比较转录组分析揭示核糖体减少在阻碍雌性三倍体巨尾鲈卵子发生中的作用

IF 2.6 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Qiong Yang, Hong Yu, Qi Li
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引用次数: 0

摘要

与二倍体个体相比,三倍体雌性千寿鱼的繁殖力表现出显著差异,且繁殖力较低。以往的研究将成熟期的三倍体雌性千层鱼分为两组:雌性α和雌性β,前者的特点是卵母细胞数量多,后者则很少或没有卵母细胞。为了研究三倍体千头鲤不规则卵子发生和繁殖力差异的分子机制,我们对性腺发育不同阶段的性腺转录组进行了比较分析,包括雌性α、雌性β和二倍体。在早期卵子发生过程中,雌性二倍体与推定的雌性β三倍体之间的功能富集分析发现了核糖体和核糖体生物发生途径中的不同表达基因(DEGs)。在推定雌性β三倍体中,这些通路中 DEGs 的表达水平显著降低,这表明核糖体水平降低可能阻碍了三倍体的卵子发生。此外,为了确定性腺发育的调控途径,对早期和成熟期的雌性牡蛎进行了比较。DNA修复和重组蛋白途径在雌性二倍体和雌性α三倍体中富集,但在雌性β三倍体中缺失。总之,我们认为雌性三倍体中核糖体生物发生的减少阻碍了生殖干细胞的分化,导致形成大量异常生殖细胞,最终导致繁殖力降低。三倍体之间生育能力的差异似乎与雌性性腺发育过程中DNA损伤修复的程度有关。这项研究为了解雌性三倍体千岛湖鱼的卵子发生过程提供了宝贵的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comparative Transcriptome Analysis Reveals the Role of Ribosome Reduction in Impeding Oogenesis in Female Triploid Crassostrea Gigas

Comparative Transcriptome Analysis Reveals the Role of Ribosome Reduction in Impeding Oogenesis in Female Triploid Crassostrea Gigas

The fecundity of triploid female Crassostrea gigas exhibited significant variation and was lower compared to diploid individuals. Previous studies categorized mature stage triploid female C. gigas into two groups: female α, characterized by a high number of oocytes, and female β, displaying few or no oocytes. To investigate the molecular mechanisms underlying irregular oogenesis and fecundity differences in triploid C. gigas, we performed a comparative analysis of gonad transcriptomes at different stages of gonadal development, including female α, female β, and diploids. During early oogenesis, functional enrichment analysis between female diploids and putative female β triploids revealed differently expressed genes (DEGs) in the ribosome and ribosome biogenesis pathways. Expression levels of DEGs in these pathways were significantly decreased in the putative female β triploid, suggesting a potential role of reduced ribosome levels in obstructing triploid oogenesis. Moreover, to identify regulatory pathways in gonad development, female oysters at the early and mature stages were compared. The DNA repair and recombination proteins pathways were enriched in female diploids and female α triploids but absent in female β triploids. Overall, we propose that decreased ribosome biogenesis in female triploids hinders the differentiation of germ stem cells, leading to the formation of a large number of abnormal germ cells and ultimately resulting in reduced fecundity. The variation in fertility among triploids appeared to be related to the degree of DNA damage repair during female gonad development. This study offers valuable insights into the oogenesis process in female triploid C. gigas.

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来源期刊
Marine Biotechnology
Marine Biotechnology 工程技术-海洋与淡水生物学
CiteScore
4.80
自引率
3.30%
发文量
95
审稿时长
2 months
期刊介绍: Marine Biotechnology welcomes high-quality research papers presenting novel data on the biotechnology of aquatic organisms. The journal publishes high quality papers in the areas of molecular biology, genomics, proteomics, cell biology, and biochemistry, and particularly encourages submissions of papers related to genome biology such as linkage mapping, large-scale gene discoveries, QTL analysis, physical mapping, and comparative and functional genome analysis. Papers on technological development and marine natural products should demonstrate innovation and novel applications.
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