豹珊瑚石斑鱼种系维持和分化中sox32基因的全基因组分析。

Mingyi Wang, Hui Ding, Mingjian Liu, Yurui Gao, Lin Li, Chaofan Jin, Zhenmin Bao, Bo Wang, Jingjie Hu
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引用次数: 0

摘要

Sox家族基因作为一组转录因子,在脊椎动物中广泛表达,在繁殖发育中起着至关重要的作用。本研究报道了从豹的基因组和转录组中鉴定出26个sox基因。通过系统发育树构建、染色体定位和基因结构分析,验证了豹子sox基因在进化过程中的进化关系、基因重复和缺失变异。序列比对显示,HMG-box结构域在整个Sox基因家族中高度保守。表达谱显示,sox基因的表达水平具有组织特异性。大多数sox基因在雌雄性腺和成体性腺中的二态表达模式也被观察到,这表明sox基因在豹子性别分化中起着重要作用。值得注意的是,sox32在性腺组织中特异性高表达,可能在性腺中发挥新的作用。荧光原位杂交(FISH)结果显示,sox32 mRNA在不同时期的生殖干细胞和卵母细胞中均有表达,在支持细胞中表达水平较低。在睾丸中,男性生殖细胞中未检测到sox32。本研究结果为揭示sox32基因可能参与豹子性腺发育和分化提供了新的思路。综上所述,本研究全面分析了豹豹Sox基因家族,为Sox基因的功能提供了新的见解,这可能会彻底改变我们对鱼类性别决定、性别分化和生殖发育机制的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genome wide analysis of the sox32 gene in germline maintenance and differentiation in leopard coral grouper (Plectropomus leopardus).

The Sox family genes, as a group of transcription factors, are widely expressed in vertebrates and play a critical role in reproduction and development. The present study reported that 26 sox genes were identified from the genome and transcriptome of P. leopardus. The phylogenetic tree construction, chromosome localization, and gene structure analysis were executed to verify the evolutionary relationships, gene duplication, and deletion variations of P. leopardus sox genes in evolution. The sequence alignment revealed the HMG-box domain was highly conserved throughout the Sox gene family. The expression profile showed expression levels of sox genes showed tissue specificity. The dimorphic expression pattern of most sox genes in intersex and adult gonads was also observed, suggesting an important role of sox genes for sex differentiation in P. leopardus. Notably, sox32 was specifically highly expressed in gonadal tissues and might play a novel role within the gonads. The fluorescent in situ hybridization (FISH) showed sox32 mRNA was detected in germ stem cells and oocytes of different stages, and lowly expressed in sertoli cells. In testis, sox32 was not detected in male germ cells. Our results provided new insights into the sox32 that might be involved in gonadal development and differentiation in P. leopardus. To sum up, this study comprehensively analyzed the Sox gene family of P. leopardus and provided new insights into the function of sox genes, which could potentially revolutionize our understanding of the mechanisms of sex determination, sex differentiation, and reproductive development in fish.

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