Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-series analyses, often at monthly sampling frequencies, have established the paramount role of abiotic and biotic variables in structuring bacterioplankton communities and productivities. However, fine-scale seasonal microbial activities, and underlying biological principles, are not fully understood. We report results from four consecutive years of high-frequency time-series sampling in the Baltic Proper. Pronounced temporal dynamics in most investigated microbial variables were observed, including bacterial heterotrophic production, plankton biomass, extracellular enzyme activities, substrate uptake rate constants of glucose, pyruvate, aceta...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
The microbial part of the pelagic food web is seldom characterized in models despite its major contr...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
Marine bacterioplankton are essential in global nutrient cycling and organic matter turnover. Time-s...
The microbial part of the pelagic food web is seldom characterized in models despite its major contr...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...
Although free-living (FL) and particle-attached (PA) bacteria are recognized as ecologically distinc...