Suppr超能文献

获得性免疫和交配策略对寄生虫种群遗传结构的影响。

Effects of acquired immunity and mating strategy on the genetic structure of parasite populations.

作者信息

Lythgoe Katrina A

机构信息

Institute of Cell, Animal, and Population Biology, University of Edinburgh, Kings Buildings, West Mains Road, Edinburgh EH9 3JT, Scotland.

出版信息

Am Nat. 2002 May;159(5):519-29. doi: 10.1086/339462.

Abstract

Although it may have profound effects on how researchers seek to tackle many infectious diseases, little is known of the genetic structure of many pathogen populations. Previous models have suggested that if levels of cross-protection are high, parasite populations may be structured into discrete strains with nonoverlapping antigenic repertoires, even among populations that reproduce sexually. Here, I consider a discrete model of the coevolution of parasites with host-acquired immunity. In this model, if the effective recombination rate is low, strain structure can be maintained for very high levels of cross-protection. However, if the effective recombination rate is higher, this strain structure can no longer be maintained. The effective recombination rate is affected by the actual recombination rate between immunologically selected loci, the proportion of individuals that reproduce sexually, whether recombination occurs inside or outside of the host or vector, and the level of cross-protection. The model predicts that for Plasmodium falciparum, where reproduction occurs inside of a vector, we expect to see strain structure in areas of low transmission but not in areas of high transmission. Strain structure is unlikely to be seen in parasites that reproduce outside of a host or vector, such as Strongyloides ratti.

摘要

尽管它可能会对研究人员试图攻克许多传染病的方式产生深远影响,但对许多病原体群体的遗传结构却知之甚少。先前的模型表明,如果交叉保护水平很高,即使在有性繁殖的群体中,寄生虫群体也可能会被构建成具有不重叠抗原库的离散菌株。在此,我考虑寄生虫与宿主获得性免疫共同进化的离散模型。在这个模型中,如果有效重组率很低,那么对于非常高的交叉保护水平,菌株结构可以维持。然而,如果有效重组率较高,这种菌株结构就不再能够维持。有效重组率受免疫选择位点之间的实际重组率、有性繁殖个体的比例、重组发生在宿主或媒介内部还是外部以及交叉保护水平的影响。该模型预测,对于在媒介内部进行繁殖的恶性疟原虫,我们预计在低传播地区会看到菌株结构,而在高传播地区则不会。在宿主或媒介外部进行繁殖的寄生虫(如鼠类圆线虫)中不太可能看到菌株结构。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验