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首页> 外文期刊>Environmental microbiology >Archaeal amoA gene diversity points to distinct biogeography of ammonia-oxidizing Crenarchaeota in the ocean
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Archaeal amoA gene diversity points to distinct biogeography of ammonia-oxidizing Crenarchaeota in the ocean

机译:古细菌amoA基因多样性指向海洋中氨氧化Crenarchaeota的独特生物地理学

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摘要

Mesophilic ammonia-oxidizing Archaea (AOA) are abundant in a diverse range of marine environments, including the deep ocean, as revealed by the quantification of the archaeal amoA gene encoding the alpha-subunit of the ammonia monooxygenase. Using two different amoA primer sets, two distinct ecotypes of marine Crenarchaeota Group I (MCGI) were detected in the waters of the tropical Atlantic and the coastal Arctic. The HAC-AOA ecotype (high ammonia concentration AOA) was ≈8000 times and 15 times more abundant in the coastal Arctic and the top 300m layer of the open equatorial Atlantic, respectively, than the LAC-AOA (low ammonia concentration AOA) ecotype. In contrast, the LAC-AOA ecotype dominated the lower meso- and bathypelagic waters of the tropical Atlantic (≈50 times more abundant than the HAC-AOA) where ammonia concentrations are well below the detection limit using conventional spectrophotometric or fluorometric methods. Cluster analysis of the sequences from the clone libraries obtained by the two amoA primer sets revealed two phylogenetically distinct clusters. Taken together, our results suggest the presence of two ecotypes of archaeal ammonia oxidizers corresponding to the medium (1.24μM on average in the coastal Arctic) and low ammonia concentration (<0.01μM) in the shallow and the deep waters respectively.
机译:中性氨氧化古生菌(AOA)在包括深海在内的各种海洋环境中都很丰富,这是通过对编码氨单加氧酶的α-亚基的古生amoA基因进行定量分析发现的。使用两种不同的amoA引物组,在热带大西洋和北极沿海水域中发现了两种不同的海洋Crenarchaeota I组(MCGI)生态型。 HAC-AOA生态型(高氨浓度AOA)比LAC-AOA生态型(氨水浓度低AOA)高约8000倍,在赤道大西洋大西洋沿岸和最上层300m层高15倍。相比之下,LAC-AOA生态型在热带大西洋的中低层和深海水中占主导地位(比HAC-AOA丰富约50倍),其中氨的浓度远低于使用常规分光光度法或荧光法的检测极限。对来自由两个amoA引物组获得的克隆文库中的序列进行的聚类分析揭示了两个系统发育上不同的聚类。两者合计,我们的结果表明存在两种生态型的古细菌氨氧化剂,分别对应于浅水区和深水区的中度(沿海北极地区平均为1.24μM)和低氨浓度(<0.01μM)。

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