home > bioproject > PRJEB14752
identifier PRJEB14752
type bioproject
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organism
title Changes in land use driven by urbanization impact nitrogen cycling and the microbial community composition in soils
description Transition of populations from rural to urban living causes landscape changes and alters the functionality of soil ecosystems. It is unclear how this urbanization disturbs the microbial ecology of soils and how the disruption influences nitrogen cycling. In this study, microbial communities in turfgrass-grown soils from urban and suburban areas around Xiamen City were compared to microbial communities in the soils from rural farmlands. The potential N2O emissions, potential denitrification activity, and abundances of denitrifiers were higher in the rural farmland soils compared with the turfgrass soils. Ammonia oxidizing archaea (AOA) were more abundant than ammonia oxidizing bacteria (AOB) in turfgrass soils. Within turfgrass soils, the potential nitrification activities and AOA abundances were higher in the urban than in the suburban soils. These results indicate a more pivotal role of AOA in nitrification, especially in urban soils. Microbial community composition was distinctly grouped along urbanization categories (urban, suburban, and rural) classified according to the population density, which can in part be attributed to the differences in soil properties. These observed changes could potentially have a broader impact on soil nutrient availability and greenhouse gas emissions.
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publication
Changes in land use driven by urbanization impact nitrogen cycling and the microbial community composition in soils.
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dbXrefs
sra-run  ERR1524384ERR1524385ERR1524386ERR1524387ERR1524388ERR1524389ERR1524390ERR1524391ERR1524392ERR1524393 More
sra-submission  ERA673931
biosample  SAMEA4071673SAMEA4071674SAMEA4071675SAMEA4071676SAMEA4071677SAMEA4071678SAMEA4071679SAMEA4071680SAMEA4071681SAMEA4071682 More
sra-study  ERP016419
sra-sample  ERS1242783ERS1242784ERS1242785ERS1242786ERS1242787ERS1242788ERS1242789ERS1242790ERS1242791ERS1242792 More
sra-experiment  ERX1595316ERX1595317ERX1595318ERX1595319ERX1595320ERX1595321ERX1595322ERX1595323ERX1595324ERX1595325 More
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status public
visibility unrestricted-access
dateCreated 2017-03-01T00:00:00Z
dateModified 2017-03-01T00:00:00Z
datePublished