Warming promotes cold‐adapted phytoplankton in temperate lakes and opens a loophole for Oscillatoriales in spring
T. Shatwell, J. Köhler, A. Nicklisch, Global Change Biology 14 (2008) 2194–2200.
Download
Es wurde kein Volltext hochgeladen. Nur Publikationsnachweis!
Zeitschriftenaufsatz (wiss.)
| Veröffentlicht
| Englisch
Autor*in
Abstract
The effects of the recent warming trend in many northern temperate lakes on the species composition of spring phytoplankton remain poorly understood, especially because a recent change in nutrients has complicated efforts, and previous studies have defined spring according to the calendar. We analysed data from 1979 to 2004 from Lake Müggelsee (Berlin, Germany), using physical and biological parameters to define the spring period. We show that a change in timing of spring plankton events in warm years led to the paradox of lower mean water temperatures during the growth period, favouring cold‐adapted diatoms over cyanobacteria, and within the diatoms, some cold‐adapted centric forms over pennate forms. Under high P : Si ratios, the increased time between phytoplankton and cladoceran peaks opened a loophole for filamentous cyanobacteria (Oscillatoriales) in warm years to establish dominance after the diatoms, which are silicate limited. Therefore, the warming trend promotes filamentous cyanobacteria, a well‐known nuisance in eutrophic lakes, and surprisingly, cold‐adapted diatoms.
Erscheinungsjahr
Zeitschriftentitel
Global Change Biology
Band
14
Zeitschriftennummer
9
Seite
2194-2200
ELSA-ID
Zitieren
Shatwell T, Köhler J, Nicklisch A. Warming promotes cold‐adapted phytoplankton in temperate lakes and opens a loophole for Oscillatoriales in spring. Global Change Biology. 2008;14(9):2194-2200. doi:10.1111/j.1365-2486.2008.01630.x
Shatwell, T., Köhler, J., & Nicklisch, A. (2008). Warming promotes cold‐adapted phytoplankton in temperate lakes and opens a loophole for Oscillatoriales in spring. Global Change Biology, 14(9), 2194–2200. https://doi.org/10.1111/j.1365-2486.2008.01630.x
Shatwell T, Köhler J and Nicklisch A (2008) Warming Promotes Cold‐adapted Phytoplankton in Temperate Lakes and Opens a Loophole for Oscillatoriales in Spring. Global Change Biology 14, 2194–2200.
Shatwell, Tom, Jan Köhler, and Andreas Nicklisch. “Warming Promotes Cold‐adapted Phytoplankton in Temperate Lakes and Opens a Loophole for Oscillatoriales in Spring.” Global Change Biology 14, no. 9 (2008): 2194–2200. https://doi.org/10.1111/j.1365-2486.2008.01630.x.
Shatwell, Tom, Jan Köhler und Andreas Nicklisch. 2008. Warming promotes cold‐adapted phytoplankton in temperate lakes and opens a loophole for Oscillatoriales in spring. Global Change Biology 14, Nr. 9: 2194–2200. doi:10.1111/j.1365-2486.2008.01630.x, .
Shatwell, Tom ; Köhler, Jan ; Nicklisch, Andreas: Warming promotes cold‐adapted phytoplankton in temperate lakes and opens a loophole for Oscillatoriales in spring. In: Global Change Biology Bd. 14. Oxford, Wiley (2008), Nr. 9, S. 2194–2200
T. Shatwell, J. Köhler, A. Nicklisch, Warming promotes cold‐adapted phytoplankton in temperate lakes and opens a loophole for Oscillatoriales in spring, Global Change Biology. 14 (2008) 2194–2200.
T. Shatwell, J. Köhler, and A. Nicklisch, “Warming promotes cold‐adapted phytoplankton in temperate lakes and opens a loophole for Oscillatoriales in spring,” Global Change Biology, vol. 14, no. 9, pp. 2194–2200, 2008, doi: 10.1111/j.1365-2486.2008.01630.x.
Shatwell, Tom, et al. “Warming Promotes Cold‐adapted Phytoplankton in Temperate Lakes and Opens a Loophole for Oscillatoriales in Spring.” Global Change Biology, vol. 14, no. 9, 2008, pp. 2194–200, https://doi.org/10.1111/j.1365-2486.2008.01630.x.
Shatwell, Tom/Köhler, Jan/Nicklisch, Andreas: Warming promotes cold‐adapted phytoplankton in temperate lakes and opens a loophole for Oscillatoriales in spring, in: Global Change Biology 14 (2008), H. 9, S. 2194–2200.
Shatwell T, Köhler J, Nicklisch A. Warming promotes cold‐adapted phytoplankton in temperate lakes and opens a loophole for Oscillatoriales in spring. Global Change Biology. 2008;14(9):2194–200.
Link(s) zu Volltext(en)
Access Level
