School of Life Sciences, University of Nevada, Las Vegas, Las Vegas, NV, USA.
School of Earth Sciences, Yunnan University, Kunming, People's Republic of China.
Extremophiles. 2022 Jul 8;26(2):23. doi: 10.1007/s00792-022-01272-1.
A few members of the bacterial genus Thermus have been shown to be incomplete denitrifiers, terminating with nitrite (NO) or nitrous oxide (NO). 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 NO, while nitric oxide (NO) was inferred as the terminal product in some strains. Most strains produced NO; 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.
一些嗜热菌属的细菌已被证明是不完全反硝化菌,其反硝化作用终止于亚硝酸盐(NO )或一氧化二氮(NO )。然而,该属的整体反硝化能力仍未得到充分描述。在这里,我们描述了来自中国各种地热系统的 24 株代表 10 个种的细菌的多样化的反硝化表型和基因型。经证实,硝酸盐还原的终产物为亚硝酸盐或 NO ,而在一些菌株中,一氧化氮(NO )被推断为终产物。大多数菌株产生 NO ;未观察到完全反硝化。反硝化表型在很大程度上与反硝化基因的存在一致,同一物种的菌株通常具有相同的反硝化表型和大致相同的反硝化基因簇。nirS 和 nirK 基因共存于三个 Thermus brockianus 和三个 Thermus oshimai 基因组中,这是一些反硝化嗜热菌菌株的独特特征,可能在生态学上很重要。这些结果表明,不完全反硝化表型在 Thermus 属内和属间是普遍存在的,但具有可变性。这里描述的不完全反硝化表型表明,Thermus 物种可能在存在充足氧化无机氮的高温陆地生物区系中,在协同反硝化过程中发挥重要作用。