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二氧化碳分压升高会改变海洋异养细菌群落组成和代谢潜力,以响应浮游植物有机物质的脉冲。

Elevated pCO alters marine heterotrophic bacterial community composition and metabolic potential in response to a pulse of phytoplankton organic matter.

机构信息

Department of Ecology, Evolution, and Marine Biology, Marine Science Institute, University of California, Santa Barbara, CA, USA.

Department of Biology, San Diego State University, San Diego, CA, USA.

出版信息

Environ Microbiol. 2019 Feb;21(2):541-556. doi: 10.1111/1462-2920.14484. Epub 2019 Jan 21.

Abstract

Factors that affect the respiration of organic carbon by marine bacteria can alter the extent to which the oceans act as a sink of atmospheric carbon dioxide. We designed seawater dilution experiments to assess the effect of pCO enrichment on heterotrophic bacterial community composition and metabolic potential in response to a pulse of phytoplankton-derived organic carbon. Experiments included treatments of elevated (1000 p.p.m.) and low (250 p.p.m.) pCO amended with 10 μmol L dissolved organic carbon from Emiliana huxleyi lysates, and were conducted using surface-seawater collected from the South Pacific Subtropical Gyre. To assess differences in community composition and metabolic potential, shotgun metagenomic libraries were sequenced from low and elevated pCO treatments collected at the start of the experiment and following exponential growth. Our results indicate bacterial communities changed markedly in response to the organic matter pulse over time and were significantly affected by pCO enrichment. Elevated pCO also had disproportionate effects on the abundance of sequences related to proton pumps, carbohydrate metabolism, modifications of the phospholipid bilayer, resistance to toxic compounds and conjugative transfer. These results contribute to a growing understanding of the effects of elevated pCO on bacteria-mediated carbon cycling during phytoplankton bloom conditions in the marine environment.

摘要

影响海洋细菌呼吸有机碳的因素会改变海洋作为大气二氧化碳汇的程度。我们设计了海水稀释实验,以评估 pCO2 富集对异养细菌群落组成和代谢潜力的影响,以响应浮游植物衍生有机碳的脉冲。实验包括用添加了从海链藻溶解有机物(10μmol/L)的高(1000ppm)和低(250ppm)pCO2 处理,实验使用从南太平洋亚热带环流收集的表层海水进行。为了评估群落组成和代谢潜力的差异,从实验开始时和指数生长后采集的低 pCO2 和高 pCO2 处理中进行了 shotgun 宏基因组文库测序。我们的结果表明,细菌群落随着时间的推移对有机物脉冲有明显的变化,并且受到 pCO2 富集的显著影响。高 pCO2 还对与质子泵、碳水化合物代谢、磷脂双层修饰、抗毒性化合物和共轭转移相关的序列丰度产生了不成比例的影响。这些结果有助于更好地了解在海洋环境中浮游植物爆发条件下,升高的 pCO2 对细菌介导的碳循环的影响。

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