Phytoplankton biomass and production regulates key aspects of freshwater ecosystems yet its variability and subsequent predictability is poorly understood. We estimated within‐lake variation in biomass using high‐frequency chlorophyll fluorescence data from 18 globally distributed lakes. We tested how variation in fluorescence at monthly, daily, and hourly scales was related to high‐frequency variability of wind, water temperature, and radiation within lakes as well as productivity and physical attributes among lakes. Within lakes, monthly variation dominated, but combined daily and hourly variation were equivalent to that expressed monthly. Among lakes, biomass variability increased with trophic status while, within‐lake biomass variation ...
To determine the drivers of phytoplankton biomass, we collected standardized morphometric, physical,...
AbstractChlorophyll a (chla) concentration was evaluated as a predictor of phytoplankton biomass acr...
Phytoplankton growth in lakes is regulated by many physical, chemical, and biological drivers, exter...
Phytoplankton biomass and production regulates key aspects of freshwater ecosystems yet its variabil...
Phytoplankton biomass and production regulates key aspects of freshwater ecosystems yet its variabil...
Phytoplankton biomass and production regulates key aspects of freshwater ecosystems yet its variabil...
High-frequency measurements are increasingly available and used to model ecosystem processes. This g...
Ecologists collectively predict that climate change will enhance phytoplankton biomass in northern l...
Seasonal patterns in primary productivity and algal biomass in subtropical Florida lakes along incre...
Future climate in temperate regions is projected to get warmer and in many cases wetter. This poses ...
To determine the drivers of phytoplankton biomass, we collected standardized morphometric, physical,...
To determine the drivers of phytoplankton biomass, we collected standardized morphometric, physical,...
AbstractChlorophyll a (chla) concentration was evaluated as a predictor of phytoplankton biomass acr...
Phytoplankton growth in lakes is regulated by many physical, chemical, and biological drivers, exter...
Phytoplankton biomass and production regulates key aspects of freshwater ecosystems yet its variabil...
Phytoplankton biomass and production regulates key aspects of freshwater ecosystems yet its variabil...
Phytoplankton biomass and production regulates key aspects of freshwater ecosystems yet its variabil...
High-frequency measurements are increasingly available and used to model ecosystem processes. This g...
Ecologists collectively predict that climate change will enhance phytoplankton biomass in northern l...
Seasonal patterns in primary productivity and algal biomass in subtropical Florida lakes along incre...
Future climate in temperate regions is projected to get warmer and in many cases wetter. This poses ...
To determine the drivers of phytoplankton biomass, we collected standardized morphometric, physical,...
To determine the drivers of phytoplankton biomass, we collected standardized morphometric, physical,...
AbstractChlorophyll a (chla) concentration was evaluated as a predictor of phytoplankton biomass acr...
Phytoplankton growth in lakes is regulated by many physical, chemical, and biological drivers, exter...