Insights into the phylogenetic and metabolic diversity of Planctomycetota in anaerobic digesters and the isolation of novel Thermoguttaceae species.

IF 3.5 3区 生物学 Q2 MICROBIOLOGY
Dominika Klimek, Malte Herold, Inês Rosado Vitorino, Zuzana Dedova, Sebastien Lemaigre, Jimmy Roussel, Xavier Goux, Olga Maria Lage, Magdalena Calusinska
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Abstract

Studying bacteria in anaerobic digestion (AD) is crucial for optimizing microbial processes. While abundant taxa are often studied, less abundant groups may harbour novel metabolic potential. This study fills the gap by focusing on the Planctomycetota phylum, known to encode diverse carbohydrate-active enzymes (CAZymes). Despite their common presence in diverse aerobic and anaerobic environments, their role in AD is relatively unexplored. We utilized both culture-dependent and culture-independent techniques to investigate the phylogenetic and metabolic diversity of Planctomycetota within AD reactors. Our findings revealed that among the diverse planctomycetotal operational taxonomic units present, only a few are prevalent and abundant community members. Planctomycetota share functional traits with e.g. Verrucomicrobiota exhibiting distinct CAZyme gene repertoires that indicates specialization in degrading algal polysaccharides and glycoproteins. To explore the planctomycetotal metabolic capabilities, we monitored their presence in algal-fed digesters. Additionally, we isolated a strain from mucin-based medium, revealing its genetic potential for a mixotrophic lifestyle. Based on the genomic analysis, we propose to introduce the Candidatus Luxemburgiella decessa gen. nov. sp. nov., belonging to the Thermoguttaceae family within the Pirellulales order of the Planctomycetia class. This study enhances our understanding of Planctomycetota in AD by highlighting their phylogenetic diversity and metabolic capabilities.

厌氧消化池中植物菌门的系统发育和代谢多样性及热菌科新物种的分离。
研究厌氧消化(AD)中的细菌对于优化微生物过程至关重要。虽然丰富的类群经常被研究,但较少丰富的类群可能蕴藏着新的代谢潜力。这项研究通过关注plantomycetota门填补了这一空白,该门已知编码多种碳水化合物活性酶(CAZymes)。尽管它们在不同的有氧和厌氧环境中普遍存在,但它们在AD中的作用却相对未被探索。我们利用培养依赖性和非培养依赖性技术来研究AD反应器中plantomycetotta的系统发育和代谢多样性。我们的研究结果表明,在现有的各种植物菌总数的操作分类单位中,只有少数是普遍存在的和丰富的群落成员。plantomycetota与Verrucomicrobiota具有相同的功能特征,表现出不同的CAZyme基因库,表明专门降解藻类多糖和糖蛋白。为了探索植物菌的总代谢能力,我们监测了它们在以藻类为食的消化器中的存在。此外,我们从基于黏液的培养基中分离出一株菌株,揭示了其混合营养生活方式的遗传潜力。在基因组分析的基础上,我们提出引入Candidatus Luxemburgiella decessa gen. nov. sp. nov.,该植物属于植物生菌科Pirellulales目热菌科(Thermoguttaceae)。该研究通过强调植物的系统发育多样性和代谢能力,增强了我们对AD中植物菌群的理解。
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来源期刊
FEMS microbiology ecology
FEMS microbiology ecology 生物-微生物学
CiteScore
7.50
自引率
2.40%
发文量
132
审稿时长
3 months
期刊介绍: FEMS Microbiology Ecology aims to ensure efficient publication of high-quality papers that are original and provide a significant contribution to the understanding of microbial ecology. The journal contains Research Articles and MiniReviews on fundamental aspects of the ecology of microorganisms in natural soil, aquatic and atmospheric habitats, including extreme environments, and in artificial or managed environments. Research papers on pure cultures and in the areas of plant pathology and medical, food or veterinary microbiology will be published where they provide valuable generic information on microbial ecology. Papers can deal with culturable and non-culturable forms of any type of microorganism: bacteria, archaea, filamentous fungi, yeasts, protozoa, cyanobacteria, algae or viruses. In addition, the journal will publish Perspectives, Current Opinion and Controversy Articles, Commentaries and Letters to the Editor on topical issues in microbial ecology. - Application of ecological theory to microbial ecology - Interactions and signalling between microorganisms and with plants and animals - Interactions between microorganisms and their physicochemical enviornment - Microbial aspects of biogeochemical cycles and processes - Microbial community ecology - Phylogenetic and functional diversity of microbial communities - Evolutionary biology of microorganisms
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