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Following Rapoport's Rule: the geographic range and genome size of bacterial taxa decline at warmer latitudes

机译:rapoport的规则之后:在纬度的温暖的地理范围和细菌分类群的地理范围和基因组大小

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摘要

We sought to test whether stream bacterial communities conform to Rapoport's Rule, a pattern commonly observed for plants and animals whereby taxa exhibit decreased latitudinal range sizes closer to the equator. Using a DNA sequencing approach, we explored the biogeography of biofilm bacterial communities in 204 streams across a approximate to 1000 km latitudinal gradient. The range sizes of bacterial taxa were strongly correlated with latitude, decreasing closer to the equator, which coincided with a greater than fivefold increase in bacterial taxonomic richness. The relative richness and range size of bacteria were associated with spatially correlated variation in temperature and rainfall. These patterns were observed despite enormous variability in catchment environmental characteristics. Similar results were obtained when restricting the same analyses to native forest catchments, thereby controlling for spatial biases in land use. We analysed genomic data from approximate to 500 taxa detected in this study, for which data were available and found that bacterial communities at cooler latitudes also tended to possess greater potential metabolic potential. Collectively, these data provide the first evidence of latitudinal variation in the range size distributions of freshwater bacteria, a trend which may be determined, in part, by a trade-off between bacterial genome size and local variation in climatic conditions.
机译:我们试图测试流细菌社区是否符合Rapoport的规则,植物和动物通常观察到的模式,其中征草呈现较近赤道的纬度范围尺寸。使用DNA测序方法,我们探讨了204个流的生物膜细菌社区的生物地理,横跨1000公里的纬度梯度。细菌分类群的范围尺寸与纬度强烈相关,较近赤道较近,这与细菌分类性丰富的细菌分类率大于五倍。细菌的相对丰富性和范围大小与空间相关的温度和降雨变化相关。尽管集水环境特征的变异性巨大变异,但观察了这些模式。当限制对本地森林集水区的相同分析时获得了类似的结果,从而控制土地使用中的空间偏差。我们分析了本研究中检测到的500个近似检测到的基因组数据,其中可获得数据,并发现冷却器纬度的细菌群落也倾向于具有更大的潜在代谢潜力。总的来说,这些数据提供了淡水细菌的范围大小分布的第一种证据,该趋势可以部分地通过细菌基因组大小与气候条件的局部变异之间进行折衷。

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  • 来源
    《Environmental microbiology 》 |2017年第8期| 共11页
  • 作者单位

    Univ Auckland Sch Biol Sci Private Bag 92019 Auckland New Zealand;

    Univ Auckland Sch Biol Sci Private Bag 92019 Auckland New Zealand;

    Univ Auckland Sch Biol Sci Private Bag 92019 Auckland New Zealand;

    Auckland Univ Technol Sch Sci Private Bag 92006 Auckland 1142 New Zealand;

    Auckland Univ Technol Sch Sci Private Bag 92006 Auckland 1142 New Zealand;

    Care of Jenkins M Auckland 1010 New Zealand;

    Univ Colorado Boulder Dept Ecol &

    Evolutionary Biol Boulder CO 80309 USA;

    Univ Colorado Boulder Dept Ecol &

    Evolutionary Biol Boulder CO 80309 USA;

    Univ Auckland Sch Biol Sci Private Bag 92019 Auckland New Zealand;

    Univ Auckland Sch Biol Sci Private Bag 92019 Auckland New Zealand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学 ;
  • 关键词

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