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Genetic Variance in the Composition of Two Functional Groups (Diazotrophs and Cyanobacteria) from a Hypersaline Microbial Mat

机译:遗传变异中超盐微生物垫的两个功能组(重氮菌和蓝细菌)的组成。

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摘要

Examination of variation in ecological communities can lead to an understanding of the forces that structure communities, the consequences of change at the ecosystem level, and the relevant scales involved. This study details spatial and seasonal variability in the composition of nitrogen-fixing and cyanobacterial (i.e., oxygenic photosynthetic) functional groups of a benthic, hypersaline microbial mat from Salt Pond, San Salvador Island, Bahamas. This system shows extreme annual variability in the salinity of the overlying water and the extent of water coverage. Analysis of molecular variance and FST tests of genetic differentiation of nifH and cyanobacterial 16S rRNA gene clone libraries allowed for changes at multiple taxonomic levels (i.e., above, below, and at the species level) to inform the conclusions regarding these functional groups. Composition of the nitrogen-fixing community showed significant seasonal changes related to salinity, while cyanobacterial composition showed no consistent seasonal pattern. Both functional groups exhibited significant spatial variation, changing with depth in the mat and horizontally with distance from the shoreline. The patterns of change suggest that cyanobacterial composition was more insensitive to water stress, and consequently, cyanobacteria dominated the nitrogen-fixing community during dry months but gave way to a more diverse community of diazotrophs in wet months. This seasonal pattern may allow the mat community to respond quickly to water-freshening events after prolonged dry conditions (system recovery) and maintain ecosystem function in the face of disturbance during the wet season (system resilience).
机译:对生态群落变化的检验可以导致对构成群落的力量,生态系统水平的变化后果以及所涉及的相关规模的理解。这项研究详细说明了来自巴哈马圣萨尔瓦多岛底栖高盐度微生物垫的固氮和蓝细菌(即,光合光合)功能基组成的空间和季节变化。该系统显示上覆水的盐度和水覆盖范围的极端年度变化。对nifH和蓝细菌16S rRNA基因克隆文库的遗传分化进行分子变异和FST测试的分析允许在多个分类学水平(即以上,以下和物种水平)进行更改,以告知有关这些官能团的结论。固氮群落的组成显示出与盐度有关的明显的季节性变化,而蓝细菌的组成没有显示出一致的季节性模式。两个功能组均表现出显着的空间变化,随垫层深度和与海岸线的距离而水平变化。变化的模式表明,蓝细菌的组成对水分胁迫更加不敏感,因此,蓝细菌在干旱月份主导着固氮群落,而在潮湿月份则变成了更多样化的重氮营养群落。这种季节性模式可以使垫子群落在长期干旱条件下快速响应水清新事件(系统恢复),并在雨季遇到干扰时保持生态系统功能(系统弹性)。

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