In lake ecosystems, regime shifts can induce changes in physical and biological components, particularly phytoplankton community structure, as well as across multiple trophic levels. Phytoplankton community succession may be driven by different environmental factors before and after regime shift; however, owing to the abruptness of the regime shift, long-term observations encompassing both periods are scarce, limiting our ability to identify the shift of key drivers of phytoplankton community succession. Here, an analysis was conducted based on long-term observations (involving phytoplankton community and environmental variables from 1997 to 2008) in Erhai Lake, a eutrophic lake in China that may have undergone a regime shift in 2001–2003. ...
© 2018 Water Environment Federation. All rights reserved. The present study was carried out in Luoma...
Abstract The extent of intra‐annual turnover in phytoplankton communities is directly associated wit...
Non-diazotrophic Microcystis and filamentous N-2-fixing Aphanizomenon and Dolichosperrnum (formerly ...
Information on temporal dynamics of phytoplankton communities and their responses to environmental f...
Increasing algae in Lake Erhai has resulted in frequent blooms that have not only led to water ecosy...
Increasing algae in Lake Erhai has resulted in frequent blooms that have not only led to water ecosy...
Phytoplankton samples were taken weekly from September 2009 to November 2010 in Lake Erhai. The purp...
An annual investigation on phytoplankton communities was conducted to reveal the effects of nutrient...
© 2015, Springer-Verlag Berlin Heidelberg. Hongze Lake is a large, shallow, polymictic, eutrophic la...
Excessive nutrient loads resulted in cascading trophic effects and ecosystem responses. Aims of this...
Aquaculture in lakes is an important human activity that could accelerate eutrophication. Its impact...
The link between compensatory dynamics and regime shifts is not well understood. We analyse a regime...
<div><p>We examined the potential effects of environmental variables, and their interaction, on phyt...
Long-term annual (1990–2010) monitoring data were analyzed to test the responses of phytoplankton bi...
Climate change affects seasonal weather patterns, but little is known about the consequent effects o...
© 2018 Water Environment Federation. All rights reserved. The present study was carried out in Luoma...
Abstract The extent of intra‐annual turnover in phytoplankton communities is directly associated wit...
Non-diazotrophic Microcystis and filamentous N-2-fixing Aphanizomenon and Dolichosperrnum (formerly ...
Information on temporal dynamics of phytoplankton communities and their responses to environmental f...
Increasing algae in Lake Erhai has resulted in frequent blooms that have not only led to water ecosy...
Increasing algae in Lake Erhai has resulted in frequent blooms that have not only led to water ecosy...
Phytoplankton samples were taken weekly from September 2009 to November 2010 in Lake Erhai. The purp...
An annual investigation on phytoplankton communities was conducted to reveal the effects of nutrient...
© 2015, Springer-Verlag Berlin Heidelberg. Hongze Lake is a large, shallow, polymictic, eutrophic la...
Excessive nutrient loads resulted in cascading trophic effects and ecosystem responses. Aims of this...
Aquaculture in lakes is an important human activity that could accelerate eutrophication. Its impact...
The link between compensatory dynamics and regime shifts is not well understood. We analyse a regime...
<div><p>We examined the potential effects of environmental variables, and their interaction, on phyt...
Long-term annual (1990–2010) monitoring data were analyzed to test the responses of phytoplankton bi...
Climate change affects seasonal weather patterns, but little is known about the consequent effects o...
© 2018 Water Environment Federation. All rights reserved. The present study was carried out in Luoma...
Abstract The extent of intra‐annual turnover in phytoplankton communities is directly associated wit...
Non-diazotrophic Microcystis and filamentous N-2-fixing Aphanizomenon and Dolichosperrnum (formerly ...