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微生物在钴胺素偏好方面表现出广泛的多样性。

Microbes display broad diversity in cobamide preferences.

作者信息

Mok Kenny C, Sokolovskaya Olga M, Deutschbauer Adam M, Carlson Hans K, Taga Michiko E

机构信息

Department of Plant and Microbial Biology, University of California, Berkeley, Berkeley, California, USA.

Environmental Genomics and Systems Biology Division, Lawrence Berkeley National Laboratory, Berkeley, California, USA.

出版信息

mSystems. 2025 Apr 22;10(4):e0140724. doi: 10.1128/msystems.01407-24. Epub 2025 Mar 21.

Abstract

Cobamides, the vitamin B (cobalamin) family of cofactors, are used by most organisms but produced by only a fraction of prokaryotes, and are thus considered key shared nutrients among microbes. Cobamides are structurally diverse, with multiple different cobamides found in most microbial communities. The ability to use different cobamides has been tested for several bacteria and microalgae, and nearly all show preferences for certain cobamides. This approach is limited by the commercial unavailability of cobamides other than cobalamin. Here, we have extracted and purified seven commercially unavailable cobamides to characterize bacterial cobamide preferences based on growth in specific cobamide-dependent conditions. The tested bacteria include engineered strains of , , and expressing native or heterologous cobamide-dependent enzymes, cultured under conditions that functionally isolate specific cobamide-dependent processes such as methionine synthesis. Comparison of these results to those of previous studies of diverse bacteria and microalgae revealed that a broad diversity of cobamide preferences exists not only across different organisms but also between different cobamide-dependent metabolic pathways within the same organism. The microbes differed in the cobamides that support growth most efficiently, cobamides that do not support growth, and the minimum cobamide concentrations required for growth. The latter differ by up to four orders of magnitude across organisms from different environments and by up to 20-fold between cobamide-dependent enzymes within the same organism. Given that cobamides are shared, required for use of specific growth substrates, and essential for central metabolism in certain organisms, cobamide preferences likely impact community structure and function.IMPORTANCENearly all bacteria are found in microbial communities with tens to thousands of other species. Molecular interactions such as metabolic cooperation and competition are key factors underlying community assembly and structure. Cobamides, the vitamin B family of enzyme cofactors, are one such class of nutrients, produced by only a minority of prokaryotes but required by most microbes. A unique aspect of cobamides is their broad diversity, with nearly 20 structural forms identified in nature. Importantly, this structural diversity impacts growth as most bacteria that have been tested show preferences for specific cobamide forms. We measured cobamide-dependent growth in several model bacteria and compared the results to those of previous analyses of cobamide preference. We found that cobamide preferences vary widely across bacteria, showing the importance of characterizing these aspects of cobamide biology to understand the impact of cobamides on microbial communities.

摘要

钴胺素,即维生素B(钴胺)类辅因子,被大多数生物体所利用,但仅由一小部分原核生物产生,因此被认为是微生物之间关键的共享营养素。钴胺素在结构上具有多样性,在大多数微生物群落中发现了多种不同的钴胺素。已经对几种细菌和微藻利用不同钴胺素的能力进行了测试,几乎所有细菌和微藻都表现出对某些钴胺素的偏好。然而,除了钴胺素之外,其他钴胺素在商业上难以获得,这限制了这种研究方法。在此,我们提取并纯化了七种无法通过商业途径获得的钴胺素,以根据在特定钴胺素依赖条件下的生长情况来表征细菌对钴胺素的偏好。所测试的细菌包括表达天然或异源钴胺素依赖酶的工程菌株,在功能上分离特定钴胺素依赖过程(如甲硫氨酸合成)的条件下进行培养。将这些结果与之前对多种细菌和微藻的研究结果进行比较后发现,不仅不同生物体之间存在广泛的钴胺素偏好差异,而且同一生物体内不同的钴胺素依赖代谢途径之间也存在差异。这些微生物在最能支持生长的钴胺素、不支持生长的钴胺素以及生长所需的最低钴胺素浓度方面存在差异。在来自不同环境的生物体中,后者的差异高达四个数量级,而在同一生物体内的钴胺素依赖酶之间,差异则高达20倍。鉴于钴胺素是共享的,是使用特定生长底物所必需的,并且对某些生物体的中心代谢至关重要,因此钴胺素偏好可能会影响群落结构和功能。

重要性

几乎所有细菌都存在于与其他数十到数千个物种组成的微生物群落中。诸如代谢合作与竞争等分子相互作用是群落组装和结构的关键因素。钴胺素,即维生素B类酶辅因子,就是这样一类营养素,仅由少数原核生物产生,但大多数微生物都需要。钴胺素的一个独特之处在于其广泛的多样性,自然界中已鉴定出近20种结构形式。重要的是,这种结构多样性会影响生长,因为大多数经过测试的细菌都表现出对特定钴胺素形式的偏好。我们测量了几种模式细菌中钴胺素依赖的生长情况,并将结果与之前对钴胺素偏好的分析结果进行了比较。我们发现,不同细菌之间的钴胺素偏好差异很大,这表明了解钴胺素生物学的这些方面对于理解钴胺素对微生物群落的影响非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a26/12013260/767935112ec4/msystems.01407-24.f001.jpg

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