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- W2137317066 abstract "Intertidal macroalgae endure light, desiccation, and temperature variation associated with sub‐merged and emerged conditions on a daily basis. Physiological stresses exist over the course of the entire tidal cycle, and physiological differences in response to these stresses likely contribute to spatial separation of species along the shore. For example, marine species that have a high stress tolerance can live higher on the shore and are able to recover when the tide returns, whereas species with a lower stress tolerance may be relegated to living lower on the shore or in tidepools, where low tide stresses are buffered. In this study, we monitored the physiological responses of the tidepool coralline C alliarthron tuberculosum ( P ostels and R uprecht) E.Y. Dawson and the nontidepool coralline C orallina vancouveriensis Y endo during simulated tidal conditions to identify differences in physiology that might underlie differences in habitat. During high tide, C orallina was more photosynthetically active than C alliarthron as light levels increased. During low tide, C orallina continued to out‐perform C alliarthron when submerged in warming tidepools, but photosynthesis abruptly halted for both species when emerged in air. Surprisingly, pigment composition did not differ, suggesting that light harvesting does not account for this difference. Additionally, C orallina was more effective at resisting desiccation by retaining water in its branches. When the tide returned, only C orallina recovered from combined temperature and desiccation stresses associated with emergence. This study broadens our understanding of intertidal algal physiology and provides a new perspective on the physiological and morphological underpinnings of habitat partitioning." @default.
- W2137317066 created "2016-06-24" @default.
- W2137317066 creator A5085791255 @default.
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- W2137317066 date "2014-02-12" @default.
- W2137317066 modified "2023-10-03" @default.
- W2137317066 title "Physiological performance of intertidal coralline algae during a simulated tidal cycle" @default.
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- W2137317066 doi "https://doi.org/10.1111/jpy.12161" @default.
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