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首页> 外文期刊>Environmental microbiology >Thermophilic microbial mats in a tropical geothermal location display pronounced seasonal changes but appear resilient to stochastic disturbance
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Thermophilic microbial mats in a tropical geothermal location display pronounced seasonal changes but appear resilient to stochastic disturbance

机译:热带地热位置的嗜热微生物垫表现出明显的季节性变化,但对随机干扰具有弹性

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We demonstrate for the first time a dynamic seasonality within thermophilic mat communities in a tropical geothermal spring. Biomass fluctuated such that it is greatest in the dry season, before falling drastically as the summer rains arrive, and then re-colonization culminates in a new climax in the following dry season. Species richness estimates based upon 16S rRNA gene environmental phylotypes mirrored this pattern, where those unique to the dry season disappear during the wet season only to reappear the following year, and vice versa. Relative abundance of some phototrophic phylotypes was also shown to vary seasonally. Environmental variables within the thermal environment that were most closely correlated to these variations were temperature and phosphate, with the latter a covariable to heavy seasonal tropical monsoon rainfall. Stochastic disturbance caused by a strong typhoon caused significant although temporary effects and both diversity and standing biomass recovered within a few months. Tropical hot spring communities clearly function under a fundamentally different set of abiotic variables from those in temperate locations which do not display seasonality. This is of particular relevance to bioprospecting efforts where targeting the most biodiverse niche is desired, because future sampling strategies for tropical thermal environments should consider diversity on temporal as well as spatial scales.
机译:我们首次展示了热带地热泉在嗜热垫群落中的动态季节性。生物质的波动使其在旱季达到最大,然后随着夏季降雨的来临而急剧下降,然后在接下来的旱季重新定殖达到新的高潮。根据16S rRNA基因环境系统型进行的物种丰富度估算反映了这种模式,旱季特有的物种丰富度在雨季期间消失,仅次年再次出现,反之亦然。还显示了一些光养性系统型的相对丰度随季节变化。与这些变化最密切相关的热环境中的环境变量是温度和磷酸盐,后者与大的季节性热带季风降雨有协变量。强台风引起的随机扰动虽然在短短几个月内恢复了暂时的影响,但多样性和固定生物量却产生了重大影响。很明显,热带温泉社区在与非温带地区的非生物变量完全不同的非生物变量集下起作用。这与需要进行生物多样性研究的生物勘探工作特别相关,因为未来热带热环境的采样策略应考虑时间和空间尺度的多样性。

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