Bacterial production (BP), respiration (BR) and growth efficiency (BGE) were simultaneously determined along an environmental gradient in the Pearl River Estuary (PRE) in the wet season (May 2015) and the dry season (January 2016), in order to examine bacterial responses to the riverine dissolved organic carbon (DOC) in the PRE. The Pearl River discharge delivered labile dissolved organic matters (DOM) with low DOC:DON ratio, resulting in a clear gradient in DOC concentrations and DOC:DON ratios. BP (3.93–144 μg C L−1 d−1) was more variable than BR (64.6–567 μg C L−1 d−1) in terms of the percentage, along an environmental gradient in the PRE. In response to riverine DOC input, BP and the cell-specific BP increased; in contrast, the cell-spe...
Phytoplankton and heterotrophic bacteria are key groups at the base of aquatic food webs. In estuari...
Phytoplankton and heterotrophic bacteria are key groups at the base of aquatic food webs. In estuari...
Rising atmospheric CO2 has increased research on the carbon fluxes in oceans because the ocean is an...
Bacterial production (BP), respiration (BR) and growth efficiency (BGE) were simultaneously determin...
Heterotrophic bacterioplankton play a significant role in carbon cycle in oceans. It is crucial to i...
A cross-transplant experiment between estuarine water and seawater was conducted to examine the resp...
Author Posting. © American Society of Limnology and Oceanography, 2011. This article is posted here...
A cross-transplant experiment between estuarine water and seawater was conducted to examine the resp...
The study of bacterial production and respiration is a relatively new field of investigation in Hong...
Bacterial respiration contributes to atmospheric carbon dioxide accumulation and development of hypo...
Bacterial respiration contributes to atmospheric carbon dioxide accumulation and development of hypo...
Bacterial growth efficiency (BGE) is a key factor in understanding bacterial influence on carbon flo...
Bacterial respiration contributes to atmospheric carbon dioxide accumulation and development of hypo...
Rivers and estuaries transport organic carbon (C) from terrestrial and freshwater ecosystems to the ...
Accurate estimates of bacterial carbon metabolic rates are indispensable for understanding the regul...
Phytoplankton and heterotrophic bacteria are key groups at the base of aquatic food webs. In estuari...
Phytoplankton and heterotrophic bacteria are key groups at the base of aquatic food webs. In estuari...
Rising atmospheric CO2 has increased research on the carbon fluxes in oceans because the ocean is an...
Bacterial production (BP), respiration (BR) and growth efficiency (BGE) were simultaneously determin...
Heterotrophic bacterioplankton play a significant role in carbon cycle in oceans. It is crucial to i...
A cross-transplant experiment between estuarine water and seawater was conducted to examine the resp...
Author Posting. © American Society of Limnology and Oceanography, 2011. This article is posted here...
A cross-transplant experiment between estuarine water and seawater was conducted to examine the resp...
The study of bacterial production and respiration is a relatively new field of investigation in Hong...
Bacterial respiration contributes to atmospheric carbon dioxide accumulation and development of hypo...
Bacterial respiration contributes to atmospheric carbon dioxide accumulation and development of hypo...
Bacterial growth efficiency (BGE) is a key factor in understanding bacterial influence on carbon flo...
Bacterial respiration contributes to atmospheric carbon dioxide accumulation and development of hypo...
Rivers and estuaries transport organic carbon (C) from terrestrial and freshwater ecosystems to the ...
Accurate estimates of bacterial carbon metabolic rates are indispensable for understanding the regul...
Phytoplankton and heterotrophic bacteria are key groups at the base of aquatic food webs. In estuari...
Phytoplankton and heterotrophic bacteria are key groups at the base of aquatic food webs. In estuari...
Rising atmospheric CO2 has increased research on the carbon fluxes in oceans because the ocean is an...