A diffusion-based integrative approach for culturing previously uncultured bacteria from marine sediments.

IF 5.3 2区 生物学 Q1 MARINE & FRESHWATER BIOLOGY
Marine Life Science & Technology Pub Date : 2024-08-12 eCollection Date: 2025-08-01 DOI:10.1007/s42995-024-00240-2
Tariq Ahmad, Sidra Erum Ishaq, Lewen Liang, Ruize Xie, Yinzhao Wang, Fengping Wang
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引用次数: 0

Abstract

Traditional cultivation methods with defined growth media can only isolate and cultivate a small number of microbes. However, much higher microbial diversity has been detected by cultivation-independent tools from a range of natural ecosystems. These represent a large unexplored pool of potentially novel taxa. In this study, a diffusion-based integrative cultivation approach (DICA) was developed to efficiently isolate novel taxonomic candidates from marine sediment. DICA combined a newly designed diffusion-based apparatus called a "microbial aquarium" with modified low-nutrient media. To determine the efficiency of DICA, cultivation results were compared with traditional cultivation approach (TCA). Both cultivation approaches resulted in the isolation of numerous representatives from the phyla Pseudomonadota, Actinomycetota, Bacteroidota, and Bacillota. However, the newly developed DICA also led to the successful cultivation of species from rarely cultivated phyla such as Verrucomicrobiota and Balneolota. Based on 16S rRNA analyses, the application of DICA resulted in the successful cultivation of 115 previously uncultured taxa out of a total of 196 isolates. Among these, 39 were identified at the genus level and 4 at the family level, showcasing a novelty ratio of 58%. Conversely, the TCA cultivated 12% (20/165) of novel isolates, with all at species level only. The isolated microbial diversity showed that species recovered by DICA belong to 12 different classes, twice the number produced by TCA. Overall, these results demonstrate that the newly designed DICA produces a high recovery of diverse and previously uncultured bacteria.

Supplementary information: The online version contains supplementary material available at 10.1007/s42995-024-00240-2.

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一种基于扩散的综合方法,用于培养以前未培养的海洋沉积物细菌。
传统的培养基培养方法只能分离培养少量的微生物。然而,从一系列自然生态系统中,通过与培养无关的工具检测到的微生物多样性要高得多。这代表了一个巨大的未开发的潜在新分类群池。本研究建立了一种基于扩散的综合培养方法(DICA),以有效地从海洋沉积物中分离新的分类候选者。DICA将新设计的一种名为“微生物水族馆”的扩散装置与改良的低营养培养基结合起来。为了确定DICA的效率,将栽培结果与传统栽培方法(TCA)进行了比较。这两种培养方法都分离出了假单胞菌门、放线菌门、拟杆菌门和芽孢杆菌门的许多代表。然而,新开发的DICA也导致了从很少被培养的门,如Verrucomicrobiota和Balneolota的物种的成功培养。基于16S rRNA分析,应用DICA成功培养了196个分离株中115个以前未培养的分类群。其中属级鉴定39个,科级鉴定4个,新颖率为58%。相反,TCA培养了12%(20/165)的新分离株,全部仅在物种水平上。分离的微生物多样性表明,DICA恢复的物种属于12个不同的类别,是TCA产生的数量的两倍。总的来说,这些结果表明,新设计的DICA产生了多种和以前未培养的细菌的高回收率。补充资料:在线版本提供补充资料,网址为10.1007/s42995-024-00240-2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Marine Life Science & Technology
Marine Life Science & Technology MARINE & FRESHWATER BIOLOGY-
CiteScore
9.60
自引率
10.50%
发文量
58
期刊介绍: Marine Life Science & Technology (MLST), established in 2019, is dedicated to publishing original research papers that unveil new discoveries and theories spanning a wide spectrum of life sciences and technologies. This includes fundamental biology, fisheries science and technology, medicinal bioresources, food science, biotechnology, ecology, and environmental biology, with a particular focus on marine habitats. The journal is committed to nurturing synergistic interactions among these diverse disciplines, striving to advance multidisciplinary approaches within the scientific field. It caters to a readership comprising biological scientists, aquaculture researchers, marine technologists, biological oceanographers, and ecologists.
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