Differential growth responses of soil bacterial taxa to carbon substrates of varying chemical recalcitrance

被引:491
作者
Goldfarb, Katherine C. [1 ]
Karaoz, Ulas [1 ]
Hanson, China A. [2 ]
Santee, Clark A. [1 ]
Bradford, Mark A. [3 ]
Treseder, Kathleen K. [2 ]
Wallenstein, Matthew D. [4 ]
Brodie, Eoin L. [1 ]
机构
[1] Univ Calif Berkeley, Lawrence Berkeley Natl Lab, Dept Ecol, Div Earth Sci, Berkeley, CA 94720 USA
[2] Univ Calif Irvine, Irvine, CA USA
[3] Yale Univ, Sch Forestry & Environm Studies, New Haven, CT 06511 USA
[4] Colorado State Univ, Nat Resource Ecol Lab, Ft Collins, CO 80523 USA
来源
FRONTIERS IN MICROBIOLOGY | 2011年 / 2卷
基金
美国国家科学基金会;
关键词
soil; bacteria; carbon; substrate quality; bromo-deoxyuridine; microarray; rRNA copy number; 16S RIBOSOMAL-RNA; MICROBIAL COMMUNITY STRUCTURE; BROMODEOXYURIDINE IMMUNOCAPTURE; ATMOSPHERIC CO2; DIVERSITY; DEGRADATION; RESPIRATION; DYNAMICS; MICROORGANISMS; PRETREATMENT;
D O I
10.3389/fmicb.2011.00094
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Soils are immensely diverse microbial habitats with thousands of co-existing bacterial, archaeal, and fungal species. Across broad spatial scales, factors such as pH and soil moisture appear to determine the diversity and structure of soil bacterial communities. Within any one site however, bacterial taxon diversity is high and factors maintaining this diversity are poorly resolved. Candidate factors include organic substrate availability and chemical recalcitrance, and given that they appear to structure bacterial communities at the phylum level, we examine whether these factors might structure bacterial communities at finer levels of taxonomic resolution. Analyzing 16S rRNA gene composition of nucleotide analog-labeled DNA by PhyloChip microarrays, we compare relative growth rates on organic substrates of increasing chemical recalcitrance of >2,200 bacterial taxa across 43 divisions/phyla. Taxa that increase in relative abundance with labile organic substrates (i.e., glycine, sucrose) are numerous (>500), phylogenetically clustered, and occur predominantly in two phyla (Proteobacteria and Actinobacteria) including orders Actinomycetales, Enterobacteriales, Burkholderiales, Rhodocyclales, Alteromonadales, and Pseudomonadales. Taxa increasing in relative abundance with more chemically recalcitrant substrates (i.e., cellulose, lignin, or tannin-protein) are fewer (168) but more phylogenetically dispersed, occurring across eight phyla and including Clostridiales, Sphingomonadalaes, Desulfovibrionales. Just over 6% of detected taxa, including many Burkholderiales increase in relative abundance with both labile and chemically recalcitrant substrates. Estimates of median rRNA copy number per genome of responding taxa demonstrate that these patterns are broadly consistent with bacterial growth strategies. Taken together, these data suggest that changes in availability of intrinsically labile substrates may result in predictable shifts in soil bacterial composition.
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页数:10
相关论文
共 83 条
[21]   Land use and climatic factors structure regional patterns in soil microbial communities [J].
Drenovsky, Rebecca E. ;
Steenwerth, Kerri L. ;
Jackson, Louise E. ;
Scow, Kate M. .
GLOBAL ECOLOGY AND BIOGEOGRAPHY, 2010, 19 (01) :27-39
[22]   Specific rhizosphere bacterial and fungal groups respond differently to elevated atmospheric CO2 [J].
Drigo, Barbara ;
Van Veen, Johannes A. ;
Kowalchuk, George A. .
ISME JOURNAL, 2009, 3 (10) :1204-1217
[23]   Active bacterial community structure along vertical redox gradients in Baltic Sea sediment [J].
Edlund, Anna ;
Hardeman, Fredrik ;
Jansson, Janet K. ;
Sjoling, Sara .
ENVIRONMENTAL MICROBIOLOGY, 2008, 10 (08) :2051-2063
[24]  
Egeraat A., 1975, PLANT SOIL, V42, P37
[25]   Assessment of soil microbial community structure by use of taxon-specific quantitative PCR assays [J].
Fierer, N ;
Jackson, JA ;
Vilgalys, R ;
Jackson, RB .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2005, 71 (07) :4117-4120
[26]   Effects of drying-rewetting frequency on soil carbon and nitrogen transformations [J].
Fierer, N ;
Schimel, JP .
SOIL BIOLOGY & BIOCHEMISTRY, 2002, 34 (06) :777-787
[27]   Metagenomic and small-subunit rRNA analyses reveal the genetic diversity of bacteria, archaea, fungi, and viruses in soil [J].
Fierer, Noah ;
Breitbart, Mya ;
Nulton, James ;
Salamon, Peter ;
Lozupone, Catherine ;
Jones, Ryan ;
Robeson, Michael ;
Edwards, Robert A. ;
Felts, Ben ;
Rayhawk, Steve ;
Knight, Rob ;
Rohwer, Forest ;
Jackson, Robert B. .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2007, 73 (21) :7059-7066
[28]   Toward an ecological classification of soil bacteria [J].
Fierer, Noah ;
Bradford, Mark A. ;
Jackson, Robert B. .
ECOLOGY, 2007, 88 (06) :1354-1364
[29]   Rhizosphere priming effects on the decomposition of soil organic matter in C4 and C3 grassland soils [J].
Fu, SL ;
Cheng, WX .
PLANT AND SOIL, 2002, 238 (02) :289-294
[30]   Computational improvements reveal great bacterial diversity and high metal toxicity in soil [J].
Gans, J ;
Wolinsky, M ;
Dunbar, J .
SCIENCE, 2005, 309 (5739) :1387-1390