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首页> 外文期刊>Applied and Environmental Microbiology >Evolution of Thermotolerance in Hot Spring Cyanobacteria of the Genus Synechococcus
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Evolution of Thermotolerance in Hot Spring Cyanobacteria of the Genus Synechococcus

机译:Synechococcus属的温泉蓝细菌中耐热性的演变。

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The extension of ecological tolerance limits may be an important mechanism by which microorganisms adapt to novel environments, but it may come at the evolutionary cost of reduced performance under ancestral conditions. We combined a comparative physiological approach with phylogenetic analyses to study the evolution of thermotolerance in hot spring cyanobacteria of the genus Synechococcus. Among the 20 laboratory clones of Synechococcus isolated from collections made along an Oregon hot spring thermal gradient, four different 16S rRNA gene sequences were identified. Phylogenies constructed by using the sequence data indicated that the clones were polyphyletic but that three of the four sequence groups formed a clade. Differences in thermotolerance were observed for clones with different 16S rRNA gene sequences, and comparison of these physiological differences within a phylogenetic framework provided evidence that more thermotolerant lineages of Synechococcus evolved from less thermotolerant ancestors. The extension of the thermal limit in these bacteria was correlated with a reduction in the breadth of the temperature range for growth, which provides evidence that enhanced thermotolerance has come at the evolutionary cost of increased thermal specialization. This study illustrates the utility of using phylogenetic comparative methods to investigate how evolutionary processes have shaped historical patterns of ecological diversification in microorganisms.
机译:生态耐受极限的扩展可能是微生物适应新环境的重要机制,但可能以祖先条件下性能下降的进化代价为代价。我们将比较生理学方法与系统发育分析相结合,以研究 Synechococcus 属温泉蓝细菌中耐热性的演变。从沿俄勒冈州温泉热梯度采集的细菌中分离到的20个Synechococcus 实验室克隆中,鉴定出四个不同的16S rRNA基因序列。利用序列数据构建的系统发育树表明该克隆是多系的,但四个序列组中的三个形成了进化枝。在具有不同16S rRNA基因序列的克隆中观察到了耐热性的差异,并且在系统发育框架内比较这些生理差异提供了证据:的耐热性谱系由耐热性较低的祖先进化而来。这些细菌中温度极限的扩展与生长温度范围的减小相关,这提供了增强的耐热性以增加热专业化为代价的证据。这项研究说明了使用系统发育比较方法调查进化过程如何塑造微生物生态多样性的历史模式的实用性。

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