GBR南部Heron Reef海水温度升高引起的阿氏Holothuria、氯氏Stichopus和edulis扶正时间的变化

Q1 Agricultural and Biological Sciences
Elizabeth Buccheri, M. Foellmer, B. Christensen, P. Langis, Stefan Ritter, Esther Wolf, A. S. Freeman
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引用次数: 10

摘要

海参可以通过消化底栖砂和生产碳酸钙来减轻气候变化的一些影响。在更温暖、酸性更强的海洋中,海参的预期生态效益取决于个体适应气候的能力和种群适应气候变化的能力。这项实验的目的是评估海水变暖对澳大利亚昆士兰州苍鹭礁上三种丰富的海参物种的影响程度。我们对三种海参(Holothuria atra, Stichopus chloronotus和Holothuria edulis)进行了行为分析。每个物种的个体都受到三种条件的影响,分别是当前的夏季温度,当前的冬季温度,以及与2100年未来海洋变暖一致的升高温度。海参的反应被评价为用恢复时间作为他们的压力水平和对变暖事件的总体耐受性的代理。三种海参对水温变化的反应不同:H. atra的翻身时间随温度变化而下降,S. chloronotus在高温和低温极端条件下的翻身时间更大,H. edulis的翻身时间始终保持相对恒定。我们的研究结果表明,这些物种中的每一个都可能对海洋变暖做出不同的反应,虽然有些物种可能能够继续在底栖生物群落中对抗气候变化,但其他物种的生态功能可能会下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Variation in Righting Times of Holothuria atra, Stichopus chloronotus, and Holothuria edulis in Response to Increased Seawater Temperatures on Heron Reef in the Southern GBR
Sea cucumbers can mitigate some impacts of climate change through digestion of benthic sands and production of calcium carbonate. The projected ecological benefits of sea cucumbers in warmer, more acidic oceans are contingent on the capacities of individuals to acclimate and populations to adapt to climatic changes. The goal of this experiment was to evaluate the degree to which warming waters would impact three abundant species of sea cucumbers on the Heron Reef in Queensland, Australia. We conducted a behavioral assay using three species of sea cucumbers, Holothuria atra, Stichopus chloronotus, and Holothuria edulis. Individuals from each species were subjected to three conditions mimicking current summer temperatures, current winter temperatures, and an elevated temperature consistent with future ocean warming by the year 2100. Sea cucumber reactions were evaluated using righting time as a proxy for their stress levels and overall tolerance of warming events. The three sea cucumber species reacted differently to water temperature changes: H. atra’s righting times declined with temperature, S. chloronotus had greater righting times at high and low temperature extremes, and H. edulis’s righting times remained relatively constant throughout. Our results suggest that each of these species might respond differently to ocean warming and while some may be able to continue to combat climate change in benthic communities, others may decline in ecological function.
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来源期刊
Journal of Marine Biology
Journal of Marine Biology Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
3.10
自引率
0.00%
发文量
3
审稿时长
18 weeks
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