Literature DB >> 29463893

Consistent changes in the taxonomic structure and functional attributes of bacterial communities during primary succession.

Rüdiger Ortiz-Álvarez1, Noah Fierer2, Asunción de Los Ríos3, Emilio O Casamayor4, Albert Barberán5.   

Abstract

Ecologists have long studied primary succession, the changes that occur in biological communities after initial colonization of an environment. Most of this work has focused on succession in plant communities, laying the conceptual foundation for much of what we currently know about community assembly patterns over time. Because of their prevalence and importance in ecosystems, an increasing number of studies have focused on microbial community dynamics during succession. Here, we conducted a meta-analysis of bacterial primary succession patterns across a range of distinct habitats, including the infant gut, plant surfaces, soil chronosequences, and aquatic environments, to determine whether consistent changes in bacterial diversity, community composition, and functional traits are evident over the course of succession. Although these distinct habitats harbor unique bacterial communities, we were able to identify patterns in community assembly that were shared across habitat types. We found an increase in taxonomic and functional diversity with time while the taxonomic composition and functional profiles of communities became less variable (lower beta diversity) in late successional stages. In addition, we found consistent decreases in the rRNA operon copy number and in the high-efficient phosphate assimilation process (Pst system) suggesting that reductions in resource availability during succession select for taxa adapted to low-resource conditions. Together, these results highlight that, like many plant communities, microbial communities also exhibit predictable patterns during primary succession.

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Mesh:

Year:  2018        PMID: 29463893      PMCID: PMC6018800          DOI: 10.1038/s41396-018-0076-2

Source DB:  PubMed          Journal:  ISME J        ISSN: 1751-7362            Impact factor:   10.302


  59 in total

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  27 in total

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Review 5.  Soil Microbial Biogeography in a Changing World: Recent Advances and Future Perspectives.

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Review 7.  Properties affecting transfer and expression of degradative plasmids for the purpose of bioremediation.

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9.  Life-history strategies of soil microbial communities in an arid ecosystem.

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10.  Assembly of the Populus Microbiome Is Temporally Dynamic and Determined by Selective and Stochastic Factors.

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