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预测软体动物对海洋酸化影响的反应。

Predicting the response of molluscs to the impact of ocean acidification.

机构信息

School of Science and Health, University of Western Sydney, Hawkesbury K12, Locked Bag 1797, Penrith, Sydney, New South Wales 2751, Australia.

Industry and Investment NSW, Port Stephens Fisheries Centre, Taylors Beach, New South Wales 2316, Australia.

出版信息

Biology (Basel). 2013 Apr 2;2(2):651-92. doi: 10.3390/biology2020651.

Abstract

Elevations in atmospheric carbon dioxide (CO2) are anticipated to acidify oceans because of fundamental changes in ocean chemistry created by CO2 absorption from the atmosphere. Over the next century, these elevated concentrations of atmospheric CO2 are expected to result in a reduction of the surface ocean waters from 8.1 to 7.7 units as well as a reduction in carbonate ion (CO32-) concentration. The potential impact that this change in ocean chemistry will have on marine and estuarine organisms and ecosystems is a growing concern for scientists worldwide. While species-specific responses to ocean acidification are widespread across a number of marine taxa, molluscs are one animal phylum with many species which are particularly vulnerable across a number of life-history stages. Molluscs make up the second largest animal phylum on earth with 30,000 species and are a major producer of CaCO3. Molluscs also provide essential ecosystem services including habitat structure and food for benthic organisms (i.e., mussel and oyster beds), purification of water through filtration and are economically valuable. Even sub lethal impacts on molluscs due to climate changed oceans will have serious consequences for global protein sources and marine ecosystems.

摘要

大气二氧化碳(CO2)水平升高预计将使海洋酸化,因为 CO2 从大气中吸收导致海洋化学发生根本变化。在未来一个世纪,这些大气 CO2 浓度的升高预计将导致表层海洋的 pH 值从 8.1 降低到 7.7,同时碳酸盐离子(CO32-)浓度降低。这种海洋化学变化对海洋和河口生物和生态系统的潜在影响是全世界科学家日益关注的问题。尽管海洋酸化对许多海洋分类群的物种有特定的影响,但软体动物是一个动物门,许多物种在许多生活史阶段特别脆弱。软体动物是地球上第二大动物门,有 30000 个物种,是 CaCO3 的主要生产者。软体动物还提供重要的生态系统服务,包括为底栖生物(即贻贝和牡蛎床)提供生境结构和食物、通过过滤净化水,并且具有经济价值。即使是由于气候变化的海洋对软体动物造成的亚致死影响,也将对全球蛋白质来源和海洋生态系统产生严重后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab88/3960890/a1f01f33d84f/biology-02-00651-g001.jpg

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