Short-chain fatty acids (SCFAs) as potential resuscitation factors that promote the isolation and culture of uncultured bacteria in marine sediments.

IF 5.8 2区 生物学 Q1 MARINE & FRESHWATER BIOLOGY
Marine Life Science & Technology Pub Date : 2023-07-29 eCollection Date: 2023-08-01 DOI:10.1007/s42995-023-00187-w
Chun-Shui Sun, Liu-Yan Zhou, Qi-Yun Liang, Xiao-Man Wang, Yi-Xuan Lei, Zhen-Xing Xu, Feng-Qing Wang, Guan-Jun Chen, Zong-Jun Du, Da-Shuai Mu
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Abstract

Many marine bacteria are difficult to culture because they are dormant, rare or found in low-abundances. Enrichment culturing has been widely tested as an important strategy to isolate rare or dormant microbes. However, many more mechanisms remain uncertain. Here, based on 16S rRNA gene high-throughput sequencing and metabolomics technology, it was found that the short-chain fatty acids (SCFAs) in metabolites were significantly correlated with uncultured bacterial groups during enrichment cultures. A pure culture analysis showed that the addition of SCFAs to media also resulted in high efficiency for the isolation of uncultured strains from marine sediments. As a result, 238 strains belonging to 10 phyla, 26 families and 82 species were successfully isolated. Some uncultured rare taxa within Chlorobi and Kiritimatiellaeota were successfully cultured. Amongst the newly isolated uncultured microbes, most genomes, e.g. bacteria, possess SCFA oxidative degradation genes, and these features might aid these microbes in better adapting to the culture media. A further resuscitation analysis of a viable but non-culturable (VBNC) Marinilabiliales strain verified that the addition of SCFAs could break the dormancy of Marinilabiliales in 5 days, and the growth curve test showed that the SCFAs could shorten the lag phase and increase the growth rate. Overall, this study provides new insights into SCFAs, which were first studied as resuscitation factors in uncultured marine bacteria. Thus, this study can help improve the utilisation and excavation of marine microbial resources, especially for the most-wanted or key players.

Supplementary information: The online version contains supplementary material available at 10.1007/s42995-023-00187-w.

短链脂肪酸(SCFAs)是促进海洋沉积物中未培养细菌分离和培养的潜在复苏因子。
许多海洋细菌很难培养,因为它们处于休眠状态、稀有或丰度低。富集培养已被广泛测试为分离稀有或休眠微生物的重要策略。然而,还有许多机制仍不确定。在此,基于16S rRNA基因高通量测序和代谢组学技术,发现在富集培养过程中,代谢产物中的短链脂肪酸(SCFAs)与未培养的细菌群显著相关。纯培养分析表明,在培养基中添加SCFAs也能高效地从海洋沉积物中分离未培养菌株。结果成功分离出10门26科82种238株菌株。成功地培养了Chlorobi和Kiritimatiellaeota中一些未培养的稀有类群。在新分离的未培养微生物中,大多数基因组,如细菌,都具有SCFA氧化降解基因,这些特征可能有助于这些微生物更好地适应培养基。对一株活的但不可培养的(VBNC)Marinilabiliales菌株的进一步复苏分析证实,添加SCFAs可以在5天内打破Marinilabillales的休眠,生长曲线测试表明,SCFAs能够缩短滞后期,提高生长速率。总的来说,这项研究为SCFAs提供了新的见解,SCFAs最初是作为未培养海洋细菌的复苏因子进行研究的。因此,这项研究可以帮助提高海洋微生物资源的利用和挖掘,尤其是对最受欢迎或最关键的参与者来说。补充信息:在线版本包含补充材料,请访问10.1007/s42995-023-00187-w。
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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