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毒力的进化:产孢寄生虫中的共感染与繁殖体产生

Evolution of virulence: coinfection and propagule production in spore-producing parasites.

作者信息

Lively Curtis M

机构信息

Department of Biology, Indiana University, Bloomington, IN 47405, USA.

出版信息

BMC Evol Biol. 2005 Nov 10;5:64. doi: 10.1186/1471-2148-5-64.

Abstract

BACKGROUND

The evolution of within-host growth rates by parasites is expected to depend on a trade-off between propagule production and virulence. The presence of coinfections, however, is thought to alter this trade-off, and hence alter the evolutionarily stable strategy (ESS) for the parasite. Here I consider a model wherein the number of coinfections that are identical by descent can depend on the parasite's reproductive strategy. Transmission success was treated as being either a negative-linear or a negative-exponential function of the total number of propagules produced by all coinfections.

RESULTS

Increasing the number of unrelated coinfections either selected for a decrease in reproductive output by the parasite (linear case), or had no effect on the ESS (exponential case). Nonetheless, the total number of propagules produced within each host increased in both cases. Increasing the relatedness among coinfections, however, selected for reductions in parasite reproduction in both cases.

CONCLUSION

Unrelated coinfection may increase overall parasite virulence, but the result stems from adding more infections rather than to more aggressive growth by the individual infections. However, all else being equal, if the coinfections are more related than expected by chance alone, then the total reproductive output by all coinfections would be expected to be reduced, resulting in reduced virulence.

摘要

背景

寄生物在宿主体内生长速率的演变预计取决于繁殖体产生与毒力之间的权衡。然而,共感染的存在被认为会改变这种权衡,从而改变寄生物的进化稳定策略(ESS)。在此,我考虑一个模型,其中通过遗传相同的共感染数量可能取决于寄生物的繁殖策略。传播成功率被视为所有共感染产生的繁殖体总数的负线性或负指数函数。

结果

增加无关共感染的数量要么导致寄生物繁殖输出减少(线性情况),要么对进化稳定策略没有影响(指数情况)。尽管如此,在这两种情况下每个宿主体内产生的繁殖体总数都增加了。然而,增加共感染之间的亲缘关系在这两种情况下都会导致寄生物繁殖减少。

结论

无关共感染可能会增加总体寄生物毒力,但结果源于增加了感染数量,而非单个感染的生长更具侵袭性。然而,在其他条件相同的情况下,如果共感染之间的亲缘关系比仅由偶然因素预期的更密切,那么预计所有共感染的总繁殖输出将会减少,从而导致毒力降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a09/1310603/b5482a5b67ef/1471-2148-5-64-1.jpg

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