The Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao 266003, China.
The Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao 266003, China.
Gene. 2020 Oct 20;758:144967. doi: 10.1016/j.gene.2020.144967. Epub 2020 Jul 21.
Bivalve mollusks are descendants of an early-Cambrian lineage and have successfully evolved unique strategies for reproduction. Nonetheless, the molecular mechanisms underlying reproductive regulation in mollusks remain to be elucidated. In this study, transcriptomes of ovary at four reproductive stages in female Chlamys farreri were characterized by RNA-Seq. Regarding signaling pathways, ECM-receptor interaction pathway, mTOR signaling pathway, Fanconi anemia pathway, FoxO signaling pathway, Wnt signaling pathway and Hedgehog signaling pathway were enriched during ovarian development processes. In addition, pathways related to energy metabolism such as Nitrogen metabolism and Arachidonic acid metabolism were enriched at spawn stage. Interestingly, Neuroactive ligand-receptor interaction was significantly enriched involved in ovarian development and spawn, and indicated the potential functions of nervous system on reproductive regulation in C. farreri. What's more, this study identified and characterized fourteen genes involved in "sex hormones synthesis and regulation", "ovarian development and spawn" and "maternal immunity" during the four reproductive stages in C. farreri. We determined that CYP17 uniquely affected gamete release by influencing the physiological balance among the steroid hormones and showed that receptors of the 5-HT and GABA neurotransmitters were tightly associated with ovarian maturation. Furthermore, to the best of our knowledge, this is the first study to report the maternal effect gene Zar1 in bivalve mollusks, likewise the maternal immunity genes displayed coordinated and cooperative expression during reproductive periods, which strengthened the environmental adaptation mechanisms of bivalves. Taken together, this study provides the first dynamic transcriptomic analysis of C. farreri at four key reproductive stages, which will assist in revealing the molecular mechanisms underlying bivalves on reproductive regulation in ovarian development and spawn.
双壳贝类是早寒武纪谱系的后裔,成功进化出了独特的繁殖策略。然而,贝类生殖调控的分子机制仍有待阐明。本研究通过 RNA-Seq 对 4 个生殖阶段的中国蛤蜊(Chlamys farreri)卵巢转录组进行了分析。在信号通路方面,ECM-受体相互作用通路、mTOR 信号通路、范可尼贫血通路、FoxO 信号通路、Wnt 信号通路和 Hedgehog 信号通路在卵巢发育过程中富集。此外,在产卵阶段还富集了与能量代谢相关的通路,如氮代谢和花生四烯酸代谢。有趣的是,神经活性配体-受体相互作用在卵巢发育和产卵过程中显著富集,表明神经系统在 C. farreri 生殖调控中的潜在功能。此外,本研究还鉴定和分析了 14 个与“性激素合成和调节”、“卵巢发育和产卵”和“母性免疫”相关的基因,这些基因在 C. farreri 的 4 个生殖阶段中都有表达。研究结果表明,CYP17 通过影响类固醇激素的生理平衡而对配子释放有独特的影响,并表明 5-HT 和 GABA 神经递质的受体与卵巢成熟密切相关。此外,据我们所知,这是首次在双壳贝类中报道 Zar1 基因具有母体效应,同样,母性免疫基因在生殖期间也表现出协调和合作表达,这增强了双壳贝类的环境适应机制。综上所述,本研究首次对中国蛤蜊的 4 个关键生殖阶段进行了动态转录组分析,这将有助于揭示贝类在卵巢发育和产卵过程中生殖调控的分子机制。