Laboratory of Marine Microbiology, Graduate School of Agriculture, Kyoto University, Kitashirakawa Oiwake-cho, Sakyo-ku, Kyoto, 606-8502, Japan.
Department of Biological Sciences, Graduate School of Science, The University of Tokyo, 2-11-16 Yayoi, Bunkyo-ku, Tokyo, 113-0032, Japan.
Extremophiles. 2021 Jan;25(1):61-76. doi: 10.1007/s00792-020-01211-y. Epub 2021 Jan 7.
The microbial H-producing (hydrogenogenic) carbon monoxide (CO)-oxidizing activity by the membrane-associated CO dehydrogenase (CODH)/energy-converting hydrogenase (ECH) complex is an important metabolic process in the microbial community. However, the studies on hydrogenogenic carboxydotrophs had to rely on inherently cultivation and isolation methods due to their rare abundance, which was a bottleneck in ecological study. Here, we provided gene-targeted sequencing method for the diversity estimation of thermophilic hydrogenogenic carboxydotrophs. We designed six new degenerate primer pairs which effectively amplified the coding regions of CODH genes forming gene clusters with ECH genes (CODHech genes) in Firmicutes which includes major thermophilic hydrogenogenic carboxydotrophs in terrestrial thermal habitats. Amplicon sequencing by these primers using DNAs from terrestrial hydrothermal sediments and CO-gas-incubated samples specifically detected multiple CODH genes which were identical or phylogenetically related to the CODHech genes in Firmictes. Furthermore, we found that phylogenetically distinct CODHech genes were enriched in CO-gas-incubated samples, suggesting that our primers detected uncultured hydrogenogenic carboxydotrophs as well. The new CODH-targeted primers provided us with a fine-grained (~ 97.9% in nucleotide sequence identity) diversity analysis of thermophilic hydrogenogenic carboxydotrophs by amplicon sequencing and will bolster the ecological study of these microorganisms.
微生物产氢(产氢)一氧化碳(CO)-氧化活性通过膜相关的 CO 脱氢酶(CODH)/能量转换氢化酶(ECH)复合物是微生物群落中的一个重要代谢过程。然而,由于其稀有丰度,对产氢羧化菌的研究必须依赖于固有的培养和分离方法,这是生态研究的一个瓶颈。在这里,我们提供了一种针对嗜热产氢羧化菌多样性估计的基因靶向测序方法。我们设计了六个新的简并引物对,这些引物对有效地扩增了形成与 ECH 基因(CODHech 基因)基因簇的 CODH 基因的编码区,这些基因簇包含了陆地热生境中的主要嗜热产氢羧化菌。使用来自陆地热液沉积物和 CO 气体孵育样品的 DNA 通过这些引物进行扩增子测序,特异性地检测到多个 CODH 基因,这些基因与 Firmictes 中的 CODHech 基因相同或系统发育上相关。此外,我们发现,在 CO 气体孵育样品中富集了系统发育上不同的 CODHech 基因,这表明我们的引物也检测到了未培养的产氢羧化菌。新的 CODH 靶向引物通过扩增子测序为我们提供了对嗜热产氢羧化菌的精细 (~97.9%在核苷酸序列同一性)多样性分析,并将加强对这些微生物的生态研究。