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Dynamics of Autotrophic Marine Planktonic Thaumarchaeota in the East China Sea

机译:东海自养性海洋浮游性丘陵古生物的动力学

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摘要

The ubiquitous and abundant distribution of ammonia-oxidizing Thaumarchaeota in marine environments is now well documented, and their crucial role in the global nitrogen cycle has been highlighted. However, the potential contribution of Thaumarchaeota in the carbon cycle remains poorly understood. Here we present for the first time a seasonal investigation on the shelf region (bathymetry≤200 m) of the East China Sea (ECS) involving analysis of both thaumarchaeal 16S rRNA and autotrophy-related genes (acetyl-CoA carboxylase gene, accA). Quantitative PCR results clearly showed a higher abundance of thaumarchaeal 16S and accA genes in late-autumn (November) than summer (August), whereas the diversity and community structure of autotrophic Thaumarchaeota showed no statistically significant difference between different seasons as revealed by thaumarchaeal accA gene clone libraries. Phylogenetic analysis indicated that shallow ecotypes dominated the autotrophic Thaumarchaeota in the ECS shelf (86.3% of total sequences), while a novel non-marine thaumarchaeal accA lineage was identified in the Changjiang estuary in summer (when freshwater plumes become larger) but not in autumn, implying that Changjiang freshwater discharge played a certain role in transporting terrestrial microorganisms to the ECS. Multivariate statistical analysis indicated that the biogeography of the autotrophic Thaumarchaeota in the shelf water of the ECS was influenced by complex hydrographic conditions. However, an in silico comparative analysis suggested that the diversity and abundance of the autotrophic Thaumarchaeota might be biased by the ‘universal’ thaumarchaeal accA gene primers Cren529F/Cren981R since this primer set is likely to miss some members within particular phylogenetic groups. Collectively, this study improved our understanding of the biogeographic patterns of the autotrophic Thaumarchaeota in temperate coastal waters, and suggested that new accA primers with improved coverage and sensitivity across phylogenetic groups are needed to gain a more thorough understanding of the role of the autotrophic Thaumarchaeota in the global carbon cycle.
机译:氨氧化梭菌在海洋环境中的普遍存在和丰富分布已得到充分证明,并且它们在全球氮循环中的关键作用也得到了强调。然而,尚不了解Thaumarchaeota在碳循环中的潜在贡献。在这里,我们首次提出了对东海(ECS)陆架区域(测深≤200m)的季节性调查,其中涉及拟南藻16S rRNA和自养相关基因(乙酰辅酶A羧化酶基因,accA)的分析。定量PCR结果清楚地表明,秋末(11月)比夏季(8月)的拟南芥16S和accA基因丰度更高,而自养型拟古藻的多样性和群落结构在不同季节之间没有统计学上的显着差异(如拟南芥accA基因所揭示)克隆库。系统发育分析表明,浅层生态型在ECS架上占自养型伞形藻的总数(占总序列的86.3%),而在夏季(当淡水羽流变大)的长江口处,在长江口发现了一种新的非海洋藻类accA谱系。 ,表明长江淡水排放在将陆地微生物运往生态系统中起了一定作用。多元统计分析表明,ECS陆架水体中自养丘陵藻的生物地理受到复杂的水文条件的影响。但是,计算机分析比较表明,自养性丘陵棘藻的多样性和丰度可能会受到“通用”拟南芥accA基因引物Cren529F / Cren981R的偏见,因为该引物组可能会错过特定系统发育组中的某些成员。总体而言,这项研究增进了我们对温带沿海水域自养丘陵藻生物地理分布的理解,并建议需要新的accA引物,以提高跨系统发育群体的覆盖率和敏感性,以更全面地了解自养丘陵古猿在水中的作用。全球碳循环。

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