Cold Spring Harbor Laboratory, Cold Spring Harbor, NY, 11724, USA.
Pacific Biosciences, 1380 Willow Road, Menlo Park, CA, 94025, USA.
Commun Biol. 2020 Feb 18;3(1):78. doi: 10.1038/s42003-020-0805-8.
Haplotype phasing maize genetic variants is important for genome interpretation, population genetic analysis and functional analysis of allelic activity. We performed an isoform-level phasing study using two maize inbred lines and their reciprocal crosses, based on single-molecule, full-length cDNA sequencing. To phase and analyze transcripts between hybrids and parents, we developed IsoPhase. Using this tool, we validated the majority of SNPs called against matching short-read data from embryo, endosperm and root tissues, and identified allele-specific, gene-level and isoform-level differential expression between the inbred parental lines and hybrid offspring. After phasing 6907 genes in the reciprocal hybrids, we annotated the SNPs and identified large-effect genes. In addition, we identified parent-of-origin isoforms, distinct novel isoforms in maize parent and hybrid lines, and imprinted genes from different tissues. Finally, we characterized variation in cis- and trans-regulatory effects. Our study provides measures of haplotypic expression that could increase accuracy in studies of allelic expression.
单体型相位鉴定玉米遗传变异对于基因组解释、群体遗传分析和等位基因活性的功能分析非常重要。我们使用两个玉米自交系及其正反交进行了基于单分子全长 cDNA 测序的同型相位研究。为了在杂种和亲本之间进行转录本的相位和分析,我们开发了 IsoPhase。使用这个工具,我们验证了大多数针对胚胎、胚乳和根组织的匹配短读数据的 SNP,鉴定了自交亲本系和杂种后代之间等位基因、基因和同型相位水平的差异表达。在对正反交杂种中的 6907 个基因进行相位鉴定后,我们注释了 SNP,并鉴定了大效应基因。此外,我们还鉴定了来自不同组织的亲本来源的同型相位、玉米亲本和杂种系中的独特新同型相位以及印记基因。最后,我们描述了顺式和反式调控效应的变化。我们的研究提供了等位基因表达研究中提高准确性的单倍型表达度量。