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Transcriptome Profiling and Analysis of Genes Associated with High Temperature-Induced Masculinization in Sex-Undifferentiated Nile Tilapia Gonad

机译:与高温诱导的尼罗拉亚菊属植物中高温诱导的阳性菌相关的基因的转录组分析和分析

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Artificially high temperatures during critical thermosensitive periods (TSPs) can induce the sex reversal of Nile tilapia (Oreochromis niloticus) females into pseudomales; Nile tilapia is a GSD + TE (genotypic plus temperature effects) fish species. Previous studies have shown that water temperature affects the expression levels of many genes in the gonad or brain in various teleost species. However, few studies on the effect of temperature at the whole-gonad transcriptomic level in the early stage of sex differentiation have been reported in fish species exhibiting GSD + TE. In this study, RNA-Seq was performed to characterize the transcriptomic profile and identify genes exhibiting temperature- and sex-biased expressions in the Nile tilapia gonad at 21 dpf. A total of 42 genes were found to be associated with both high-temperature treatment and sex development, as the expression levels of these genes differed in both FC (female control) vs MC (male control) and FC vs FT (high temperature-treated females in the TSP). Among these genes, the transcriptional alterations of many male sex determination and differentiation genes, such as Dmrt1, Gsdf, and the DNA damage-inducible protein GADD45 alpha, suggested that the male pathway is initiated after high-temperature treatment and that its initiation may play a role in high temperature-induced masculinization in Nile tilapia. The qRT-PCR validation results for thirteen differentially expressed genes showed that the Pearson's correlation of the log(10) fold change values between the qPCR and RNA-Seq results was 0.70 (p < 0.001), indicating the accuracy and reliability of the RNA-Seq results. Our study provides insights into how high-temperature treatment induces the sex reversal of Nile tilapia females.
机译:关键热敏时期的人工高温(TSP)可以诱导尼罗罗非鱼(Oreochromis Niloticus)女性的性逆转到假组膜中;尼罗基亚岛是GSD + TE(基因型加温度效应)鱼类。以前的研究表明,水温影响各种紧邻物种中的Gonad或脑中许多基因的表达水平。然而,在表现出GSD + TE的鱼类中报道了几个关于性别分化早期阶段的全年性转录组水平的温度的影响。在该研究中,进行RNA-SEQ以表征转录组剖面,并鉴定表现出在21dPF的尼罗河罗非亚氏菌中的温度和性偏向表达的基因。共发现42种基因与高温处理和性发育有关,因为这些基因的表达水平在FC(雌性对照)VS MC(男性对照)和Fc VS FT(高温处理)中不同TSP中的女性)。在这些基因中,许多男性性测定和分化基因的转录改变,例如DMRT1,GSDF和DNA损伤诱导蛋白GADD45α,表明雄性途径在高温处理后启动,并且其起始可能发挥作用在尼罗罗非鱼高温诱导的阳性诱导的阳性诱导的作用。对于十三型差异表达基因的QRT-PCR验证结果表明,Pearson对QPCR和RNA-SEQ结果之间的Log(10)折叠变化值的相关性为0.70(P <0.001),表明RNA的准确性和可靠性 - SEQ结果。我们的研究提供了高温治疗如何诱导尼罗罗非鱼女性的性逆转的见解。

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