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Comprehensive Identification of Sexual Dimorphism-Associated Differentially Expressed Genes in Two-Way Factorial Designed RNA-Seq Data on Japanese Quail (Coturnix coturnix japonica)

机译:在日本鹌鹑(Coturnix coturnix japonica)双向分析设计的RNA-Seq数据中全面鉴定与性二态相关的差异表达基因。

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摘要

Japanese quail (Coturnix coturnix japonica) reach sexual maturity earlier, breed rapidly and successfully, and cost less and require less space than other birds raised commercially. Given the value of this species for food production and experimental use, more studies are necessary to determine chromosomal regions and genes associated with gender and breed-differentiation. This study employed Trinity and edgeR for transcriptome analysis of next-generation RNA-seq data, which included 4 tissues obtained from 3 different breeding lines of Japanese quail (random bred control, heavy weight, low weight). Differentially expressed genes shared between female and male tissue contrast groups were analyzed to identify genes related to sexual dimorphism as well as potential novel candidate genes for molecular sexing. Several of the genes identified in the present study as significant sex-related genes have been previously found in avian gene expression analyses (NIPBL, UBAP2), and other genes found differentially expressed in this study and not previously associated with sex-related differences may be considered potential candidates for molecular sexing (TERA, MYP0, PPR17, CASQ2). Additionally, other genes likely associated with neuronal and brain development (CHKA, NYAP), as well as body development and size differentiation (ANKRD26, GRP87) in quail were identified. Expression of homeobox protein regulating genes (HXC4, ISL1) shared between our two sex-related contrast groups (Female Brain vs. Male Brain and Ovary vs. Testis) indicates that these genes may regulate sex-specific anatomical development. Results reveal genetic features of the quail breed and could allow for more effective molecular sexing as well as selective breeding for traits important in commercial production.
机译:日本鹌鹑(Coturnix coturnix japonica)较早达到性成熟,能够快速成功繁殖,并且比其他商业化饲养的鸟类成本更低且所需空间更少。考虑到该物种对于食品生产和实验用途的价值,需要进行更多的研究来确定与性别和品种分化相关的染色体区域和基因。这项研究使用Trinity和edgeR进行下一代RNA-seq数据的转录组分析,该数据包括从3种不同的日本鹌鹑繁育系获得的4个组织(随机繁殖对照,重体重,低体重)。分析了男性和女性组织对比组之间共享的差异表达基因,以鉴定与性二态性相关的基因以及潜在的分子性别新候选基因。先前在禽类基因表达分析中已经发现了本研究中鉴定为与性别相关的重要基因的几个基因(NIPBL,UBAP2),并且在本研究中发现差异表达的其他基因可能与以前与性别相关的差异无关。被认为可能进行分子性别鉴定(TERA,MYP0,PPR17,CASQ2)。此外,还鉴定了其他可能与鹌鹑神经元和大脑发育有关的基因(CHKA,NYAP),以及身体发育和大小分化(ANKRD26,GRP87)。在我们两个与性别相关的对比组(女性大脑与男性大脑以及卵巢与睾丸)之间共享的同源盒蛋白调控基因(HXC4,ISL1)的表达表明,这些基因可能调控性别特异性的解剖发育。结果揭示了鹌鹑品种的遗传特征,可以使更有效的分子性别鉴定以及对商业生产中重要的性状进行选择性育种。

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