Publications
Evidence supporting dissimilatory and assimilatory lignin degradation in Enterobacter lignolyticus SCF1.. Front Microbiol. 4:280.
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2013. Metagenomes of tropical soil-derived anaerobic switchgrass-adapted consortia with and without iron.. Stand Genomic Sci. 7(3):382-98.
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2013. Anaerobic decomposition of switchgrass by tropical soil-derived feedstock-adapted consortia.. MBio. 3(1)
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2012. Application of phenotypic microarrays to environmental microbiology.. Curr Opin Biotechnol. 23(1):41-8.
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2012. Global transcriptome response to ionic liquid by a tropical rain forest soil bacterium, Enterobacter lignolyticus.. Proc Natl Acad Sci U S A. 109(32):E2173-82.
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2012. Phylogenetic clustering of soil microbial communities by 16S rRNA but not 16S rRNA genes.. Appl Environ Microbiol. 78(7):2459-61.
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2012. Characterization of trapped lignin-degrading microbes in tropical forest soil.. PLoS One. 6(4):e19306.
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2011. Complete genome sequence of "Enterobacter lignolyticus" SCF1.. Stand Genomic Sci. 5(1):69-85.
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2011. Effects of selected root exudate components on soil bacterial communities.. FEMS Microbiol Ecol. 77(3):600-10.
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2011. Metagenomic analysis of a permafrost microbial community reveals a rapid response to thaw.. Nature. 480(7377):368-71.
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2011. PCR amplification-independent methods for detection of microbial communities by the high-density microarray PhyloChip.. Appl Environ Microbiol. 77(18):6313-22.
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2011. Microbial communities acclimate to recurring changes in soil redox potential status.. Environ Microbiol. 12(12):3137-49.
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2010. Bacterial diversity analysis of Huanglongbing pathogen-infected citrus, using PhyloChip arrays and 16S rRNA gene clone library sequencing.. Appl Environ Microbiol. 75(6):1566-74.
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2009. Selective progressive response of soil microbial community to wild oat roots.. ISME J. 3(2):168-78.
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2009.
Department of Microbiology