Vicinal land use change strongly drives stream bacterial community in a tropical montane catchment

Impact of land use (LU) change on stream environmental conditions and the inhabiting bacterial community remains rarely investigated, especially in tropical montane catchments. We examined the effects of LU change and its legacy along a tropical stream by comparing seasonal patterns of dissolved org...

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Vydané v:FEMS microbiology ecology Ročník 94; číslo 11; s. 1
Hlavní autori: Le, Huong T, Rochelle-Newall, Emma, Auda, Yves, Ribolzi, Olivier, Sengtaheuanghoung, Oloth, Thébault, Elisa, Soulileuth, Bounsamay, Pommier, Thomas
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: England Oxford University Press 01.11.2018
Wiley-Blackwell
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ISSN:1574-6941, 0168-6496, 1574-6941
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Abstract Impact of land use (LU) change on stream environmental conditions and the inhabiting bacterial community remains rarely investigated, especially in tropical montane catchments. We examined the effects of LU change and its legacy along a tropical stream by comparing seasonal patterns of dissolved organic carbon (DOC) / colored dissolved organic matter (CDOM) in relation to variations in structure, diversity and metabolic capacities of particle-attached (PA) and free-living (FL) bacterial communities. We hypothesized that despite seasonal differences, hydrological flows that accumulate allochthonous carbon along the catchment are a major controlling factor of the bacterial community. Surprisingly, local environmental conditions that were largely related to nearby LU and the legacy of LU change were more important for stream bacterial diversity than hydrological connectivity. DOC was strongly correlated with PA richness and diversity. The legacy of LU change between teak plantation and annual crops induced high DOC and high diversity and richness of PA in the adjacent waters, while banana plantations were associated with high diversity of FL. The community structures of both PA and FL differed significantly between seasons. Our results highlight the importance of vicinal LU change and its legacy on aquatic bacterial communities in mixed used tropical watersheds.
AbstractList Impact of land use (LU) change on stream environmental conditions and the inhabiting bacterial community remains rarely investigated, especially in tropical montane catchments. We examined the effects of LU change and its legacy along a tropical stream by comparing seasonal patterns of dissolved organic carbon (DOC) / colored dissolved organic matter (CDOM) in relation to variations in structure, diversity and metabolic capacities of particle-attached (PA) and free-living (FL) bacterial communities. We hypothesized that despite seasonal differences, hydrological flows that accumulate allochthonous carbon along the catchment are a major controlling factor of the bacterial community. Surprisingly, local environmental conditions that were largely related to nearby LU and the legacy of LU change were more important for stream bacterial diversity than hydrological connectivity. DOC was strongly correlated with PA richness and diversity. The legacy of LU change between teak plantation and annual crops induced high DOC and high diversity and richness of PA in the adjacent waters, while banana plantations were associated with high diversity of FL. The community structures of both PA and FL differed significantly between seasons. Our results highlight the importance of vicinal LU change and its legacy on aquatic bacterial communities in mixed used tropical watersheds.Impact of land use (LU) change on stream environmental conditions and the inhabiting bacterial community remains rarely investigated, especially in tropical montane catchments. We examined the effects of LU change and its legacy along a tropical stream by comparing seasonal patterns of dissolved organic carbon (DOC) / colored dissolved organic matter (CDOM) in relation to variations in structure, diversity and metabolic capacities of particle-attached (PA) and free-living (FL) bacterial communities. We hypothesized that despite seasonal differences, hydrological flows that accumulate allochthonous carbon along the catchment are a major controlling factor of the bacterial community. Surprisingly, local environmental conditions that were largely related to nearby LU and the legacy of LU change were more important for stream bacterial diversity than hydrological connectivity. DOC was strongly correlated with PA richness and diversity. The legacy of LU change between teak plantation and annual crops induced high DOC and high diversity and richness of PA in the adjacent waters, while banana plantations were associated with high diversity of FL. The community structures of both PA and FL differed significantly between seasons. Our results highlight the importance of vicinal LU change and its legacy on aquatic bacterial communities in mixed used tropical watersheds.
Impact of land use (LU) change on stream environmental conditions and the inhabiting bacterial community remains rarely investigated, especially in tropical montane catchments. We examined the effects of LU change and its legacy along a tropical stream by comparing seasonal patterns of dissolved organic carbon (DOC) / colored dissolved organic matter (CDOM) in relation to variations in structure, diversity and metabolic capacities of particle-attached (PA) and free-living (FL) bacterial communities. We hypothesized that despite seasonal differences, hydrological flows that accumulate allochthonous carbon along the catchment are a major controlling factor of the bacterial community. Surprisingly, local environmental conditions that were largely related to nearby LU and the legacy of LU change were more important for stream bacterial diversity than hydrological connectivity. DOC was strongly correlated with PA richness and diversity. The legacy of LU change between teak plantation and annual crops induced high DOC and high diversity and richness of PA in the adjacent waters, while banana plantations were associated with high diversity of FL. The community structures of both PA and FL differed significantly between seasons. Our results highlight the importance of vicinal LU change and its legacy on aquatic bacterial communities in mixed used tropical watersheds.
