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Temperature and pathogen exposure act independently to drive host phenotypic trajectories

机译:温度和病原体暴露独立起来,以驱动宿主表型轨迹

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摘要

Natural populations are experiencing an increase in the occurrence of both thermal stress and disease outbreaks. How these two common stressors interact to determine host phenotypic shifts will be important for population persistence, yet a myriad of different traits and pathways are a target of both stressors, making generalizable predictions difficult to obtain. Here, using the host Daphnia magna and its bacterial pathogen Pasteuria ramosa, we tested how temperature and pathogen exposure interact to drive shifts in multivariate host phenotypes. We found that these two stressors acted mostly independently to shape host phenotypic trajectories, with temperature driving a faster pace of life by favouring early development and increased intrinsic population growth rates, while pathogen exposure impacted reproductive potential through reductions in lifetime fecundity. Studies fo-cussed on extreme thermal stress are increasingly showing how pathogen exposure can severely hamper the thermal tolerance of a host. However, our results suggest that under milder thermal stress, and in terms of life-history traits, increases in temperature might not exacerbate the impact of pathogen exposure on host performance, and vice versa.
机译:自然群体正在经历热应激和疾病爆发的发生的增加。这两个常见的压力源是如何相互作用的,以确定宿主表型转变对于人口持久性是重要的,但多种不同的特征和途径是两个压力源的目标,使得难以获得的预测难以获得。在这里,使用宿主Daphnia Magna及其细菌病原体脊髓氨酸ramosa,我们测试了温度和病原体暴露在多元宿主表型中的驱动变换。我们发现这两个压力源主要独立地形成宿主表型轨迹,通过有利于早期发展和增加的内在人口生长速率,温度驱动生命速度更快,而病原体暴露通过减少寿命繁殖会产生繁殖潜力。对极端热应力的研究越来越多地显示病原体暴露会如何严重阻碍主体的热容差。然而,我们的结果表明,在较温和的热应力下,在生命历史的特征方面,温度的增加可能不会加剧病原体暴露对主机性能的影响,反之亦然。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|2006-2006|共1页
  • 作者单位

    School of Biological Sciences Monash University Melbourne VIC 3800 Australia;

    School of Biological Sciences Monash University Melbourne VIC 3800 Australia;

    School of Biological Sciences Monash University Melbourne VIC 3800 Australia;

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  • 正文语种 eng
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