Department of Biology, Stanford University, Hopkins Marine Station, Pacific Grove, CA 93950, USA.
Proc Natl Acad Sci U S A. 2011 Aug 30;108(35):14515-20. doi: 10.1073/pnas.1107789108. Epub 2011 Aug 15.
Ocean acidification is predicted to impact all areas of the oceans and affect a diversity of marine organisms. However, the diversity of responses among species prevents clear predictions about the impact of acidification at the ecosystem level. Here, we used shallow water CO(2) vents in the Mediterranean Sea as a model system to examine emergent ecosystem responses to ocean acidification in rocky reef communities. We assessed in situ benthic invertebrate communities in three distinct pH zones (ambient, low, and extreme low), which differed in both the mean and variability of seawater pH along a continuous gradient. We found fewer taxa, reduced taxonomic evenness, and lower biomass in the extreme low pH zones. However, the number of individuals did not differ among pH zones, suggesting that there is density compensation through population blooms of small acidification-tolerant taxa. Furthermore, the trophic structure of the invertebrate community shifted to fewer trophic groups and dominance by generalists in extreme low pH, suggesting that there may be a simplification of food webs with ocean acidification. Despite high variation in individual species' responses, our findings indicate that ocean acidification decreases the diversity, biomass, and trophic complexity of benthic marine communities. These results suggest that a loss of biodiversity and ecosystem function is expected under extreme acidification scenarios.
海洋酸化预计会影响海洋的各个领域,并影响多种海洋生物。然而,物种之间的反应多样性使得我们难以对酸化对生态系统层面的影响做出明确的预测。在这里,我们使用地中海浅水 CO₂喷口作为模型系统,研究了在石质珊瑚礁群落中海洋酸化对新兴生态系统的影响。我们在三个不同的 pH 区(环境、低和极低)中评估了原位底栖无脊椎动物群落,这些区域的海水 pH 值在连续梯度上存在均值和变异性的差异。我们发现极低 pH 区的分类群数量较少,分类均匀度降低,生物量较低。然而,pH 值区之间的个体数量没有差异,这表明通过对酸化有耐受性的小型分类群的种群爆发,存在密度补偿。此外,无脊椎动物群落的营养结构向更少的营养群和以通才为主导的方向转变,这表明随着海洋酸化,食物网可能会简化。尽管个别物种的反应存在很大差异,但我们的研究结果表明,海洋酸化会降低底栖海洋生物群落的多样性、生物量和营养复杂性。这些结果表明,在极端酸化的情况下,生物多样性和生态系统功能预计会丧失。