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Neural Ganglia Transcriptome and Peptidome Associated with Sexual Maturation in Female Pacific Abalone (Haliotis discus hannai)

机译:雌性太平洋鲍鱼(Haliotis discus hannai)与性成熟相关的神经节转录组和肽组

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摘要

Genetic information of reproduction and growth is essential for sustainable molluscan fisheries and aquaculture management. However, there is limited knowledge regarding the reproductive activity of the commercially important Pacific abalone Haliotis discus hannai. We performed de novo transcriptome sequencing of the ganglia in sexually immature and mature female Pacific abalone to better understand the sexual maturation process and the underlying molecular mechanisms. Of the ~305 million high-quality clean reads, 76,684 transcripts were de novo-assembled with an average length of 741 bp, 28.54% of which were annotated and classified according to Gene Ontology terms. There were 256 differentially expressed genes between the immature and mature abalone. Tandem mass spectrometry analysis, as compared to the predicted-peptide database of abalone ganglia transcriptome unigenes, identified 42 neuropeptide precursors, including 29 validated by peptidomic analyses. Label-free quantification revealed differential occurrences of 18 neuropeptide families between immature and mature abalone, including achatin, FMRFamide, crustacean cardioactive peptide, and pedal peptide A and B that were significantly more frequent at the mature stage. These results represent the first significant contribution to both maturation-related transcriptomic and peptidomic resources of the Pacific abalone ganglia and provide insight into the roles of various neuropeptides in reproductive regulation in marine gastropods.
机译:繁殖和生长的遗传信息对于可持续的软体动物渔业和水产养殖管理至关重要。但是,关于商业上重要的太平洋鲍鱼鲍氏鲍氏鲍氏鲍鱼的繁殖活性的知识有限。我们对未成熟和成熟的雌性太平洋鲍鱼进行了神经节的从头转录组测序,以更好地了解性成熟过程和潜在的分子机制。在约3.05亿个高质量的纯净阅读物中,从头开始重新组装了76,684个转录本,平均长度为741 bp,其中有28.54%根据基因本体论术语进行了注释和分类。在未成熟鲍鱼和成熟鲍鱼之间存在256个差异表达基因。与鲍鱼神经节转录组unigenes的预测肽数据库相比,串联质谱分析确定了42种神经肽前体,其中29种经过肽组分析验证。无标记定量显示未成熟鲍鱼和成熟鲍鱼之间存在18个神经肽家族的差异发生,包括阿奇丁,FMRF酰胺,甲壳类心脏活性肽以及踏板肽A和B在成熟阶段更为频繁。这些结果代表了太平洋鲍鱼神经节成熟相关的转录组和肽类资源的第一个重大贡献,并提供了对各种神经肽在海洋腹足类动物生殖调节中的作用的深入了解。

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