首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Production and Transformation of Dissolved and Particulate Organic Matter as Indicated by Amino Acids in the Pearl River Estuary, China
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Production and Transformation of Dissolved and Particulate Organic Matter as Indicated by Amino Acids in the Pearl River Estuary, China

机译:中国珠江河口氨基酸所示的溶解和颗粒有机物的生产和转化

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摘要

Production and transformation of dissolved and particulate organic matter (DOM, POM) in estuaries regulate the carbon export from land to ocean, yet tracing their source and diagenetic status is challenging in these dynamic environments. Here we study the production, transport, and diagenetic status of DOM in the Pearl River Estuary (PRE), China, based on total dissolved amino acids, their enantiomers (D/L ratios), and other ancillary biogeochemical parameters with a complete coverage of upper, middle, and lower estuary. Inferred from amino acid composition and D/L ratios, DOM in the upper PRE was highly altered by bacteria, while the carbon yields of total dissolved amino acids were relatively high showing a conflicting pattern likely contributed by multiple sources including planktonic production, soil leachates, and sewage discharge. Conservative mixing between freshwater and seawater predominantly controlled DOM dynamics in the middle PRE. In contrast, the lower PRE was characterized by high planktonic production, leading to the accumulation of labile DOC in the surface water. The compositional pattern of amino acids differed significantly between dissolved and particulate phases, yet the diagenetic indices of POM and DOM were both relatively lower in the upper and middle PRE compared to the lower PRE, suggesting that primary production is a major driving factor in the lower PRE. Overall, our study emphasizes the highly dynamic and spatially heterogeneous nature of the PRE, and the results from molecular level characterization provide new insights into the complex sources, diagenesis, and transformation processes of DOM in different regions of the estuary, as well as its connection with POM.
机译:河口中溶解和颗粒状有机物质(DOM,POM)的生产和转化调节从土地到海洋的碳出口,但追踪它们的来源和成岩地位在这些动态环境中具有挑战性。在这里,我们研究了珠江口(Pre),中国的珠江河口(Pre),基于总溶解的氨基酸,它们的对映体(D / L比)和其他辅助生物地球化学参数,以及完全覆盖的Dom的生产,运输和成岩地位上部,中部和低级河口。从氨基酸组成和D / L比推断,上前的DOM由细菌高度改变,而总溶解的氨基酸的碳产率相对较高,显示出可能因包括浮游生物生产,土壤渗滤液的多种来源的矛盾模式,和污水排放。淡水和海水之间的保守搅拌主要是中间前的南部DOM动态。相比之下,较低的前的预先表征是高浮躁的生产,导致地表水中不稳定的蓄积。溶解和颗粒阶段之间的氨基酸的组成模式显着不同,但与较低的预数相比,上部和中间的POM和DOM的成岩索引均相对较低,这表明初级生产是较低的主要驱动因子前。总体而言,我们的研究强调了预先的高动态和空间异质性质,分子水平表征的结果为河口不同地区的复杂来源,成岩作用和转化过程提供了新的洞察,以及其连接用pom。

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  • 作者单位

    State Key Laboratory of Marine Environmental Science Xiamen University Xiamen China;

    Marine Science Institute University of Texas at Austin Austin TX USA;

    State Key Laboratory of Marine Environmental Science Xiamen University Xiamen China;

    State Key Laboratory of Marine Environmental Science Xiamen University Xiamen China;

    College of Food and Biological Engineering Jimei University Xiamen China;

    State Key Laboratory of Marine Environmental Science Xiamen University Xiamen China;

    State Key Laboratory of Marine Environmental Science Xiamen University Xiamen China;

    State Key Laboratory of Marine Environmental Science Xiamen University Xiamen China;

    State Key Laboratory of Marine Environmental Science Xiamen University Xiamen China;

    State Key Laboratory of Marine Environmental Science Xiamen University Xiamen China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物分布与生物地理学;
  • 关键词

    Production; Transformation; Dissolved;

    机译:生产;转型;溶解;

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