Division of Earth and Ocean Sciences, Duke University, Durham, USA.
Laboratoire des Sciences de l'Environnement Marin (LEMAR), UMR 6539 UBO/CNRS/IRD/IFREMER, Institut Universitaire Européen de la Mer (IUEM), Brest, France.
ISME J. 2018 May 1;12(11):2582-2595. doi: 10.1038/s41396-018-0163-4.
Marine net community production (NCP) tracks uptake of carbon by plankton communities and its potential transport to depth. Relationships between marine microbial community composition and NCP currently remain unclear despite their importance for assessing how different taxa impact carbon export. We conducted 16 and 18S rRNA gene (rDNA) sequencing on samples collected across the Western North Atlantic in parallel with high-resolution O/Ar-derived NCP measurements. Using an internal standard technique to estimate in-situ prokaryotic and eukaryotic rDNA abundances per liter, we employed statistical approaches to relate patterns of microbial diversity to NCP. Taxonomic abundances calculated using internal standards provided valuable context to traditional relative abundance metrics. A bloom in the Mid-Atlantic Bight featured high eukaryote abundances with low eukaryotic diversity and was associated with the harmful algal bloom-forming Aureococcus anophagefferens, phagotrophic algae, heterotrophic flagellates, and particle-associated bacteria. These results show that coastal Aureococcus blooms host a distinct community associated with regionally significant peaks in NCP. Meanwhile, weak relationships between taxonomy and NCP in less-productive waters suggest that productivity across much of this region is not linked to specific microplankton taxa.
海洋净群落生产力(NCP)可追踪浮游生物群落对碳的吸收及其向深处潜在运输的情况。尽管海洋微生物群落组成与 NCP 之间的关系对于评估不同类群对碳输出的影响至关重要,但目前仍不清楚它们之间的关系。我们在北大西洋西部进行了 16S 和 18S rRNA 基因(rDNA)测序,同时进行了高分辨率 O/Ar 衍生的 NCP 测量。我们使用内部标准技术来估计每升原位原核生物和真核生物 rDNA 的丰度,采用统计方法将微生物多样性模式与 NCP 联系起来。使用内部标准计算的分类丰度为传统相对丰度指标提供了有价值的背景信息。中大西洋湾的一次浮游生物爆发以高真核生物丰度和低真核生物多样性为特征,与有害藻类赤潮形成的 Aureococcus anophagefferens、吞噬藻类、异养鞭毛藻和颗粒相关细菌有关。这些结果表明,沿海 Aureococcus 爆发时会形成一个独特的群落,与 NCP 出现区域显著峰值有关。而在生产力较低的水域中,分类学与 NCP 之间的关系较弱,这表明该地区的大部分生产力与特定的微浮游生物类群无关。