Guryev Victor, Cuppen Edwin
Hubrecht Institute and University Medical Center Utrecht, Cancer Genomics Center, Uppsalalaan 8, 3584 CT Utrecht, The Netherlands.
FEBS Lett. 2009 Jun 5;583(11):1668-73. doi: 10.1016/j.febslet.2009.04.020. Epub 2009 Apr 18.
Rapid advances in DNA sequencing improve existing techniques and enable new approaches in genetics and functional genomics, bringing about unprecedented coverage, resolution and sensitivity. Enhanced toolsets can facilitate the untangling of connections between genomic variation, environmental factors and phenotypic effects, providing novel opportunities, but may also pose challenges in data interpretation, especially in highly heterogeneous human populations. Laboratory rodent strains, however, offer a variety of tailored model systems with controlled genetic backgrounds, facilitating complex genotype/phenotype relationship studies. In this review we discuss the advent of massively parallel sequencing, its methodological advantage for molecular analysis in model organisms and the expectation of increased understanding of biologically relevant consequences of human genetic variation.
DNA测序技术的快速发展改进了现有技术,并为遗传学和功能基因组学带来了新方法,实现了前所未有的覆盖范围、分辨率和灵敏度。增强的工具集有助于理清基因组变异、环境因素和表型效应之间的联系,提供新的机会,但也可能在数据解释方面带来挑战,尤其是在高度异质的人群中。然而,实验室啮齿动物品系提供了各种具有可控遗传背景的定制模型系统,便于进行复杂的基因型/表型关系研究。在本综述中,我们讨论了大规模平行测序的出现、其在模式生物分子分析中的方法优势,以及对增进对人类遗传变异生物学相关后果理解的期望。