| Literature DB >> 32071408 |
Bo Wang1, Elizabeth Tseng2, Primo Baybayan2, Kevin Eng2, Michael Regulski1, Yinping Jiao1, Liya Wang1, Andrew Olson1, Kapeel Chougule1, Peter Van Buren1, Doreen Ware3,4.
Abstract
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.Entities:
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Year: 2020 PMID: 32071408 PMCID: PMC7028979 DOI: 10.1038/s42003-020-0805-8
Source DB: PubMed Journal: Commun Biol ISSN: 2399-3642