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1.
Sci Total Environ ; 672: 990-1003, 2019 Jul 01.
Artigo em Inglês | MEDLINE | ID: mdl-30981171

RESUMO

Bacterioplankton communities have a pivotal role in the global carbon cycle. Still the interaction between microbial community and dissolved organic matter (DOM) in freshwater ecosystems remains poorly understood. Here, we report results from a 12-day mesocosm study performed in the epilimnion of a tropical lake, in which inorganic nutrients and allochthonous DOM were supplemented under full light and shading. Although the production of autochthonous DOM triggered by nutrient addition was the dominant driver of changes in bacterial community structure, temporal covariations between DOM optical proxies and bacterial community structure revealed a strong influence of community shifts on DOM fate. Community shifts were coupled to a successional stepwise alteration of the DOM pool, with different fractions being selectively consumed by specific taxa. Typical freshwater clades as Limnohabitans and Sporichthyaceae were associated with consumption of low molecular weight carbon, whereas Gammaproteobacteria and Flavobacteria utilized higher molecular weight carbon, indicating differences in DOM preference among clades. Importantly, Verrucomicrobiaceae were important in the turnover of freshly produced autochthonous DOM, ultimately affecting light availability and dissolved organic carbon concentrations. Our findings suggest that taxonomically defined bacterial assemblages play definite roles when influencing DOM fate, either by changing specific fractions of the DOM pool or by regulating light availability and DOC levels.


Assuntos
Bactérias/crescimento & desenvolvimento , Monitoramento Ambiental , Substâncias Húmicas/análise , Lagos/microbiologia , Microbiologia da Água , Poluentes da Água/análise , Organismos Aquáticos , Carbono , Ecossistema , Lagos/química , Clima Tropical
2.
An Acad Bras Cienc ; 89(1 Suppl 0): 469-489, 2017 May.
Artigo em Inglês | MEDLINE | ID: mdl-28562827

RESUMO

We studied the effects of particulate and dissolved optically active components on the attenuation of photosynthetic active radiation (PAR) in a tropical lake. The temporal and spatial distribution of tripton, Chl-a and aCDOM(440) and their relative contribution to the diffuse PAR attenuation coefficient (Kd) was investigated at 21 sites (dry and wet seasons and two intermediate periods) and at monthly interval at 1 pelagic site. Higher values of ​​ Kd were observed during the mixing period, characterized by a higher concentration of tripton and Chl-a compared to the stratified rainy season. In the spatial sampling PAR attenuation was dominated by tripton absorption/scattering (average relative contribution of 79%), followed by Chl-a (average 11.6%). In the monthly sampling tripton and Chl-a accounted for most of the Kd with relative contributions of 47.8% and 35.6%, respectively. Multiple linear regression analysis showed that Chl-a and tripton in combination explained 97% of the monthly variation in Kd (p<0.001), but Chl-a had more influence (higher regression coefficient). Thus, although most of light attenuation was due to tripton, seasonal variations in phytoplankton abundance were responsible for most of the temporal fluctuations in Kd.


Assuntos
Luz , Fotossíntese/fisiologia , Clorofila/efeitos da radiação , Clorofila A , Monitoramento Ambiental , Lagos , Metacrilatos , Modelos Biológicos , Fitoplâncton/efeitos da radiação , Poliuretanos , Estações do Ano , Análise Espaço-Temporal
3.
An. acad. bras. ciênc ; 89(1,supl): 469-489, May. 2017. tab, graf
Artigo em Inglês | LILACS | ID: biblio-886669

RESUMO

ABSTRACT We studied the effects of particulate and dissolved optically active components on the attenuation of photosynthetic active radiation (PAR) in a tropical lake. The temporal and spatial distribution of tripton, Chl-a and aCDOM(440) and their relative contribution to the diffuse PAR attenuation coefficient (Kd) was investigated at 21 sites (dry and wet seasons and two intermediate periods) and at monthly interval at 1 pelagic site. Higher values of ​​ Kd were observed during the mixing period, characterized by a higher concentration of tripton and Chl-a compared to the stratified rainy season. In the spatial sampling PAR attenuation was dominated by tripton absorption/scattering (average relative contribution of 79%), followed by Chl-a (average 11.6%). In the monthly sampling tripton and Chl-a accounted for most of the Kd with relative contributions of 47.8% and 35.6%, respectively. Multiple linear regression analysis showed that Chl-a and tripton in combination explained 97% of the monthly variation in Kd (p<0.001), but Chl-a had more influence (higher regression coefficient). Thus, although most of light attenuation was due to tripton, seasonal variations in phytoplankton abundance were responsible for most of the temporal fluctuations in Kd.


Assuntos
Fotossíntese/fisiologia , Luz , Fitoplâncton/efeitos da radiação , Poliuretanos , Estações do Ano , Lagos , Clorofila/efeitos da radiação , Monitoramento Ambiental , Análise Espaço-Temporal , Clorofila A , Metacrilatos , Modelos Biológicos
4.
FEMS Microbiol Ecol ; 93(1)2017 01 01.
Artigo em Inglês | MEDLINE | ID: mdl-27797965

RESUMO

Bacteria are highly important for the cycling of organic and inorganic matter in freshwater environments; however, little is known about the diversity of bacterioplankton in tropical systems. Studies on carbon and nutrient cycling in tropical lakes suggest a very different seasonality from that of temperate climates. Here, we used 16S rRNA gene next-generation sequencing (NGS) to investigate seasonal changes in bacterioplankton communities of two tropical lakes, which differed in trophic status and mixing regime. Our findings revealed seasonally and depth-wise highly dynamic bacterioplankton communities. Differences in richness and structure appeared strongly related to the physicochemical characteristics of the water column, especially phosphate, pH and oxygen. Bacterioplankton communities were dominated by common taxonomic groups, such as Synechococcus and Actinobacteria acI, as well as rare and poorly characterized taxa such as 'Candidatus Methylacidiphilum' (Verrucomicrobia). Stratification and oxygen depletion during the rainy season promoted the occurrence of anoxygenic phototrophic and methanotrophic bacteria important for carbon and nutrient cycling. Differences in lake mixing regime were associated with seasonal beta diversity. Our study is the first attempt to use NGS for cataloging the diversity of bacterioplankton communities in Brazilian lakes and thus contributes to the ongoing worldwide endeavor to characterize freshwater lake bacterioplankton signatures.


Assuntos
Actinobacteria/isolamento & purificação , Bactérias/classificação , Bactérias/isolamento & purificação , Lagos/microbiologia , Synechococcus/isolamento & purificação , Actinobacteria/genética , Bactérias/genética , Brasil , Florestas , Lagos/química , Filogenia , Plâncton/classificação , RNA Bacteriano/genética , RNA Ribossômico 16S/genética , Synechococcus/genética
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