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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Genome-wide analysis of spatiotemporal allele-specific expression in F1 hybrids of meat- and egg-type chickens
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Genome-wide analysis of spatiotemporal allele-specific expression in F1 hybrids of meat- and egg-type chickens

机译:基因组 - 肉类和蛋鸡杂交种中的时空等位基因特异性表达分析

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摘要

In diploid organisms, each gene locus is composed of two parental alleles, which would interact with each other for determining the phenotypic variation. Better understanding of the allele-specific expression (ASE) in farm animals is much important to explore the genetic basis underlying economically important traits, which have been poorly understood yet. In this study, genome-wide analysis was applied to explore the spatiotemporal pattern of ASE in the F1 hybrids of chicken. First, meat- and egg-type chickens were selected for producing a fullsib F1 hybrid population (n = 57). Then, genome resequencing of two parents and 38 offspring were performed and liver and breast muscle samples (n = 38) were subjected to strand-specific RNA sequencing (ssRNA-seq) for ASE detection at 1, 28, and 56 days of age, respectively. The results accurately identified a total of 465 informative genes that could be distinguished with respect to their parental origins. There were 0.4% - 4.1% of informative genes showing ASE, and 57 of them were found across different tissues and time points. Besides, most ASE genes in chickens were tissue-specific, and no matter what the time-point pattern of one ASE gene, the same parental allele of this gene almost showed consistently higher or lower expression across all time points in the same type tissue. In conclusion, this study indicated that most of ASE genes were tissue-specific and time-dependent.
机译:在二倍体生物中,每个基因位点由两个父母等位基因组成,其将彼此相互作用以确定表型变异。更好地了解农场动物的等位基因特异性表达(ASE)对于探索经济上重要特征的遗传基础是很重要的,这尚未理解。在这项研究中,应用基因组分析来探讨鸡的F1杂交种中ASE的时空模式。首先,选择肉类和蛋型鸡用于产生全型F1杂交群(n = 57)。然后,进行两种父母和38个后代的基因组重量,并对1,28和56天进行ASE检测,对肝脏和乳房肌肉样品(n = 38)进行肝脏和乳肌样品(n = 38),分别。结果准确地确定了共有465个信息基因,可以与父母起源区分开。有0.4% - 4.1%的信息性基因显示出ASE,其中57个在不同的组织和时间点发现。此外,鸡中的大多数ASE基因是组织特异性的,无论一个ASE基因的时间点模式如何,该基因的相同父母等位基因几乎在相同类型组织中的所有时间点始终显示出始终如一的表达。总之,本研究表明,大多数ASE基因是组织特异性和时间依赖性的。

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