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van Gelderen, T. A.

Publications and source records attributed to van Gelderen, T. A..

2 recordsLinked to original sources

Identification of sex-biased miRNA markers informative of heat-past events

Elevated temperatures during early developmental stages play a pivotal role in the fate of the final sexual phenotype of fish populations, particularly towards male-skewed sex ratios. This is the case with European sea bass (Dicentrarchus labrax), one of the most important European species in the aquaculture industry. To unveil informative markers of the past thermal events, we investigated changes in the miRNome within the gonads of this species. Consequently, we exposed European sea bass to elevated temperatures during early development and conducted miRNA-sequencing analysis in the ovaries and testes one year post-heat treatment. The examination of miRNA expression levels identified three and twelve miRNAs in ovaries and testes, respectively, reflecting past thermal events. To assess the evolutionary conservation of these identified miRNAs in gonads, we cross-referenced our data with miRNome public information from ovaries and testes in nine additional fish species. This analysis uncovered 43 potential sex-biased markers present in at least five studied species along the evolutionary timeline. For instance, miR-155, miR-429, and miR-140 were female-skewed while miR-184, miR-499, and miR-135 were male-skewed. In addition, among these markers, eight conserved sex-skewed miRNAs proved informative regarding past thermal events in both the ovaries (e.g., miR-192-5p and miR-143-3p) and testes (miR-129-5p, miR-2187a-3p, miR-724-5p, miR-143-3p, miR-194a-5p and miR-223-3p). Notably, miR-223-3p and miR-194a-5p were conserved female-skewed, but showed upregulation in males exposed to high temperature. These miRNAs could serve as markers of heat-induced masculinization of genetic female-prone fish. The current research broadens the inventory of sex-specific miRNAs along evolution in fish and, elucidates thermosensitive miRNAs in the gonads. These findings hold promise as potential tools for predicting historical environmental events associated with masculinization due to high-temperature treatments in cultured species but also perhaps for natural populations exposed to a climate change scenario.

molecular biology↗

Downstream effects of dre-miR-210-5p in zebrafish primary ovarian cell culture

MicroRNAs (miRNAs) are small, non-coding RNAs that are involved in post-transcriptional gene regulation in many cellular functions and are highly conserved throughout evolution. In teleost fish species, miRNAs are believed to play a role in the reproductive system, but more research is needed to better understand the functions of miRNAs in fish gonads. Furthermore, miR-210 has previously been described to be involved in many processes, such as hypoxia response, angiogenesis, cell proliferation and male infertility. The aim of this study was, first, to develop an in vitro model in fish to study the functions of miRNAs and second, to identify target genes of dre-miR-210-5p by establishing a primary ovarian cell culture in zebrafish (Danio rerio). The cell culture was performed by isolating ovaries from adult female fish (n=4) which were incubated with dre-miR-210-5p mimic or scramble miRNA mimic. Cell survival was studied by flow cytometry analysis and fluorescent microscopy. Following, the effect of dre-miR-210-5p on ovarian cells was uncovered by RNA-sequencing, identifying [~]6,000 targeted-genes differentially expressed (DEGs), of which [~]2,600 downregulated and [~]3,400 upregulated. GO term and KEGG pathway analyses showed downregulated genes involved in cell cycle processes and reproduction-related pathways while, in contrast, immune-related pathways were upregulated after miR-210 mimic treatment in the ovarian cells. To provide the molecular mechanisms triggered by miRNA-210, seed regions of targeted genes were identified and in silico analysis classified DEGs as potential biomarkers in reproduction or immune cell types. These results support the crosstalk between the reproductive and immune system in which dre-miR-210-5p plays a key role in the transcriptomic alteration in the fish ovaries. Take home messagemiR-210 promotes the immune response and suppresses oocyte meiosis in the ovarian cells in zebrafish

molecular biology↗