Fisheries College, Guangdong Ocean University, Zhanjiang, PR China.
PLoS One. 2018 Mar 19;13(3):e0193375. doi: 10.1371/journal.pone.0193375. eCollection 2018.
The recent use of RNA-Seq to study the transcriptomes of different species has helped identify a large number of new genes from different non-model organisms. In this study, five distinctive transcripts encoding for neuropeptide members of the CHH/MIH/GIH family have been identified from the spermatophore transcriptome of the shrimp Fenneropenaeus merguiensis. The size of these transcripts ranged from 531 bp to 1771 bp. Four transcripts encoded different CHH-family subtype I members, and one transcript encoded a subtype II member. RT-PCR and RACE approaches have confirmed the expression of these genes in males. The low degree of amino acid sequence identity among these neuropeptides suggests that they may have different specific function(s). Results from a phylogenetic tree analysis indicated that these neuropeptides were likely derived from a common ancestor gene resulting from mutation and gene duplication. These CHH-family members could be grouped into distinct clusters, indicating a strong structural/functional relationship among these neuropeptides. Eyestalk removal caused a significant increase in the expression of transcript 32710 but decreases in expression for transcript 28020. These findings suggest the possible regulation of these genes by eyestalk factor(s). In summary, the results of this study would justify a re-evaluation of the more generalized and pleiotropic functions of these neuropeptides. This study also represents the first report on the cloning/identification of five CHH family neuropeptides in a non-neuronal tissue from a single crustacean species.
近年来,RNA-Seq 技术被广泛应用于研究不同物种的转录组,有助于从不同非模式生物中鉴定大量新基因。在本研究中,从虾夷马粪海胆的精荚转录组中鉴定出了 5 种具有独特特征的神经肽 CHH/MIH/GIH 家族成员的转录本。这些转录本的大小范围从 531bp 到 1771bp。其中 4 种转录本编码不同的 CHH 家族亚型 I 成员,而 1 种转录本编码亚型 II 成员。RT-PCR 和 RACE 方法证实了这些基因在雄性中的表达。这些神经肽之间氨基酸序列的低同一性表明它们可能具有不同的特定功能。系统进化树分析的结果表明,这些神经肽可能起源于一个共同的祖先基因,通过突变和基因复制产生。这些 CHH 家族成员可以分为不同的簇,表明这些神经肽之间存在强烈的结构/功能关系。切除眼柄会导致转录本 32710 的表达显著增加,但转录本 28020 的表达减少。这些发现表明这些基因可能受到眼柄因子的调节。总之,本研究的结果证实了这些神经肽具有更为广泛和多效性功能的重新评估的必要性。本研究还代表了首次在单一甲壳动物的非神经元组织中克隆/鉴定 5 种 CHH 家族神经肽的报道。