Effect of high temperatures on sex ratio and differential expression analysis (RNA-seq) of sex-determining genes in Oreochromis niloticus from different river basins in Benin

IF 4.8 Q1 GENETICS & HEREDITY
M. A. Fagbémi, Renaud Nivelle, Marc Muller, C. Mélard, Philippe Lalèyè, C. Rougeot
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引用次数: 0

Abstract

The high temperature sex reversal process leading to functional phenotypic masculinization during development has been widely described in Nile tilapia (Oreochromis niloticus) under laboratory or aquaculture conditions and in the wild. In this study, we selected five wild populations of O. niloticus from different river basins in Benin and produced twenty full-sib families of mixed-sex (XY and XX) by natural reproduction. Progenies were exposed to room temperature or high (36.5°C) temperatures between 10 and 30 days post-fertilization (dpf). In control groups, we observed sex ratios from 40 to 60% males as expected, except for 3 families from the Gobé region which showed a bias towards males. High temperature treatment significantly increased male rates in each family up to 88%. Transcriptome analysis was performed by RNA-sequencing (RNA-seq) on brains and gonads from control and treated batches of six families at 15 dpf and 40 dpf. Analysis of differentially expressed genes, differentially spliced genes, and correlations with sex reversal was performed. In 40 dpf gonads, genes involved in sex determination such as dmrt1, cyp11c1, amh, cyp19a1b, ara, and dax1 were upregulated. In 15 dpf brains, a negative correlation was found between the expression of cyp19a1b and the reversal rate, while at 40 dpf a negative correlation was found between the expression of foxl2, cyp11c1, and sf1 and positive correlation was found between dmrt1 expression and reversal rate. Ontology analysis of the genes affected by high temperatures revealed that male sex differentiation processes, primary male sexual characteristics, autophagy, and cilium organization were affected. Based on these results, we conclude that sex reversal by high temperature treatment leads to similar modifications of the transcriptomes in the gonads and brains in offspring of different natural populations of Nile tilapia, which thus may activate a common cascade of reactions inducing sex reversal in progenies.
高温对贝宁不同流域黑线鲈性别比例的影响以及性别决定基因的差异表达分析(RNA-seq)
尼罗罗非鱼(Oreochromis niloticus)在实验室或水产养殖条件下以及在野外发育过程中的高温性别逆转过程导致功能性表型男性化已被广泛描述。在这项研究中,我们从贝宁不同的河流流域选取了五个尼罗罗非鱼野生种群,通过自然繁殖产生了二十个全同父异母的混合性别(XY 和 XX)家庭。后代在受精后 10 至 30 天(dpf)期间暴露于室温或高温(36.5°C)环境中。在对照组中,我们观察到雄性比例为 40% 至 60%,符合预期,但来自戈贝地区的 3 个家庭除外,它们偏向于雄性。高温处理明显提高了各家系的雄性比例,最高达 88%。转录组分析是通过 RNA 序列(RNA-seq)对 6 个家系的对照组和处理组在 15 dpf 和 40 dpf 的大脑和性腺进行的。对差异表达基因、差异剪接基因以及与性别逆转的相关性进行了分析。在40 dpf的性腺中,参与性别决定的基因(如dmrt1、cyp11c1、amh、cyp19a1b、ara和dax1)上调。在15 dpf的大脑中,cyp19a1b的表达与逆转率呈负相关,而在40 dpf的大脑中,foxl2、cyp11c1和sf1的表达呈负相关,dmrt1的表达与逆转率呈正相关。对受高温影响的基因进行的本体分析表明,雄性分化过程、主要雄性性征、自噬和纤毛组织都受到了影响。基于这些结果,我们得出结论:高温处理导致的性别逆转会导致不同自然种群的尼罗罗非鱼后代性腺和大脑转录组发生类似的变化,从而可能激活一个共同的级联反应,诱导后代发生性别逆转。
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来源期刊
Environmental Epigenetics
Environmental Epigenetics GENETICS & HEREDITY-
CiteScore
6.50
自引率
5.30%
发文量
0
审稿时长
17 weeks
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