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热浪使沿压力梯度分布的海洋潮间带群落结构重组。

Heatwave restructures marine intertidal communities across a stress gradient.

机构信息

Department of Botany and Biodiversity Research Centre, University of British Columbia, Vancouver, BC, V6T 1Z4, Canada.

Hakai Institute, End of Kwakshua Channel, Calvert Island, BC, Canada.

出版信息

Ecology. 2023 May;104(5):e4027. doi: 10.1002/ecy.4027. Epub 2023 Mar 25.

Abstract

Significant questions remain about how ecosystems that are structured by abiotic stress will be affected by climate change. Warmer temperatures are hypothesized to shift species along abiotic gradients such that distributions track changing environments where physical conditions allow. However, community-scale impacts of extreme warming in heterogeneous landscapes are likely to be more complex. We investigated the impacts of a multiyear marine heatwave on intertidal community dynamics and zonation on a wave-swept rocky coastline along the Central Coast of British Columbia, Canada. Leveraging an 8-year time series with high seaweed taxonomic resolution (116 taxa) that was established 3 years prior to the heatwave, we document major shifts in zonation and abundance of populations that led to substantial reorganization at the community level. The heatwave was associated with shifts in primary production away from upper elevations through declines in seaweed cover and partial replacement by invertebrates. At low elevations, seaweed cover remained stable or recovered rapidly following decline, being balanced by increases in some species and decreases in others. These results illustrate that, rather than shifting community zonation uniformly along abiotic stress gradients, intense and lasting warming events may restructure patterns of ecological dominance and reduce total habitability of ecosystems, especially at extreme ends of pre-existing abiotic gradients.

摘要

关于受生物胁迫影响的生态系统将如何受到气候变化的影响,仍存在重大问题。有人假设,变暖的温度会使物种沿着非生物梯度移动,从而使分布与不断变化的环境相适应,而这些环境的物理条件允许物种生存。然而,在多风的崎岖地形中,极端变暖对群落规模的影响可能更加复杂。我们调查了多年海洋热浪对不列颠哥伦比亚省中部沿海水域潮间带群落动态和分区的影响,该地区多风浪,海岸线上遍布岩石。我们利用在热浪发生前 3 年建立的 8 年高海藻分类分辨率(116 个分类群)时间序列,记录了分区和种群丰度的重大变化,这些变化导致了群落水平的实质性重组。热浪导致初级生产力从高处转移,原因是海藻覆盖率下降,部分被无脊椎动物取代。在低处,海藻覆盖率在下降后保持稳定或迅速恢复,一些物种增加,另一些物种减少,从而达到平衡。这些结果表明,强烈而持久的变暖事件可能会重构生态优势格局,减少生态系统的总适宜性,尤其是在先前存在的非生物梯度的极端端,而不是沿着生物胁迫梯度均匀地改变群落分区。

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