Metagenomics reveals the influence of land use and rain on the benthic microbial communities in a tropical urban waterway
10.1128/mSystems.00136-17
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2020
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sg-nus-scholar.10635-1760462023-10-31T21:42:22Z Metagenomics reveals the influence of land use and rain on the benthic microbial communities in a tropical urban waterway Saxena, G Mitra, S Marzinelli, E.M Xie, C Wei, T.J Steinberg, P.D Williams, R.B.H Kjelleberg, S Lauro, F.M Swarup, S BIOLOGY (NU) DEPT OF BIOCHEMISTRY LIFE SCIENCES INSTITUTE rain Actinobacteria Article Bacteroidetes Beggiatoa benthos carbohydrate metabolism carbon fixation carbon metabolism catchment Coleofasciculus community structure cyanobacterium gene function industrial area land use metagenomics microbial community nitrogen cycling nitrogen fixation Nitrosopumilus Nitrosospira Nitrosovibrio Nitrospira nonhuman nucleic acid metabolism population abundance protein metabolism Proteobacteria Singapore species composition Sulfuritalea urban area water supply 10.1128/mSystems.00136-17 mSystems 3 3 e0013617 2020-09-14T07:51:49Z 2020-09-14T07:51:49Z 2018 Article Saxena, G, Mitra, S, Marzinelli, E.M, Xie, C, Wei, T.J, Steinberg, P.D, Williams, R.B.H, Kjelleberg, S, Lauro, F.M, Swarup, S (2018). Metagenomics reveals the influence of land use and rain on the benthic microbial communities in a tropical urban waterway. mSystems 3 (3) : e0013617. ScholarBank@NUS Repository. https://doi.org/10.1128/mSystems.00136-17 2379-5077 https://scholarbank.nus.edu.sg/handle/10635/176046 Unpaywall 20200831 |
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rain Actinobacteria Article Bacteroidetes Beggiatoa benthos carbohydrate metabolism carbon fixation carbon metabolism catchment Coleofasciculus community structure cyanobacterium gene function industrial area land use metagenomics microbial community nitrogen cycling nitrogen fixation Nitrosopumilus Nitrosospira Nitrosovibrio Nitrospira nonhuman nucleic acid metabolism population abundance protein metabolism Proteobacteria Singapore species composition Sulfuritalea urban area water supply |
spellingShingle |
rain Actinobacteria Article Bacteroidetes Beggiatoa benthos carbohydrate metabolism carbon fixation carbon metabolism catchment Coleofasciculus community structure cyanobacterium gene function industrial area land use metagenomics microbial community nitrogen cycling nitrogen fixation Nitrosopumilus Nitrosospira Nitrosovibrio Nitrospira nonhuman nucleic acid metabolism population abundance protein metabolism Proteobacteria Singapore species composition Sulfuritalea urban area water supply Saxena, G Mitra, S Marzinelli, E.M Xie, C Wei, T.J Steinberg, P.D Williams, R.B.H Kjelleberg, S Lauro, F.M Swarup, S Metagenomics reveals the influence of land use and rain on the benthic microbial communities in a tropical urban waterway |
description |
10.1128/mSystems.00136-17 |
author2 |
BIOLOGY (NU) |
author_facet |
BIOLOGY (NU) Saxena, G Mitra, S Marzinelli, E.M Xie, C Wei, T.J Steinberg, P.D Williams, R.B.H Kjelleberg, S Lauro, F.M Swarup, S |
format |
Article |
author |
Saxena, G Mitra, S Marzinelli, E.M Xie, C Wei, T.J Steinberg, P.D Williams, R.B.H Kjelleberg, S Lauro, F.M Swarup, S |
author_sort |
Saxena, G |
title |
Metagenomics reveals the influence of land use and rain on the benthic microbial communities in a tropical urban waterway |
title_short |
Metagenomics reveals the influence of land use and rain on the benthic microbial communities in a tropical urban waterway |
title_full |
Metagenomics reveals the influence of land use and rain on the benthic microbial communities in a tropical urban waterway |
title_fullStr |
Metagenomics reveals the influence of land use and rain on the benthic microbial communities in a tropical urban waterway |
title_full_unstemmed |
Metagenomics reveals the influence of land use and rain on the benthic microbial communities in a tropical urban waterway |
title_sort |
metagenomics reveals the influence of land use and rain on the benthic microbial communities in a tropical urban waterway |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/176046 |
_version_ |
1781792224751648768 |