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Journal ArticleDOI

Climate change affects timing and size of populations of an invasive cyanobacterium in temperate regions.

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TLDR
It is concluded that an earlier rise in water temperature associated with climate change has promoted the spread of C. raciborskii to the temperate zone, thereby shifting the pelagic populations to a phase with higher Imix, which advances growth and the population establishment.
Abstract
Cylindrospermopsis raciborskii, an invasive freshwater cyanobacterium, originated from the tropics but has spread to temperate zones over the last few decades. Its northernmost populations in Europe occur in North German lakes. How such dramatic changes in its biogeography are possible and how its population dynamics in the newly invaded habitats are regulated are still unexplained. We therefore conducted a long-term (1993–2005) study of two German lakes to elucidate the mechanisms behind C. raciborskii population dynamics and to identify the abiotic constraints on its development. Our data revealed that pelagic populations of C. raciborskii thrived for three months during the summer, contributing up to 23% of the total cyanobacteria biovolume. Population sizes varied greatly between years without exhibiting any distinct long-term trends. In the annual lifecycle, C. raciborskii filaments emerged in the pelagic habitat when the temperature rose above 15–17 °C. At that time, mean photosynthetically active radiation in the mixed water column (Imix) overstepped its maximum. Rates of population net increase were highest at the beginning of the season (0.15–0.28 day−1), declined continuously over time, and were significantly positively correlated with Imix. This indicates that the onset of the pelagic population is temperature-mediated and that Imix controls its growth. Since Imix peaks before the population onset, the time of germination is of crucial importance for successful development. To test this hypothesis, we designed a model to simulate pelagic population size, starting at different dates in the annual cycle. Moving the population onset forward by 30 days resulted in a doubling of the population size. We therefore conclude that an earlier rise in water temperature associated with climate change has promoted the spread of C. raciborskii to the temperate zone. Earlier warming permits earlier germination, thereby shifting the pelagic populations to a phase with higher Imix, which advances growth and the population establishment.

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Citations
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References
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Journal ArticleDOI

Ecological responses to recent climate change.

TL;DR: A review of the ecological impacts of recent climate change exposes a coherent pattern of ecological change across systems, from polar terrestrial to tropical marine environments.
Journal ArticleDOI

Zur Vervollkommnung der quantitativen Phytoplankton-Methodik

TL;DR: In this paper, the main aim is to describe the counting-chamber method and the numerous difficulties encountered in quantitative plankton research are discussed and ways of avoiding them are described together with improvements of technique that save time.
Book

Light and photosynthesis in aquatic ecosystems

TL;DR: The Underwater Light Field: Concepts of hydrologic optics, Absorption of light within the aquatic medium, and photosynthesis as a function of the incident light.
Journal ArticleDOI

Impact of climate change on marine pelagic phenology and trophic mismatch.

Martin Edwards, +1 more
- 19 Aug 2004 - 
TL;DR: It is shown that not only is the marine pelagic community responding to climate changes, but also that the level of response differs throughout the community and the seasonal cycle, leading to a mismatch between trophic levels and functional groups.
Journal ArticleDOI

Climate change uncouples trophic interactions in an aquatic ecosystem

TL;DR: A long-term decline in Daphnia populations, the keystone herbivore, is associated with an expanding temporal mismatch with the spring diatom bloom and may have severe consequences for resource flow to upper trophic levels.
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