中国西南地区不同地热泉沉积物和邻近土壤中不同热菌的不完全反硝化表型。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Chrisabelle C Mefferd, Enmin Zhou, Cale O Seymour, Noel A Bernardo, Shreya Srivastava, Amanda J Bengtson, Jian-Yu Jiao, Hailiang Dong, Wen-Jun Li, Brian P Hedlund
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引用次数: 0

摘要

热菌属细菌的一些成员已被证明是不完全的反硝化菌,以亚硝酸盐(NO2-)或一氧化二氮(N2O)为末端。然而,嗜热菌属的整体反硝化能力仍然特征不清。在这里,我们描述了代表 10 个物种的 24 株菌株的不同反硝化表型和基因型,这些菌株都是从中国的各种地热系统中分离出来的。经证实,硝酸盐还原的最终产物是亚硝酸盐或一氧化二氮,而一氧化氮(NO)被推断为某些菌株的最终产物。大多数菌株产生一氧化二氮;未观察到完全的反硝化作用。反硝化表型与反硝化基因的存在基本一致,同一物种的菌株往往具有相同的反硝化表型和基本相同的反硝化基因簇。在三个Thermus brockianus和三个Thermus oshimai基因组中,nirS和nirK基因共存,这是一些反硝化Thermus菌株的独特特征,可能具有重要的生态学意义。这些结果表明,不完全反硝化表型在嗜热菌物种内部和物种之间都很突出,但存在差异。这里描述的不完全反硝化表型表明,在存在充足氧化无机氮供应的高温陆地生物群落中,Thermus 物种可能在联合反硝化中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Incomplete denitrification phenotypes in diverse Thermus species from diverse geothermal spring sediments and adjacent soils in southwest China.

Incomplete denitrification phenotypes in diverse Thermus species from diverse geothermal spring sediments and adjacent soils in southwest China.

Incomplete denitrification phenotypes in diverse Thermus species from diverse geothermal spring sediments and adjacent soils in southwest China.

Incomplete denitrification phenotypes in diverse Thermus species from diverse geothermal spring sediments and adjacent soils in southwest China.

A few members of the bacterial genus Thermus have been shown to be incomplete denitrifiers, terminating with nitrite (NO2-) or nitrous oxide (N2O). However, the denitrification abilities of the genus as a whole remain poorly characterized. Here, we describe diverse denitrification phenotypes and genotypes of a collection of 24 strains representing ten species, all isolated from a variety of geothermal systems in China. Confirmed terminal products of nitrate reduction were nitrite or N2O, while nitric oxide (NO) was inferred as the terminal product in some strains. Most strains produced N2O; complete denitrification was not observed. Denitrification phenotypes were largely consistent with the presence of denitrification genes, and strains of the same species often had the same denitrification phenotypes and largely syntenous denitrification gene clusters. Genes for nirS and nirK coexisted in three Thermus brockianus and three Thermus oshimai genomes, which is a unique hallmark of some denitrifying Thermus strains and may be ecologically important. These results show that incomplete denitrification phenotypes are prominent, but variable, within and between Thermus species. The incomplete denitrification phenotypes described here suggest Thermus species may play important roles in consortial denitrification in high-temperature terrestrial biotopes where sufficient supply of oxidized inorganic nitrogen exists.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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