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Neuropeptides in the cerebral ganglia of the mud crab Scylla paramamosain: transcriptomic analysis and expression profiles during vitellogenesis

机译:蟹蟹神经节中的神经肽Sylla paramamosain:卵黄发生过程中的转录组学分析和表达谱

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摘要

Neuropeptides play a critical role in regulating animal reproduction. In vertebrates, GnRH, GnIH and kisspeptin are the key neuropeptide hormones of the reproductive axis, however, the reproductive axis for invertebrates is vague. Knowledge on ovarian development of the mud crab, Scylla paramamosain, is critical for aquaculture and resources management of the commercially important species. This study employed Illumina sequencing, reverse transcription-polymerase chain reaction and quantitative real-time PCR techniques to identify neuropeptides that may be involved in ovarian development of S. paramamosain. A total of 32 neuropeptide transcripts from two dozen neuropeptide families, 100 distinct mature peptides were predicted from the transcriptome data of female S. paramamosain cerebral ganglia. Among them, two families, i.e. GSEFLamide and WXXXRamide, were first identified from the cerebral ganglia of crustaceans. Of these neuropeptides, 21 transcripts of interest were selected for further confirmation and all of them were detected in the cerebral ganglia, as well as in other nervous tissues and the ovary. Most of them also had differential expression in the cerebral ganglia during various vitellogenic stages, suggesting their likely involvement in regulating vitellogenesis and ovarian maturation. Overall, these findings provide an important basis for subsequent studies on peptide function in reproduction of S. paramamosain.
机译:神经肽在调节动物繁殖中起关键作用。在脊椎动物中,GnRH,GnIH和Kisspeptin是生殖轴的关键神经肽激素,但是,无脊椎动物的生殖轴却模糊不清。泥蟹Scylla paramamosain的卵巢发育知识对于商业上重要物种的水产养殖和资源管理至关重要。这项研究采用了Illumina测序,逆转录-聚合酶链反应和定量实时PCR技术,以鉴定可能与副生沙门氏菌卵巢发育有关的神经肽。来自十二个神经肽家族的总共32个神经肽转录本,从雌性副嗜乳链球菌脑神经节的转录组数据中预测了100种不同的成熟肽。其中,首先从甲壳类动物的神经节中鉴定出两个家族,即GSEFLamide和WXXXRamide。在这些神经肽中,选择了21个感兴趣的转录物进行进一步确认,并在大脑神经节以及其他神经组织和卵巢中检测到了所有这些转录物。它们中的大多数在不同的卵黄形成阶段在脑神经节中也有差异表达,表明它们可能参与调节卵黄发生和卵巢成熟。总的来说,这些发现为后续研究副生沙门氏菌的肽功能提供了重要的基础。

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