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PMID: 14708746 Published · ppublish English Comparative Study Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Comparison of subsurface and surface soil bacterial communities in California grassland as assessed by terminal restriction fragment length polymorphisms of PCR-amplified 16S rRNA genes.

Microbial ecology ·Vol. 46 ·No. 2 ·2003-08-00 ·Pages 216-27

LaMontagne MG, Schimel JP, Holden PA

Abstract

The integrated biomass beneath the surface horizon in unsaturated soils is large and potentially important in nutrient and carbon cycling. Compared to surface soils, the ecology of these subsurface soils is weakly understood, particularly in terms of the composition of bacterial communities. We compared soil bacterial communities along two vertical transects by terminal restriction fragment length polymorphisms (TRFLPs) of PCR-amplified 16S rRNA genes to determine how surface and deep bacterial communities differ. DNA yield from soils collected from two Mediterranean grassland transects decreased exponentially from the surface to 4 m deep. Richness, as assessed by the number of peaks obtained after restriction with HhaI, MspI, RsaI, or HaeIII, and diversity, as assessed by the Shannon diversity indices, were lowest in the deepest sample. Lower diversity at depth is consistent with species-energy theory, which would predict relatively low diversity in the low organic matter horizons. Principal components analysis suggested that, in terms of HhaI and HaeIII generated TRFLPs, bacterial communities differed between depths. The most abundant amplicons cloned from the deepest sample contained sequences with restriction sites consistent with the largest peaks observed in TRFLPs generated from deep samples. These more abundant operational taxonomic units (OTUs) appeared related to Pseudomonas and Variovorax. Several OTUs were more related to each other than any previously described ribotypes. These OTUs showed similarity to bacteria from the divisions Actinobacteria and Firmicutes.

MeSH Terms
Biomass California Carbon/metabolism Cloning, Organism DNA, Bacterial/analysis Ecosystem Poaceae Polymerase Chain Reaction Polymorphism, Restriction Fragment Length Population Dynamics RNA, Ribosomal, 16S/analysis Soil Microbiology Water
Chemicals
DNA, Bacterial RNA, Ribosomal, 16S Water Carbon
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
LaMontagne M G
The Donald Bren School of Environmental Science and Management, University of California, Santa Barbara, CA 93106-5131, USA. lamontag@bren.ucsb.edu
Schimel J P
Holden P A
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Article Info
Journal
Microbial ecology
Abbr.
Microb Ecol
ISSN
0095-3628
Published
2003-08-00
Pages
216-27
Language
English
Region
United States
NLM ID
7500663
Subset
IM
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