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用于鉴定与大菱鲆(Scophthalmus maximus)性腺分化、生长、免疫反应相关基因及标记发现的转录组分析

Transcriptome Analysis for Identification of Genes Related to Gonad Differentiation, Growth, Immune Response and Marker Discovery in The Turbot (Scophthalmus maximus).

作者信息

Ma Deyou, Ma Aijun, Huang Zhihui, Wang Guangning, Wang Ting, Xia Dandan, Ma Benhe

机构信息

Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Key Laboratory of Sustainable Development of Marine Fisheries, Ministry of Agriculture, Qingdao Key Laboratory for Marine Fish Breeding and Biotechnology, Qingdao, 266071, China.

Laboratory for Marine Biology and Biotechnology, Qingdao National Laboratory for Marine Science and Technology, Qingdao, 266071, China.

出版信息

PLoS One. 2016 Feb 29;11(2):e0149414. doi: 10.1371/journal.pone.0149414. eCollection 2016.

Abstract

BACKGROUND

Turbot Scophthalmus maximus is an economically important species extensively aquacultured in China. The genetic selection program is necessary and urgent for the sustainable development of this industry, requiring more and more genome background knowledge. Transcriptome sequencing is an excellent alternative way to identify transcripts involved in specific biological processes and exploit a considerable quantity of molecular makers when no genome sequences are available. In this study, a comprehensive transcript dataset for major tissues of S. maximus was produced on basis of an Illumina platform.

RESULTS

Total RNA was isolated from liver, spleen, kidney, cerebrum, gonad (testis and ovary) and muscle. Equal quantities of RNA from each type of tissues were pooled to construct two cDNA libraries (male and female). Using the Illumina paired-end sequencing technology, nearly 44.22 million clean reads in length of 100 bp were generated and then assembled into 106,643 contigs, of which 71,107 were named unigenes with an average length of 892 bp after the elimination of redundancies. Of these, 24,052 unigenes (33.83% of the total) were successfully annotated. GO, KEGG pathway mapping and COG analysis were performed to predict potential genes and their functions. Based on our sequence analysis and published documents, many candidate genes with fundamental roles in sex determination and gonad differentiation (dmrt1), growth (ghrh, myf5, prl/prlr) and immune response (TLR1/TLR21/TLR22, IL-15/IL-34), were identified for the first time in this species. In addition, a large number of credible genetic markers, including 21,192 SSRs and 8,642 SNPs, were identified in the present dataset.

CONCLUSION

This informative transcriptome provides valuable new data to increase genomic resources of Scophthalmus maximus. The future studies of corresponding gene functions will be very useful for the management of reproduction, growth and disease control in turbot aquaculture breeding programs. The molecular markers identified in this database will aid in genetic linkage analyses, mapping of quantitative trait loci, and acceleration of marker assisted selection programs.

摘要

背景

大菱鲆是中国广泛养殖的重要经济鱼类。遗传选育计划对于该产业的可持续发展至关重要且迫在眉睫,这需要越来越多的基因组背景知识。转录组测序是一种很好的替代方法,可用于识别参与特定生物学过程的转录本,并在没有基因组序列的情况下开发大量分子标记。在本研究中,基于Illumina平台构建了大菱鲆主要组织的综合转录本数据集。

结果

从肝脏、脾脏、肾脏、大脑、性腺(睾丸和卵巢)和肌肉中分离总RNA。将每种组织等量的RNA混合,构建两个cDNA文库(雄性和雌性)。使用Illumina双末端测序技术,产生了近4422万个长度为100 bp的clean reads,然后组装成106643个contig,去除冗余后,其中71107个被命名为unigene,平均长度为892 bp。其中,24052个unigene(占总数的33.83%)成功注释。进行了GO、KEGG通路映射和COG分析以预测潜在基因及其功能。基于我们的序列分析和已发表的文献,首次在该物种中鉴定出许多在性别决定和性腺分化(dmrt1)、生长(ghrh、myf5、prl/prlr)和免疫反应(TLR1/TLR21/TLR22、IL-15/IL-34)中起重要作用的候选基因。此外,在本数据集中鉴定出大量可靠的遗传标记,包括21192个SSR和8642个SNP。

结论

这个信息丰富的转录组提供了有价值的新数据,以增加大菱鲆的基因组资源。未来对相应基因功能的研究对于大菱鲆水产养殖育种计划中的繁殖、生长管理和疾病控制将非常有用。在该数据库中鉴定出的分子标记将有助于遗传连锁分析、数量性状位点定位以及加速标记辅助选择计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7744/4771204/3d7b8ad97ec8/pone.0149414.g001.jpg

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