutral models with this mainland-island structure but differing local community dynamics converge in the large population limit to the hierarchical Dirichlet process. Using this approximation we developed an efficient Bayesian fitting strategy for the multisite UNTB. We can also use this approach to distinguish between neutral local community assembly given a nonneutral metacommunity distribution and the full UNTB where the metacommunity too assembles neutrally. We applied this fitting strategy to both tropical trees and a data set comprising 570 851 sequences from 278 human gut microbiomes. The tropical tree data set was consistent with the UNTB but for the human gut neutrality was rejected at the whole community level. However, when we applied the algorithm to gut microbial species within the same taxon at different levels of taxonomic resolution, we found that species abundances within some genera were almost consistent with local community assembly. This was not true at higher taxonomic ranks. This suggests that the gut microbiota is more strongly niche constrained than macroscopic organisms, with different groups adopting different functional roles, but within those groups diversity may at least partially be maintained by neutrality. We also observed a negative correlation between body mass index and immigration rates within the family Ruminococcaceae. This provides a novel interpretation of the impact of obesity on the human microbiome as a relative increase in the importance of local growth versus external immigration within this key group of carbohydrate degrading organisms.
机译:假设物种之间具有生态等效性的中性模型为社区聚集提供了无效模型。在Hubbell统一的生物多样性中立理论(UNTB)中,许多地方社区通过不同的移民率与单个超族联系。迄今为止,由于缺乏可计算的,易于处理的精确算法,我们适应整个多站点UNTB的能力受到限制。我们表明,具有这种大陆-岛屿结构但具有不同的局部社区动态的一大类中立模型收敛于对Dirichlet分层过程的大量人口限制。通过这种近似,我们为多站点UNTB开发了一种有效的贝叶斯拟合策略。在给定非中性元社区分布的情况下,我们也可以使用这种方法来区分中性本地社区集会和元社区过于中性集结的完整UNTB。我们将这种拟合策略应用于热带树木和包含来自278个人肠微生物群的570 851序列的数据集。热带树木数据集与UNTB一致,但由于人类肠道中立性在整个社区级别都被拒绝。但是,当我们将该算法应用于同一分类单元中不同分类分辨率级别的肠道菌种时,我们发现某个属内的菌种丰度几乎与当地群落的组装相一致。在较高的生物分类等级中并非如此。这表明肠道微生物群比宏观生物受到更严格的生态位限制,不同的群体承担着不同的功能角色,但在这些群体中,多样性可能至少部分地由中性维持。我们还观察到体重指数与Ruminococcaceae科内的移民率之间呈负相关。这为肥胖对人类微生物组的影响提供了新颖的解释,因为在这一关键的降解碳水化合物的生物体内,局部生长与外部移民的重要性相对增加。

著录项

  • 来源
    《Proceedings of the IEEE》 |2017年第3期|516-529|共14页
  • 作者单位

    School of Mathematics and Statistics, University of Sheffield, Sheffield, UK;

    Center for Interdisciplinary Research in Biology, Laboratoire de Probabilités et Modèles Aléatoires, Collège de France, Paris, Paris, FranceFrance;

    Infrastructure and Environment Research Division, School of Engineering, University of Glasgow, Glasgow, UK;

    Department of Veterinary Biosciences, Laboratory of Microbiology, University of Helsinki, Wageningen University, Helsinki, Wageningen, FinlandNetherlands;

    Department of Bioengineering, University of California, Berkeley, California, USA;

    Warwick Medical School, University of Warwick, Coventry, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biological system modeling; Sociology; Statistical analysis; Biodiversity; Bioinformatics; Unified Neutral Theory; Ecology;

    机译:生物系统建模;社会学;统计分析;生物多样性;生物信息学;统一中立理论;生态学;

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