Ponnanna Koushik, DSouza Stafny M, Ramachandra Nallur B
Department of Studies in Genetics and Genomics, University of Mysore, Mysuru 570006, India.
Genomics Inform. 2021 Mar;19(1):e8. doi: 10.5808/gi.20051. Epub 2021 Mar 9.
Cytorace-3 is a laboratory evolved hybrid lineage of Drosophila nasuta nasuta males and Drosophila nasuta albomicans females currently passing ~850 generations. To assess interracial hybridization effects on gene expression in Cytorace-3 we profiled the transcriptomes of mature ovaries and testes by employing Illumina sequencing technology and de novo transcriptome assembling strategies. We found 26% of the ovarian, and 14% of testis genes to be differentially expressed in Cytorace-3 relative to the expressed genes in the parental gonadal transcriptomes. About 5% of genes exhibited additive gene expression pattern in the ovary and 3% in the testis, while the remaining genes were misexpressed in Cytorace-3. Nearly 772 of these misexpressed genes in the ovary and 413 in the testis were either over- or under-dominant. Genes following D. n. nasuta dominance was twice (270 genes) than D. n. albomicans dominance (133 genes) in the ovary. In contrast, only 105 genes showed D. n. nasuta dominance and 207 showed D. n. albomicans dominance in testis transcriptome. Of the six expression inheritance patterns, conserved inheritance pattern was predominant for both ovary (73%) and testis (85%) in Cytorace-3. This study is the first to provide an overview of the expression divergence and inheritance patterns of the transcriptomes in an independently evolving distinct hybrid lineage of Drosophila. This recorded expression divergence in Cytorace-3 surpasses that between parental lineages illustrating the strong impact of hybridization driving rapid gene expression changes.
Cytorace-3是一种在实验室培育出的杂交品系,由纳苏果蝇(Drosophila nasuta nasuta)雄性与白腹黑果蝇(Drosophila nasuta albomicans)雌性杂交而成,目前已传代约850代。为了评估种间杂交对Cytorace-3基因表达的影响,我们采用Illumina测序技术和从头转录组组装策略,对成熟卵巢和睾丸的转录组进行了分析。我们发现,与亲本品系性腺转录组中的表达基因相比,Cytorace-3中有26%的卵巢基因和14%的睾丸基因存在差异表达。约5%的基因在卵巢中呈现加性基因表达模式,3%在睾丸中呈现该模式,其余基因在Cytorace-3中表达错误。这些表达错误的基因中,卵巢中有近772个,睾丸中有413个表现为超显性或亚显性。在卵巢中,遵循纳苏果蝇显性的基因(270个)是遵循白腹黑果蝇显性的基因(133个)的两倍。相比之下,在睾丸转录组中,只有105个基因表现为纳苏果蝇显性,207个表现为白腹黑果蝇显性。在六种表达遗传模式中,保守遗传模式在Cytorace-3的卵巢(73%)和睾丸(85%)中均占主导地位。本研究首次概述了果蝇独立进化的独特杂交品系中转录组的表达差异和遗传模式。Cytorace-3中记录的表达差异超过了亲本品系之间的差异,说明杂交对驱动快速基因表达变化具有强大影响。