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Metabolic responses to elevated <i>p</i> CO <sub>2</sub> in the gills of the Pacific Oyster ( <i>Magallana gigas</i> ) using a GC-TOF-MS-based metabolomics approach

2018-04-18

Abstract excerpt

Rising atmospheric carbon dioxide (CO 2 ), primarily from human fossil fuel combustion and cement production, are resulting in increasing absorption of CO 2 by the oceans, which has led to a decline in ocean pH in a process known as ocean acidification (OA). There is a growing body of evidence demonstrating the potential effect of OA on life-history traits of marine organisms. Consequently, gas chromatography ti...

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Literature Corpus work
428a6fa6-752a-541a-a5c5-bc4c2107c79a
DOI
10.7287/peerj.preprints.26866v1
Open publication

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Metabolic responses to elevated <i>p</i> CO <sub>2</sub> in the gills of the Pacific Oyster ( <i>Magallana gigas</i> ) using a GC-TOF-MS-based metabolomics approachDOI 10.7287/peerj.preprints.26866v1
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