Impact of land use (LU) change on stream environmental conditions and the inhabiting bacterial community remains rarely investigated, especially in tropical montane catchments. We examined the effects of LU change and its legacy along a tropical stream by comparing seasonal patterns of dissolved organic carbon (DOC) / colored dissolved organic matter (CDOM) in relation to variations in structure, diversity and metabolic capacities of particle-attached (PA) and free-living (FL) bacterial communities. We hypothesized that despite seasonal differences, hydrological flows that accumulate allochthonous carbon along the catchment are a major controlling factor of the bacterial community. Surprisingly, local environmental conditions that were largely related to nearby LU and the legacy of LU change were more important for stream bacterial diversity than hydrological connectivity. DOC was strongly correlated with PA richness and diversity. The legacy of LU change between teak plantation and annual crops induced high DOC and high diversity and richness of PA in the adjacent waters, while banana plantations were associated with high diversity of FL. The community structures of both PA and FL differed significantly between seasons. Our results highlight the importance of vicinal LU change and its legacy on aquatic bacterial communities in mixed used tropical watersheds. Keywords: LU legacy; DOC; CDOM; bacterial diversity; land management; hyporheic zone
Audience Academic
Author Auda, Yves
Rochelle-Newall, Emma
Sengtaheuanghoung, Oloth
Thébault, Elisa
Pommier, Thomas
Le, Huong T
Soulileuth, Bounsamay
Ribolzi, Olivier
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  orcidid: 0000-0003-0951-8650
  surname: Rochelle-Newall
  fullname: Rochelle-Newall, Emma
  organization: iEES-Paris Institut d'Ecologie et des Sciences de l'Environnement de Paris (Sorbonne Universités, CNRS, IRD, INRA, UPEC, Université Paris Diderot), CC237, 4 place Jussieu, 75005 Paris, France
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  surname: Auda
  fullname: Auda, Yves
  organization: Géosciences Environnement Toulouse (GET Université de Toulouse, CNRS, IRD, UPS - 14, avenue Edouard Belin, F-31400 Toulouse, France
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  givenname: Olivier
  surname: Ribolzi
  fullname: Ribolzi, Olivier
  organization: Géosciences Environnement Toulouse (GET Université de Toulouse, CNRS, IRD, UPS - 14, avenue Edouard Belin, F-31400 Toulouse, France
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  givenname: Oloth
  surname: Sengtaheuanghoung
  fullname: Sengtaheuanghoung, Oloth
  organization: Department of Agricultural Land Management (DALaM), Ministry of Agriculture and Forestry, P.O Box 4195, Ban Nogviengkham, Xaythany District, BP 7170 Vientiane, Laos PDR
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  givenname: Elisa
  surname: Thébault
  fullname: Thébault, Elisa
  organization: iEES-Paris Institut d'Ecologie et des Sciences de l'Environnement de Paris (Sorbonne Universités, CNRS, IRD, INRA, UPEC, Université Paris Diderot), CC237, 4 place Jussieu, 75005 Paris, France
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  givenname: Bounsamay
  surname: Soulileuth
  fullname: Soulileuth, Bounsamay
  organization: Institut pour la Recherche et le Développement (IRD), Ban Sisangvone, BP5992, Vientiane, Laos PDR
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  givenname: Thomas
  orcidid: 0000-0003-2986-5326
  surname: Pommier
  fullname: Pommier, Thomas
  organization: Ecologie Microbienne, UMR1418 INRA, UMR 5557 CNRS, UCBL, VetAgro Sup, Université de Lyon, 43 boulevard du 11 novembre 1918, F-69622 Villeurbanne Cedex, France
BackLink https://www.ncbi.nlm.nih.gov/pubmed/30107549$$D View this record in MEDLINE/PubMed
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Copyright COPYRIGHT 2018 Oxford University Press
FEMS 2018.
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Issue 11
Keywords CDOM
bacterial diversity
land management
DOC
LU legacy
hyporheic zone
Language English
License https://academic.oup.com/journals/pages/open_access/funder_policies/chorus/standard_publication_model
Distributed under a Creative Commons Attribution 4.0 International License: http://creativecommons.org/licenses/by/4.0
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PublicationTitle FEMS microbiology ecology
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Snippet Impact of land use (LU) change on stream environmental conditions and the inhabiting bacterial community remains rarely investigated, especially in tropical...
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SubjectTerms annuals
Bacteria
Bacteria - isolation & purification
bacterial communities
bananas
biochemical pathways
Carbon - analysis
Catchments
community structure
Dissolved organic carbon
Dissolved organic matter
Ecology
Environmental aspects
Environmental conditions
environmental factors
France
Hydrology
Land use
land use change
Life Sciences
Microbial colonies
Microbiology
Mountains
Plantations
Rivers
Rivers - chemistry
Rivers - microbiology
seasonal variation
Seasonal variations
Seasons
streams
Tectona grandis
Tropical Climate
tropics
Watersheds
Title Vicinal land use change strongly drives stream bacterial community in a tropical montane catchment
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Volume 94
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