首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Protists decrease in size linearly with temperature: ca. 2.5 degrees C(-1).
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Protists decrease in size linearly with temperature: ca. 2.5 degrees C(-1).

机译:生物体的大小随温度线性降低:约。 2.5%C(-1)。

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摘要

An inverse relationship between organism size and rearing temperature is widely observed in ectotherms ('the temperature-size rule', TSR). This has rarely been quantified for related taxa, and its applicability to protists also required testing. Here, we quantify the relationship between temperature and mean cell volume within the protists by a meta-analysis of published data covering marine, brackish water and freshwater autotrophs and heterotrophs. In each of 44 datasets, a linear relationship between temperature and size could not be rejected, and a negative trend was found in 32 cases (20 gave significant negative regressions, p < 0.05). By combining 65 datasets, we revealed, for each 1 degrees C increase, a cell-size reduction of 2.5% (95% CI of 1.7-3.3%) of the volume observed at 15 degrees C. The value did not differ across taxa (amoebae, ciliates, diatoms, dinoflagellates, flagellates), habitats, modes of nutrition or combinations of these. The data are consistent with two hypotheses that are capable of explaining the TSR in ectotherms generally: (i) resource, especially respiratory gas, limitation; and (ii) fitness gains from dividing earlier as population growth increases. Using the above relationship we show how changes in cell numbers with temperature can be estimated from changes in biomass and vice versa; ignoring this relationship would produce a systematic error.
机译:在等温线中广泛观察到生物体大小与饲养温度之间的反比关系(“温度大小规则”,TSR)。对于相关的分类单元,很少对此进行量化,并且其对原生生物的适用性也需要进行测试。在这里,我们通过对涵盖海洋,苦咸水和淡水自养生物和异养生物的已发表数据的荟萃分析,量化了质体中温度与平均细胞体积之间的关系。在44个数据集中的每一个中,温度和大小之间的线性关系都不能被拒绝,并且在32个案例中发现了负趋势(20个给出了显着的负回归,p <0.05)。通过合并65个数据集,我们发现,每增加1摄氏度,细胞大小就会减少15%时在15摄氏度下观察到的体积的2.5%(95%CI为1.7-3.3%)。该值在各分类单元中没有差异(变形虫,纤毛虫,硅藻,鞭毛虫,鞭毛虫),栖息地,营养方式或这些的组合。这些数据与两个能够在总体上解释TSR的假设相一致:(i)资源,特别是呼吸气体的局限性; (ii)随着人口增长的增加,适度分配的收益会增加。利用上述关系,我们展示了如何根据生物量的变化估算细胞数随温度的变化,反之亦然;忽略这种关系会产生系统错误。

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