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首页> 外文期刊>Aquatic Microbial Ecology >Structuring effects of climate-related environmental factors on Antarctic microbial mat communities
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Structuring effects of climate-related environmental factors on Antarctic microbial mat communities

机译:气候相关环境因素对南极微生物垫群落结构的影响

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ABSTRACT: Both ground-based and satellite data show that parts of Antarctica have entered a period of rapid climate change, which already affects the functioning and productivity of limnetic ecosystems. To predict the consequences of future climate anomalies for lacustrine microbial communities, we not only need better baseline information on their biodiversity but also on the climate-related environmental factors structuring these communities. Here we applied denaturing gradient gel electrophoresis (DGGE) of the small subunit ribosomal DNA (SSU rDNA) to assess the genetic composition and distribution of Cyanobacteria and eukaryotes in 37 benthic microbial mat samples from east Antarctic lakes. The lakes were selected to span a wide range of environmental gradients governed by differences in lake morphology and chemical limnology across 5 ice-free oases. Sequence analysis of selected DGGE bands revealed a high degree of potential endemism among the Cyanobacteria (mainly represented by Oscillatoriales and Nostocales), and the presence of a variety of protists (alveolates, stramenopiles and green algae), fungi, tardigrades and nematodes, which corroborates previous microscopy-based observations. Variation partitioning analyses revealed that the microbial mat community structure is largely regulated by both geographical and local environmental factors of which salinity (and related variables), lake water depth and nutrient concentrations are of major importance. These 3 groups of environmental variables have previously been shown to change drastically in Antarctica in response to climate change. Together, these results have obvious consequences for predicting the trajectory of biodiversity under changing climate conditions and call for the continued assessment of the biodiversity of these unique ecosystems.
机译:摘要:地面和卫星数据都表明,南极洲的部分地区已进入快速气候变化时期,这已经影响了边缘生态系统的功能和生产力。为了预测未来气候异常对湖泊微生物群落的影响,我们不仅需要关于其生物多样性的更好的基线信息,而且还需要有关构成这些群落的与气候相关的环境因素的更好的基线信息。在这里,我们应用了小亚基核糖体DNA(SSU rDNA)的变性梯度凝胶电泳(DGGE)来评估南极东部湖泊37个底栖微生物垫样品中蓝细菌和真核生物的遗传组成和分布。这些湖泊被选择为跨越5种无冰绿洲中湖泊形态和化学盐度差异的广泛环境梯度。选定的DGGE条带的序列分析显示蓝藻(主要由 Oscillatoriales 和 Nostocales 代表)中高度的地方特有性。各种各样的原生生物(藻类,藻类和绿藻),真菌,节肢动物和线虫,证实了以前基于显微镜的观察结果。变异分区分析显示,微生物垫群落结构主要受地理和当地环境因素的控制,其中盐度(及相关变量),湖水深度和养分浓度是最重要的。先前已经证明,这三组环境变量在南极洲响应气候变化而急剧变化。总之,这些结果对于预测不断变化的气候条件下生物多样性的轨迹具有明显的影响,并要求继续评估这些独特生态系统的生物多样性。

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