Department of Biology, Texas A&M University, 3258 TAMU, College Station, TX, 77843, USA.
J Helminthol. 2023 Mar 17;97:e29. doi: 10.1017/S0022149X23000123.
Next generation sequencing technologies have facilitated a shift from a few targeted loci in population genetic studies to whole genome approaches. Here, we review the types of questions and inferences regarding the population biology and evolution of parasitic helminths being addressed within the field of population genomics. Topics include parabiome, hybridization, population structure, loci under selection and linkage mapping. We highlight various advances, and note the current trends in the field, particularly a focus on human-related parasites despite the inherent biodiversity of helminth species. We conclude by advocating for a broader application of population genomics to reflect the taxonomic and life history breadth displayed by helminth parasites. As such, our basic knowledge about helminth population biology and evolution would be enhanced while the diversity of helminths in itself would facilitate population genomic comparative studies to address broader ecological and evolutionary concepts.
下一代测序技术促进了从群体遗传学研究中少数几个靶向基因座向全基因组方法的转变。在这里,我们回顾了群体基因组学领域中涉及寄生虫群体生物学和进化的问题和推论的类型。主题包括共生体、杂交、群体结构、受选择的基因座和连锁图谱。我们强调了各种进展,并指出了该领域当前的趋势,特别是尽管寄生虫物种具有内在的生物多样性,但仍关注与人类相关的寄生虫。最后,我们提倡更广泛地应用群体基因组学,以反映寄生虫表现出的分类学和生活史的广度。因此,我们对寄生虫群体生物学和进化的基本知识将得到增强,而寄生虫本身的多样性将促进种群基因组比较研究,以解决更广泛的生态和进化概念。