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Genetic Characteristic and RNA-Seq Analysis in Transparent Mutant of Carp–Goldfish Nucleocytoplasmic Hybrid

机译:鲤金鱼核质质杂种透明突变体的遗传特性和RNA-Seq分析

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摘要

In teleost, pigment in the skin and scales played important roles in various biological processes. Iridophores, one of the main pigment cells in teleost, could produce silver pigments to reflect light. However, the specific mechanism of the formation of silver pigments is still unclear. In our previous study, some transparent mutant individuals were found in the carp–goldfish nucleocytoplasmic hybrid (CyCa hybrid) population. In the present study, using transparent mutants (TM) and wild type (WT) of the CyCa hybrid as a model, firstly, microscopic observations showed that the silver pigments and melanin were both lost in the scales of transparent mutants compared to that in wild types. Secondly, genetic study demonstrated that the transparent trait in the CyCa hybrid was recessively inherent, and controlled by an allele in line with Mendelism. Thirdly, RNA-Seq analysis showed that differential expression genes (DEGs) between wild type and transparent mutants were mainly enriched in the metabolism of guanine, such as hydrolase, guanyl nucleotide binding, guanyl ribonucleotide binding, and GTPase activity. Among the DEGs, purine nucleoside phosphorylase 4a (pnp4a) and endothelin receptor B (ednrb) were more highly expressed in the wild type compared to the transparent mutant (p < 0.05). Finally, miRNA-Seq analysis showed that miRNA-146a and miR-153b were both more highly expressed in the transparent mutant compared to that in wild type (p < 0.05). Interaction analysis between miRNAs and mRNAs indicated that miRNA-146a was associated with six DEGs (MGAT5B, MFAP4, GP2, htt, Sema6b, Obscn) that might be involved in silver pigmentation.
机译:在硬骨鱼中,皮肤和鱼鳞中的色素在各种生物过程中起着重要作用。虹彩是硬骨鱼的主要色素细胞之一,可以产生银色素来反射光。但是,形成银颜料的具体机理仍不清楚。在我们先前的研究中,在鲤鱼-金鱼的核质杂种(CyCa杂种)种群中发现了一些透明的突变个体。在本研究中,以CyCa杂种的透明突变体(TM)和野生型(WT)为模型,首先,显微镜观察表明,与野生突变体相比,透明突变体中的银色素和黑色素都丢失了类型。其次,遗传研究表明,CyCa杂种的透明性状是隐性固有的,并且受与孟德尔主义一致的等位基因控制。第三,RNA-Seq分析显示野生型和透明突变体之间的差异表达基因(DEG)主要富集鸟嘌呤的代谢,如水解酶,鸟嘌呤核苷酸结合,鸟苷核糖核苷酸结合和GTP酶活性。与透明突变体相比,在DEG中,嘌呤核苷磷酸化酶4a(pnp4a)和内皮素受体B(ednrb)在野生型中表达更高(p <0.05)。最后,miRNA-Seq分析显示,与野生型相比,透明突变体中miRNA-146a和miR-153b的表达都更高(p <0.05)。 miRNA和mRNA之间的相互作用分析表明,miRNA-146a与可能与银染有关的六个DEG(MGAT5B,MFAP4,GP2,htt,Sema6b,Obscn)相关。

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