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鸟类的生活史、免疫力、佩托悖论与肿瘤

Life history, immunity, Peto's paradox and tumours in birds.

作者信息

Møller A P, Erritzøe J, Soler J J

机构信息

Ecologie, Systématique Evolution, CNRS UMR 8079, Université Paris-Sud, Orsay Cedex, France.

Taps Old Rectory, Christiansfeld, Denmark.

出版信息

J Evol Biol. 2017 May;30(5):960-967. doi: 10.1111/jeb.13060. Epub 2017 Mar 29.

Abstract

Cancer and tumours may evolve in response to life-history trade-offs between growth and duration of development on one hand, and between growth and maintenance of immune function on the other. Here, we tested whether (i) bird species with slow developmental rates for their body size experience low incidence of tumours because slow development allows for detection of rapid proliferation of cell lineages. We also test whether (ii) species with stronger immune response during development are more efficient at detecting tumour cells and hence suffer lower incidence of tumours. Finally, we tested Peto's paradox, that there is a positive relationship between tumour incidence and body mass. We used information on developmental rates and body mass from the literature and of tumour incidence (8468 birds) and size of the bursa of Fabricius for 7659 birds brought to a taxidermist in Denmark. We found evidence of the expected negative relationship between incidence of tumours and developmental rates and immunity after controlling for the positive association between tumour incidence and body size. These results suggest that evolution has modified the incidence of tumours in response to life history and that Peto's paradox may be explained by covariation between body mass, developmental rates and immunity.

摘要

癌症和肿瘤可能会因生长与发育持续时间之间、生长与免疫功能维持之间的生活史权衡而发生演变。在此,我们测试了:(i)体型发育速度缓慢的鸟类肿瘤发病率是否较低,因为发育缓慢能让机体检测到细胞谱系的快速增殖。我们还测试了:(ii)发育过程中免疫反应较强的物种在检测肿瘤细胞方面是否更高效,因此肿瘤发病率较低。最后,我们测试了佩托悖论,即肿瘤发病率与体重之间存在正相关关系。我们利用文献中有关发育速度和体重的信息,以及丹麦一家标本制作店收到的7659只鸟类的肿瘤发病率(8468只鸟)和法氏囊大小的数据。在控制了肿瘤发病率与体型之间的正相关关系后,我们发现了肿瘤发病率与发育速度及免疫力之间预期的负相关关系的证据。这些结果表明,进化已根据生活史改变了肿瘤发病率,佩托悖论可能可以通过体重、发育速度和免疫力之间的协变来解释。

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