Reference transcriptome assembly of a protogynous sex change fish, harlequin sandsmelt (Parapercis pulchella)

IF 1.3 4区 生物学 Q4 GENETICS & HEREDITY
Akifumi Yao, Hisanori Kohtsuka, Toru Miura
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Abstract

The harlequin sandsmelt (Parapercis pulchella) is a female-to-male sex change fish in which functional females possess ovotestes that consist of both ovarian and testicular tissues. These features indicate that this species could be an excellent model for studying the flexibility of sex differentiation in vertebrates. However, genetic resources in this species have so far been limited. Therefore, in this study, the reference transcriptome of this fish was constructed through RNA-sequencing, de novo transcriptome assembly, superTranscripts construction, and functional annotations. To obtain as many genes as possible, RNA was extracted from various tissues (brains, gills, hearts, livers, guts, and gonads) and various sexual stages (females, individuals during sex change, and males) and then subjected to sequencing and downstream analyses. As a result, 91,884 representative transcripts with 32,627 protein-coding sequences were generated. 72.2% of protein-coding sequences (23,566 sequences) were functionally annotated. Also, our analysis shows that the superTranscripts method effectively removes redundant sequences from raw-assembled data compared with other strategies. The resultant dataset is a valuable resource for future molecular developmental studies on sex change in P. pulchella.

原雌性变性鱼类哈氏沙鲅(Parapercis pulchella)的参考转录组汇编
胭脂鱼(Parapercis pulchella)是一种雌性变雄性的变性鱼类,其中功能性雌鱼的卵巢由卵巢和睾丸组织组成。这些特征表明,该物种是研究脊椎动物性别分化灵活性的极佳模型。然而,迄今为止该物种的遗传资源有限。因此,本研究通过 RNA 测序、从头构建转录组、超级转录本构建和功能注释来构建该鱼类的参考转录组。为了获得尽可能多的基因,我们从不同组织(脑、鳃、心、肝、内脏和性腺)和不同性别阶段(雌性、变性个体和雄性)提取 RNA,然后进行测序和下游分析。结果产生了 91,884 个代表性转录本和 32,627 个蛋白质编码序列。72.2%的蛋白质编码序列(23,566 个序列)得到了功能注释。此外,我们的分析表明,与其他方法相比,超级转录本方法能有效去除原始组装数据中的冗余序列。由此产生的数据集是未来对 P. pulchella 性变化进行分子发育研究的宝贵资源。
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来源期刊
Marine genomics
Marine genomics 生物-遗传学
CiteScore
3.60
自引率
5.30%
发文量
50
审稿时长
29 days
期刊介绍: The journal publishes papers on all functional and evolutionary aspects of genes, chromatin, chromosomes and (meta)genomes of marine (and freshwater) organisms. It deals with new genome-enabled insights into the broader framework of environmental science. Topics within the scope of this journal include: • Population genomics and ecology • Evolutionary and developmental genomics • Comparative genomics • Metagenomics • Environmental genomics • Systems biology More specific topics include: geographic and phylogenomic characterization of aquatic organisms, metabolic capacities and pathways of organisms and communities, biogeochemical cycles, genomics and integrative approaches applied to microbial ecology including (meta)transcriptomics and (meta)proteomics, tracking of infectious diseases, environmental stress, global climate change and ecosystem modelling.
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