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利用海洋腹足类进行生物酸化监测。

Biomonitoring acidification using marine gastropods.

机构信息

Environmental and Life Sciences, Faculty of Science, Universiti Brunei Darussalam, Brunei Darussalam.

Geology Department, Faculty of Science, Minia University, El-Minia 61519, Egypt.

出版信息

Sci Total Environ. 2019 Nov 20;692:833-843. doi: 10.1016/j.scitotenv.2019.07.041. Epub 2019 Jul 15.

Abstract

Ocean acidification is mainly being monitored using data loggers which currently offer limited coverage of marine ecosystems. Here, we trial the use of gastropod shells to monitor acidification on rocky shores. Animals living in areas with highly variable pH (8.6-5.9) were compared with those from sites with more stable pH (8.6-7.9). Differences in site pH were reflected in size, shape and erosion patterns in Nerita chamaeleon and Planaxis sulcatus. Shells from acidified sites were shorter, more globular and more eroded, with both of these species proving to be good biomonitors. After an assessment of baseline weathering, shell erosion can be used to indicate the level of exposure of organisms to corrosive water, providing a tool for biomonitoring acidification in heterogeneous intertidal systems. A shell erosion ranking system was found to clearly discriminate between acidified and reference sites. Being spatially-extensive, this approach can identify coastal areas of greater or lesser acidification. Cost-effective and simple shell erosion ranking is amenable to citizen science projects and could serve as an early-warning-signal for natural or anthropogenic acidification of coastal waters.

摘要

海洋酸化主要通过数据记录仪进行监测,但目前该仪器对海洋生态系统的监测覆盖范围有限。本研究试用腹足纲动物贝壳来监测潮间带岩石海岸的酸化情况。研究比较了生活在 pH 值变化较大(8.6-5.9)区域的动物和生活在 pH 值较稳定(8.6-7.9)区域的动物。Nerita chamaeleon 和 Planaxis sulcatus 的贝壳大小、形状和侵蚀模式反映了其栖息地 pH 值的差异。酸化区域的贝壳更短、更球形且更易受侵蚀,这两种贝壳均可用作良好的生物监测材料。在对基线风化进行评估后,可根据贝壳侵蚀情况来指示生物暴露于腐蚀性水中的程度,为监测异质潮间带系统酸化提供了一种工具。研究发现,一种贝壳侵蚀分级系统可明确区分酸化和参照区域。这种方法具有空间扩展性,可识别出酸化程度更高或更低的沿海区域。成本效益高且简单的贝壳侵蚀分级方法适用于公民科学项目,可作为沿海水域自然或人为酸化的预警信号。

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