Marine heatwaves and decreased light availability interact to erode the ecophysiological performance of habitat-forming kelp species

被引:16
作者
Bass, Alissa V. [1 ,2 ]
Smith, Kathryn E. [1 ]
Smale, Dan A. [1 ]
机构
[1] Marine Biol Assoc UK, Citadel Hill, Plymouth, England
[2] Chinese Univ Hong Kong, Simon FS Li Marine Sci Lab, Sha Tin, Hong Kong, Peoples R China
关键词
ecophysiology; kelp; Laminaria; light limitation; marine heatwaves; season; LONG-TERM TRENDS; CLIMATE-CHANGE; LAMINARIA-OCHROLEUCA; YOUNG SPOROPHYTES; NORTH PACIFIC; TEMPERATURE; GROWTH; COAST; FLUORESCENCE; BIODIVERSITY;
D O I
10.1111/jpy.13332
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Coastal marine ecosystems are threatened by a range of anthropogenic stressors, operating at global, local, and temporal scales. We investigated the impact of marine heatwaves (MHWs) combined with decreased light availability over two seasons on the ecophysiological responses of three kelp species (Laminaria digitata, L. hyperborea, and L. ochroleuca). These species function as important habitat-forming foundation organisms in the northeast Atlantic and have distinct but overlapping latitudinal distributions and thermal niches. Under low-light conditions, summertime MHWs induced significant declines in biomass, blade surface area, and Fv/Fm values (a measure of photosynthetic efficiency) in the cool-water kelps L. digitata and L. hyperborea, albeit to varying degrees. Under high-light conditions, all species were largely resistant to simulated MHW activity. In springtime, MHWs had minimal impacts and in some cases promoted kelp performance, while reduced light availability resulted in lower growth rates. While some species were negatively affected by summer MHWs under low-light conditions (particularly L. digitata), they were generally resilient to MHWs under high-light conditions. As such, maintaining good environmental quality and water clarity may increase resilience of populations to summertime MHWs. Our study informs predictions of how habitat-forming foundation kelp species will be affected by interacting, concurrent stressors, typical of compound events that are intensifying under anthropogenic climate change.
引用
收藏
页码:481 / 495
页数:15
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