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Culturing of “Unculturable” Subsurface Microbes: Natural Organic Carbon Source Fuels the Growth of Diverse and Distinct Bacteria From Groundwater

机译:培养“不耐药”地下微生物:天然有机碳源燃料从地下水中燃烧多种和不同细菌的生长

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摘要

Recovery and cultivation of diverse environmentally-relevant microorganisms from the terrestrial subsurface remain a challenge despite recent advances in modern molecular technology. Here, we applied complex carbon (C) sources, i.e., sediment dissolved organic matter (DOM) and bacterial cell lysate, to enrich groundwater microbial communities for 30 days. As comparisons, we also included enrichments amended with simple C sources including glucose, acetate, benzoate, oleic acid, cellulose, and mixed vitamins. Our results demonstrate that complex C is far more effective in enriching diverse and distinct microorganisms from groundwater than simple C. Simple C enrichments yield significantly lower biodiversity, and are dominated by few phyla (e.g., Proteobacteria and Bacteroidetes), while microcosms enriched with complex C demonstrate significantly higher biodiversity including phyla that are poorly represented in published culture collections (e.g., Verrucomicrobia, Planctomycetes, and Armatimonadetes). Subsequent isolation from complex C enrichments yielded 228 bacterial isolates representing five phyla, 17 orders, and 56 distinct species, including candidate novel, rarely cultivated, and undescribed organisms. Results from this study will substantially advance cultivation and isolation strategies for recovering diverse and novel subsurface microorganisms. Obtaining axenic representatives of “once-unculturable” microorganisms will enhance our understanding of microbial physiology and function in different biogeochemical niches of terrestrial subsurface ecosystems.
机译:尽管近期现代分子技术进步,但仍然是陆地地下各种环保微生物的恢复和培养仍然是挑战。在此,我们应用复杂的碳(C)来源,即沉积物溶解有机物(DOM)和细菌细胞裂解物,以富集地下水微生物群体30天。作为比较,我们还包括简单的C来源的富集,包括葡萄糖,醋酸盐,苯甲酸酯,油酸,纤维素和混合维生素。我们的结果表明,复杂的C在富集地下水的富集多样化和不同的微生物方面比简单的C.简单的C富集产量显着降低了生物多样性,并以少数植物(例如,噬菌体和细菌)为主,而富含综合C的微观症表现出明显更高的生物多样性,包括在公布的培养物收集中代表不当(例如,VerrucoMicrobia,Planctomycetes和ArmatimonaDetes)。从复合C浓缩的后续分离产生228个细菌分离物,其特征分离物代表五个植物,17个命令和56个不同物种,包括候选新颖,很少培养和未被级别的生物。本研究的结果将大大推进培养和隔离策略,以恢复多种和新的地下微生物。获得“刚性不淘汰”微生物的轴静电代表将提高我们对陆地地下生态系统不同生物地球化学利基的微生物生理学和功能的理解。

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