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一种揭示古菌产甲烷菌 barkeri 低温适应策略的功能方法。

A functional approach to uncover the low-temperature adaptation strategies of the archaeon Methanosarcina barkeri.

机构信息

Microbial Ecology Laboratory, Microbiology, School of Natural Sciences, and Ryan Institute, National University of Ireland, Galway, Ireland.

出版信息

Appl Environ Microbiol. 2013 Jul;79(14):4210-9. doi: 10.1128/AEM.03787-12. Epub 2013 May 3.

Abstract

Low-temperature anaerobic digestion (LTAD) technology is underpinned by a diverse microbial community. The methanogenic archaea represent a key functional group in these consortia, undertaking CO2 reduction as well as acetate and methylated C1 metabolism with subsequent biogas (40 to 60% CH4 and 30 to 50% CO2) formation. However, the cold adaptation strategies, which allow methanogens to function efficiently in LTAD, remain unclear. Here, a pure-culture proteomic approach was employed to study the functional characteristics of Methanosarcina barkeri (optimum growth temperature, 37°C), which has been detected in LTAD bioreactors. Two experimental approaches were undertaken. The first approach aimed to characterize a low-temperature shock response (LTSR) of M. barkeri DSMZ 800(T) grown at 37°C with a temperature drop to 15°C, while the second experimental approach aimed to examine the low-temperature adaptation strategies (LTAS) of the same strain when it was grown at 15°C. The latter experiment employed cell viability and growth measurements (optical density at 600 nm [OD600]), which directly compared M. barkeri cells grown at 15°C with those grown at 37°C. During the LTSR experiment, a total of 127 proteins were detected in 37°C and 15°C samples, with 20 proteins differentially expressed with respect to temperature, while in the LTAS experiment 39% of proteins identified were differentially expressed between phases of growth. Functional categories included methanogenesis, cellular information processing, and chaperones. By applying a polyphasic approach (proteomics and growth studies), insights into the low-temperature adaptation capacity of this mesophilically characterized methanogen were obtained which suggest that the metabolically diverse Methanosarcinaceae could be functionally relevant for LTAD systems.

摘要

低温厌氧消化(LTAD)技术依赖于一个多样化的微生物群落。产甲烷古菌是这些生物群落中的一个关键功能群,它们进行 CO2 还原以及乙酸和甲基化 C1 代谢,随后形成沼气(40-60% CH4 和 30-50% CO2)。然而,允许产甲烷菌在 LTAD 中高效发挥作用的低温适应策略仍不清楚。在这里,采用纯培养蛋白质组学方法研究了已在 LTAD 生物反应器中检测到的 Methanosarcina barkeri(最适生长温度为 37°C)的功能特性。进行了两种实验方法。第一种方法旨在研究在 37°C 下生长的 Methanosarcina barkeri DSMZ 800(T) 受到 15°C 温度冲击时的低温应激反应(LTSR),而第二种实验方法则旨在研究同一菌株在 15°C 下生长时的低温适应策略(LTAS)。后一种实验采用细胞活力和生长测量(600nm 处的光密度 [OD600]),直接比较了在 15°C 下生长的 Methanosarcina barkeri 细胞和在 37°C 下生长的细胞。在 LTSR 实验中,在 37°C 和 15°C 样品中检测到 127 种蛋白质,其中 20 种蛋白质的表达与温度有关,而在 LTAS 实验中,在生长阶段之间有 39%的蛋白质表达差异。功能类别包括甲烷生成、细胞信息处理和伴侣蛋白。通过应用多相方法(蛋白质组学和生长研究),获得了对这种嗜温产甲烷菌低温适应能力的深入了解,这表明代谢多样化的 Methanosarcinaceae 可能对 LTAD 系统具有功能相关性。

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