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内共生体介导的对雄性交配偏好等位基因的选择之后的另类进化结果。

Alternative evolutionary outcomes following endosymbiont-mediated selection on male mating preference alleles.

作者信息

Hundertmark Antje, Goodacre Sara L, Brookfield John F Y

机构信息

School of Life Sciences, University of Nottingham, University Park, Nottingham, UK.

出版信息

J Evol Biol. 2020 May;33(5):653-667. doi: 10.1111/jeb.13602. Epub 2020 Feb 21.

Abstract

In many arthropods, intracellular bacteria, such as those of the genus Wolbachia, may spread through host populations as a result of cytoplasmic incompatibility (CI). Here, there is sterility or reduced fertility in crosses between infected males and uninfected females. As the bacterium is maternally inherited, the reduced fertility of uninfected females increases the frequency of the infection. If the transmission fidelity of the bacterium is less than 100%, the bacterium cannot invade from a low frequency, but if its frequency exceeds a threshold, it increases to a high, stable, equilibrium frequency. We explore the expected evolutionary dynamics of mutant alleles that cause their male bearers to avoid mating with uninfected females. For alleles which create this avoidance behaviour conditional upon the male being infected, there is a wide zone of parameter space that allows the preference allele to drive Wolbachia from the population when it would otherwise stably persist. There is also a wide zone of parameter space that allows a joint stable equilibrium for the Wolbachia and a polymorphism for the preference allele. When the male's avoidance of uninfected females is unconditional, the preference allele's effect on Wolbachia frequency is reduced, but there is a narrow range of values for the transmission rate and CI fertility that allow an unconditional preference allele to drive Wolbachia from the population, in a process driven by positive linkage disequilibrium between Wolbachia and the preference allele. The possibility of the evolution of preference could hamper attempts to manipulate wild populations through Wolbachia introductions.

摘要

在许多节肢动物中,细胞内细菌,如沃尔巴克氏体属的细菌,可能由于细胞质不亲和性(CI)而在宿主种群中传播。在此情况下,感染的雄性与未感染的雌性杂交会出现不育或生育力降低的情况。由于这种细菌是母系遗传的,未感染雌性生育力的降低会增加感染的频率。如果细菌的传播保真度低于100%,细菌就无法从低频状态侵入,但如果其频率超过阈值,就会增加到高的、稳定的平衡频率。我们探究了导致雄性携带者避免与未感染雌性交配的突变等位基因的预期进化动态。对于那些使这种回避行为取决于雄性是否被感染的等位基因,存在一个广阔的参数空间区域,当沃尔巴克氏体否则会稳定存在时,该偏好等位基因能将其从种群中驱出。也存在一个广阔的参数空间区域,允许沃尔巴克氏体和偏好等位基因的多态性达到联合稳定平衡。当雄性对未感染雌性的回避是无条件的时,偏好等位基因对沃尔巴克氏体频率的影响会降低,但在传播率和CI生育力方面存在一个狭窄的值范围,使得无条件的偏好等位基因能在由沃尔巴克氏体与偏好等位基因之间的正连锁不平衡驱动的过程中,将沃尔巴克氏体从种群中驱出。偏好进化的可能性可能会阻碍通过引入沃尔巴克氏体来操纵野生种群的尝试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a886/7318244/7de09928309a/JEB-33-653-g001.jpg

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