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Stochastic and deterministic processes interact in the assembly of desert microbial communities on a global scale

机译:随机过程和确定性过程在全球范围内相互作用于沙漠微生物群落的组装中

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摘要

Extreme arid regions in the worlds' major deserts are typified by quartz pavement terrain. Cryptic hypolithic communities colonize the ventral surface of quartz rocks and this habitat is characterized by a relative lack of environmental and trophic complexity. Combined with readily identifiable major environmental stressors this provides a tractable model system for determining the relative role of stochastic and deterministic drivers in community assembly. Through analyzing an original, worldwide data set of 16S rRNA-gene defined bacterial communities from the most extreme deserts on the Earth, we show that functional assemblages within the communities were subject to different assembly influences. Null models applied to the photosynthetic assemblage revealed that stochastic processes exerted most effect on the assemblage, although the level of community dissimilarity varied between continents in a manner not always consistent with neutral models. The heterotrophic assemblages displayed signatures of niche processes across four continents, whereas in other cases they conformed to neutral predictions. Importantly, for continents where neutrality was either rejected or accepted, assembly drivers differed between the two functional groups. This study demonstrates that multi-trophic microbial systems may not be fully described by a single set of niche or neutral assembly rules and that stochasticity is likely a major determinant of such systems, with significant variation in the influence of these determinants on a global scale.
机译:世界主要沙漠中的极端干旱地区以石英路面地形为代表。隐伏的石器时代的群落遍布石英岩的腹面,这种栖息地的特征是相对缺乏环境和营养的复杂性。与易于识别的主要环境压力因素相结合,这提供了一个易于处理的模型系统,可用于确定随机和确定性驱动因素在社区组装中的相对作用。通过分析来自地球上最极端沙漠的16S rRNA基因定义的细菌群落的原始全球数据集,我们显示出群落中的功能性组装受到不同的组装影响。应用于光合作用的空模型表明,随机过程对组装产生了最大影响,尽管各大洲之间的群落差异程度不同,但并不总是与中性模型一致。异养组合在四大洲显示出生态位过程的特征,而在其他情况下,它们符合中性的预测。重要的是,对于拒绝或接受中立的大洲,这两个职能部门之间的组装动因不同。这项研究表明,单营养位或中性装配规则可能无法完全描述多营养微生物系统,并且随机性可能是此类系统的主要决定因素,这些决定因素在全球范围内的影响差异很大。

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