Pollo Stephen M J, Adebusuyi Abigail A, Straub Timothy J, Foght Julia M, Zhaxybayeva Olga, Nesbø Camilla L
Department of Biological Sciences, University of Alberta, Edmonton, AB, Canada.
Vancouver Island University, Nanaimo, BC, Canada.
Extremophiles. 2017 Nov;21(6):963-979. doi: 10.1007/s00792-017-0956-9. Epub 2017 Sep 11.
Temperature is one of the defining parameters of an ecological niche. Most organisms thrive within a temperature range that rarely exceeds ~30 °C, but the deep subsurface bacterium Kosmotoga olearia can grow over a temperature range of 59 °C (20-79 °C). To identify genes correlated with this flexible phenotype, we compared transcriptomes of K. olearia cultures grown at its optimal 65 °C to those at 30, 40, and 77 °C. The temperature treatments affected expression of 573 of 2224 K. olearia genes. Notably, this transcriptional response elicits re-modeling of the cellular membrane and changes in metabolism, with increased expression of genes involved in energy and carbohydrate metabolism at high temperatures and up-regulation of amino acid metabolism at lower temperatures. At sub-optimal temperatures, many transcriptional changes were similar to those observed in mesophilic bacteria at physiologically low temperatures, including up-regulation of typical cold stress genes and ribosomal proteins. Comparative genomic analysis of additional Thermotogae genomes indicates that one of K. olearia's strategies for low-temperature growth is increased copy number of some typical cold response genes through duplication and/or lateral acquisition. At 77 °C one-third of the up-regulated genes are of hypothetical function, indicating that many features of high-temperature growth are unknown.
温度是生态位的决定性参数之一。大多数生物在很少超过约30°C的温度范围内茁壮成长,但地下深层细菌油橄榄嗜热栖热菌能在59°C(20 - 79°C)的温度范围内生长。为了鉴定与这种灵活表型相关的基因,我们比较了在其最适温度65°C下生长的油橄榄嗜热栖热菌培养物与在30°C、40°C和77°C下生长的培养物的转录组。温度处理影响了油橄榄嗜热栖热菌2224个基因中的573个基因的表达。值得注意的是,这种转录反应引发了细胞膜的重塑和代谢变化,高温下参与能量和碳水化合物代谢的基因表达增加,低温下氨基酸代谢上调。在次优温度下,许多转录变化与嗜温细菌在生理低温下观察到的变化相似,包括典型冷应激基因和核糖体蛋白的上调。对其他栖热菌基因组的比较基因组分析表明,油橄榄嗜热栖热菌低温生长的策略之一是通过复制和/或横向获得增加一些典型冷反应基因的拷贝数。在77°C时,上调基因中有三分之一具有假设功能,这表明高温生长的许多特征尚不清楚。