Literature DB >> 23754819

Energy, ecology and the distribution of microbial life.

Jennifer L Macalady1, Trinity L Hamilton, Christen L Grettenberger, Daniel S Jones, Leah E Tsao, William D Burgos.   

Abstract

Mechanisms that govern the coexistence of multiple biological species have been studied intensively by ecologists since the turn of the nineteenth century. Microbial ecologists in the meantime have faced many fundamental challenges, such as the lack of an ecologically coherent species definition, lack of adequate methods for evaluating population sizes and community composition in nature, and enormous taxonomic and functional diversity. The accessibility of powerful, culture-independent molecular microbiology methods offers an opportunity to close the gap between microbial science and the main stream of ecological theory, with the promise of new insights and tools needed to meet the grand challenges humans face as planetary engineers and galactic explorers. We focus specifically on resources related to energy metabolism because of their direct links to elemental cycling in the Earth's history, engineering applications and astrobiology. To what extent does the availability of energy resources structure microbial communities in nature? Our recent work on sulfur- and iron-oxidizing autotrophs suggests that apparently subtle variations in the concentration ratios of external electron donors and acceptors select for different microbial populations. We show that quantitative knowledge of microbial energy niches (population-specific patterns of energy resource use) can be used to predict variations in the abundance of specific taxa in microbial communities. Furthermore, we propose that resource ratio theory applied to micro-organisms will provide a useful framework for identifying how environmental communities are organized in space and time.

Entities:  

Keywords:  biogeochemistry; biogeography; ecological niche; environmental engineering; evolution; resource ratio theory

Mesh:

Year:  2013        PMID: 23754819      PMCID: PMC3685468          DOI: 10.1098/rstb.2012.0383

Source DB:  PubMed          Journal:  Philos Trans R Soc Lond B Biol Sci        ISSN: 0962-8436            Impact factor:   6.237


  50 in total

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Review 4.  Biogeography: an emerging cornerstone for understanding prokaryotic diversity, ecology, and evolution.

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Review 6.  Beyond biogeographic patterns: processes shaping the microbial landscape.

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  11 in total

1.  Efficient Low-pH Iron Removal by a Microbial Iron Oxide Mound Ecosystem at Scalp Level Run.

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5.  Vertical diversity and association pattern of total, abundant and rare microbial communities in deep-sea sediments.

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6.  Microbial stimulation and succession following a test well injection simulating CO2 leakage into a shallow Newark basin aquifer.

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9.  Microbial community composition along a 50 000-year lacustrine sediment sequence.

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10.  Energetic and Environmental Constraints on the Community Structure of Benthic Microbial Mats in Lake Fryxell, Antarctica.

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