海洋酸化
海胆
无脊椎动物
生态学
海洋学
无脊椎动物
钙化
生物
环境科学
全球变暖对海洋的影响
海水
深海
海床
绿海胆
海冰
形态学(生物学)
全球变化
海洋生物
地质学
碳循环
Spar平台
栖息地
海洋生境
气候变化
作者
Jonathan Y.S. Leung,Ivan Nagelkerken,Erin L. Pichler,Yujie Chen,Claire F. Jones,Zonghan Xie,Sean D. Connell
标识
DOI:10.1098/rspb.2025.1893
摘要
Ocean acidification can reduce the size of calcified structures produced by marine calcifiers, raising questions about their competitiveness and persistence in future oceans. Yet, size reduction in calcified structures may represent a plastic response to ocean acidification if these structures remain functional. To test this hypothesis and examine whether morphological plasticity can influence the functionality of calcified structures, we assessed the effects of ocean acidification on the morphological, mechanical and chemical properties of the calcified structures of a sea urchin species prevailing at natural CO 2 vents. We found that the rigid shells covering sea urchins’ bodies (‘tests’) were thinner and that they had smaller teeth and lower spine density at vents, but the mechanical performance of these calcified structures (mechanical resilience, wear resistance and bending strength) was maintained, possibly mediated by the capacity of sea urchins to sustain acid–base balance for calcification (i.e. increased Na/Ca). Our findings suggest that such morphological shifts in calcified structures may enable sea urchins to maintain structural performance under ocean acidification. Since ocean acidification is a slow process relative to the life cycle of sea urchins, some sea urchin species may acclimate, or even adapt, to ocean acidification so that their populations and ecological functions can persist in a future high-CO 2 world.
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