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Functional Potential of Soil Microbial Communities in the Maize Rhizosphere

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Journal PLoS One
Date 2014 Nov 11
PMID 25383887
Citations 48
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Abstract

Microbial communities in the rhizosphere make significant contributions to crop health and nutrient cycling. However, their ability to perform important biogeochemical processes remains uncharacterized. Here, we identified important functional genes that characterize the rhizosphere microbial community to understand metabolic capabilities in the maize rhizosphere using the GeoChip-based functional gene array method. Significant differences in functional gene structure were apparent between rhizosphere and bulk soil microbial communities. Approximately half of the detected gene families were significantly (p<0.05) increased in the rhizosphere. Based on the detected gyrB genes, Gammaproteobacteria, Betaproteobacteria, Firmicutes, Bacteroidetes and Cyanobacteria were most enriched in the rhizosphere compared to those in the bulk soil. The rhizosphere niche also supported greater functional diversity in catabolic pathways. The maize rhizosphere had significantly enriched genes involved in carbon fixation and degradation (especially for hemicelluloses, aromatics and lignin), nitrogen fixation, ammonification, denitrification, polyphosphate biosynthesis and degradation, sulfur reduction and oxidation. This research demonstrates that the maize rhizosphere is a hotspot of genes, mostly originating from dominant soil microbial groups such as Proteobacteria, providing functional capacity for the transformation of labile and recalcitrant organic C, N, P and S compounds.

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References
1.
Dohrmann A, Kuting M, Junemann S, Jaenicke S, Schluter A, Tebbe C . Importance of rare taxa for bacterial diversity in the rhizosphere of Bt- and conventional maize varieties. ISME J. 2012; 7(1):37-49. PMC: 3526185. DOI: 10.1038/ismej.2012.77. View

2.
He Z, Van Nostrand J, Zhou J . Applications of functional gene microarrays for profiling microbial communities. Curr Opin Biotechnol. 2012; 23(3):460-6. DOI: 10.1016/j.copbio.2011.12.021. View

3.
Singh B, Millard P, Whiteley A, Murrell J . Unravelling rhizosphere-microbial interactions: opportunities and limitations. Trends Microbiol. 2004; 12(8):386-93. DOI: 10.1016/j.tim.2004.06.008. View

4.
Goldfarb K, Karaoz U, Hanson C, Santee C, Bradford M, Treseder K . Differential growth responses of soil bacterial taxa to carbon substrates of varying chemical recalcitrance. Front Microbiol. 2011; 2:94. PMC: 3153052. DOI: 10.3389/fmicb.2011.00094. View

5.
Chelius M, Triplett E . The Diversity of Archaea and Bacteria in Association with the Roots of Zea mays L. Microb Ecol. 2001; 41(3):252-263. DOI: 10.1007/s002480000087. View