Lady Davis Institute for Medical Research, 3755 Côte Ste Catherine Road, Montreal, QC H3T 1E2, Canada.
Hum Genomics. 2014 May 22;8(1):9. doi: 10.1186/1479-7364-8-9.
Understanding genotype/phenotype relationships has become more complicated as increasing amounts of inter- and intra-tissue genetic heterogeneity have been revealed through next-generation sequencing and evidence showing that factors such as epigenetic modifications, non-coding RNAs and RNA editing can play an important role in determining phenotype. Such findings have challenged a number of classic genetic assumptions including (i) analysis of genomic sequence obtained from blood is an accurate reflection of the genotype responsible for phenotype expression in an individual; (ii) that significant genetic alterations will be found only in diseased individuals, in germline tissues in inherited diseases, or in specific diseased tissues in somatic diseases such as cancer; and (iii) that mutation rates in putative disease-associated genes solely determine disease phenotypes. With the breakdown of our traditional understanding of genotype to phenotype relationships, it is becoming increasingly apparent that new analytical tools will be required to determine the relationship between genotype and phenotypic expression. To this end, we are proposing that next-generation genetic database (NGDB) platforms be created that include new bioinformatics tools based on algorithms that can evaluate genetic heterogeneity, as well as powerful systems biology analysis tools to actively process and evaluate the vast amounts of both genomic and genomic-modifying information required to reveal the true relationships between genotype and phenotype.
随着下一代测序技术揭示出越来越多的组织内和组织间遗传异质性,以及表明表观遗传修饰、非编码 RNA 和 RNA 编辑等因素可以在决定表型方面发挥重要作用的证据,理解基因型/表型关系变得更加复杂。这些发现挑战了许多经典的遗传假设,包括:(i) 从血液中获得的基因组序列分析是对个体表型表达相关基因型的准确反映;(ii) 只有在患病个体、遗传性疾病的生殖系组织或癌症等体细胞疾病的特定患病组织中才会发现显著的遗传改变;以及 (iii) 假定与疾病相关的基因突变率仅决定疾病表型。随着我们对基因型到表型关系的传统理解的瓦解,显然需要新的分析工具来确定基因型和表型表达之间的关系。为此,我们建议创建下一代遗传数据库 (NGDB) 平台,该平台包含基于能够评估遗传异质性的算法的新生物信息学工具,以及强大的系统生物学分析工具,以主动处理和评估揭示基因型和表型之间真实关系所需的大量基因组和基因组修饰信息。