...
首页> 外文期刊>Biogeosciences >Alkenone isotopes show evidence of active carbon concentrating mechanisms in coccolithophores as aqueous carbon dioxide concentrations fall below 7?μmol?L ?1
【24h】

Alkenone isotopes show evidence of active carbon concentrating mechanisms in coccolithophores as aqueous carbon dioxide concentrations fall below 7?μmol?L ?1

机译:链烯酮同位素显示在Coccolithophores中的活性炭浓缩机制,因为二氧化碳浓度低于7?μmol?1

获取原文

摘要

Coccolithophores and other haptophyte algae acquire the carbon required for metabolic processes from the water in which they live. Whether carbon is actively moved across the cell membrane via a carbon concentrating mechanism, or passively through diffusion, is important for haptophyte biochemistry. The possible utilization of carbon concentrating mechanisms also has the potential to over-print one proxy method by which ancient atmospheric CO 2 concentration is reconstructed using alkenone isotopes. Here I show that carbon concentrating mechanisms are likely used when aqueous carbon dioxide concentrations are below 7? μ mol?L ?1 . I compile published alkenone-based CO 2 reconstructions from multiple sites over the Pleistocene and recalculate them using a common methodology, which allows comparison to be made with ice core CO 2 records. Interrogating these records reveals that the relationship between proxy CO 2 and ice core CO 2 breaks down when local aqueous CO 2 concentration falls below 7? μ mol?L ?1 . The recognition of this threshold explains why many alkenone-based CO 2 records fail to accurately replicate ice core CO 2 records, and it suggests the alkenone proxy is likely robust for much of the Cenozoic when this threshold was unlikely to be reached in much of the global ocean.
机译:CoccolithoChores和其他触觉藻类从它们居住的水中获取代谢过程所需的碳。无论碳是否通过碳浓缩机制在细胞膜上积极移动,或通过扩散被动,对抗噬菌体生物化学是重要的。碳浓缩机构的可能利用还具有过度印刷的潜力,通过烷烯酮同位素重建古老的大气CO 2浓度。在这里,我表明,当二氧化碳水溶液低于7时,可能使用碳浓缩机制? μmol?l?1。 I编制来自多重位点的已发表的基于链烯酮的CO 2重建,并使用常用方法重新计算它们,这允许使用冰核CO 2记录进行比较。询问这些记录表明,当局部CO 2浓度低于7时,代理CO 2和冰核CO 2之间的关系破裂? μmol?l?1。对该阈值的识别说明了为什么许多链烯酮的CO 2记录未能准确复制冰核CO 2记录,并且它表明链烯酮代理对于许多新生代的许多阈值不太可能在大部分时间内达到时可能是强大的全球海洋。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号