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Microbial Eukaryote Diversity and Activity in the Water Column of the South China Sea Based on DNA and RNA High Throughput Sequencing

机译:DNA和RNA高通量测序的南海水域微生物真核生物多样性和活性

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To study the diversity and metabolic activity of microbial eukaryotes in the water column of the South China Sea, genomic DNA and RNA were co-extracted from samples collected down to bathyal depth at two sites. V9 regions of both SSU rRNA gene and its transcript (cDNA) were amplified and sequenced using high throughput sequencing. Our study revealed: (1) DNA and RNA datasets showed significant differences in microbial eukaryote community composition, with the variability between the two datasets for the same sample exceeding that between samples within each dataset, indicating that nucleic acid source overrode environmental factors in determining the composition of microeukaryotes; (2) despite the differences in community composition between the two datasets, both DNA and RNA revealed similar depth-related distribution patterns of microbial eukaryotes; (3) using the ratio of RNA: DNA as a proxy of relative metabolic activity, a depth-related pattern was found for the relative metabolic activity of some but not all groups of microbial eukaryotes, with the highest activity for the groups with depth-related pattern usually found in the middle water layers; and (4) the presence of live and active photoautotrophic microbial eukaryotes in the deep ocean was confirmed, indicating that they play an important role in controlling the deep-sea organic carbon pool. Overall, our study sheds light on the diversity and activity of microbial eukaryotes in the water column of a tropical oligotrophic ocean and their potential contributions in the downward transportation of organic material from the surface ocean to the deep via the biological pump.
机译:为了研究南海水柱中微生物真核生物的多样性和代谢活性,从采集到两个深度的水深的样品中共提取了基因组DNA和RNA。使用高通量测序对SSU rRNA基因及其转录本(cDNA)的V9区域进行扩增和测序。我们的研究显示:(1)DNA和RNA数据集显示微生物真核生物群落组成存在显着差异,同一样品的两个数据集之间的变异性超过每个数据集内的样品之间的变异性,表明核酸来源在确定生物真核生物中超越了环境因素。微型真核生物的组成; (2)尽管两个数据集的群落组成有所不同,但DNA和RNA都显示出相似的深度相关微生物真核生物分布模式; (3)以RNA:DNA的比率作为相对代谢活性的代表,发现某些微生物真核生物(并非全部)的相对代谢活性具有深度相关的模式,对于深度较深的组,活性最高。通常在中间水层中发现的相关模式; (4)证实了深海中存在活的和活性的光合自养微生物真核生物,表明它们在控制深海有机碳库中起着重要作用。总体而言,我们的研究揭示了热带寡营养海洋水柱中微生物真核生物的多样性和活性,以及​​它们在通过生物泵将有机物质从表层海洋向下输送到深层中的潜在作用。

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