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De novo transcriptome analysis of Perna viridis highlights tissue-specific patterns for environmental studies

机译:从新的转录组分析Perna viridis强调了环境研究的组织特异性模式

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Background The tropical green-lipped mussel Perna viridis is a common biomonitor throughout the Indo-Pacific region that is used for environmental monitoring and ecotoxicological investigations. However, there is limited molecular data available regarding this species. We sought to establish a global transcriptome database from the tissues of adductor muscle, gills and the hepatopancreas of P. viridis in an effort to advance our understanding of the molecular aspects involved during specific toxicity responses in this sentinel species. Results Illumina sequencing results yielded 544,272,542 high-quality filtered reads. After de novo assembly using Trinity, 233,257 contigs were generated with an average length of 1,264?bp and an N50 length of 2,868?bp; 192,879 assembled transcripts and 150,111 assembled unigenes were obtained after clustering. A total of 93,668 assembled transcripts (66,692 assembled genes) with putative functions for protein domains were predicted based on InterProScan analysis. Based on similarity searches, 44,713 assembled transcripts and 25,319 assembled unigenes were annotated with at least one BLAST hit. A total of 21,262 assembled transcripts (11,947 assembled genes) were annotated with at least one well-defined Gene Ontology (GO) and 5,131 assembled transcripts (3,181 assembled unigenes) were assigned to 329 Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways. The quantity of assembled unigenes and transcripts obtained from male and female mussels were similar but varied among the three studied tissues, with the highest numbers recorded in the gills, followed by the hepatopancreas, and then the adductor muscle. Multivariate analyses revealed strong tissue-specific patterns among the three different tissues, but not between sexes in terms of expression profiles for annotated genes in various GO terms, and genes associated with stress responses and degradation of xenobiotics. The expression profiles of certain selected genes in each tissue type were further validated using real-time quantitative polymerase chain reaction assays and a similar tissue-specific trend was seen. Conclusions The extensive sequence data generated from this study will provide a valuable molecular resource for facilitating environmental studies with P. viridis, and highlight the importance of tissue-specific approaches in the future.
机译:背景技术热带绿色唇贻贝贻贝(Perna viridis)是整个印度太平洋地区的常见生物监测器,用于环境监测和生态毒理学调查。但是,有关该物种的分子数据有限。我们试图建立一个全球转录组数据库,从内生肌,g和肝假单胞菌的肝胰腺组织中建立一个转录组数据库,以努力增进我们对这种前哨物种特定毒性反应中涉及的分子方面的了解。结果Illumina测序结果产生了544,272,542高质量的过滤读数。使用Trinity从头组装后,产生了233257个重叠群,平均长度为1264?bp,N50长度为2868?bp。聚类后​​获得192,879个组装的转录本和150,111个组装的单基因。根据InterProScan分析,总共预测了93,668个组装转录本(66,692个组装基因),这些转录本具有蛋白质结构域的推定功能。根据相似性搜索,至少有一个BLAST命中注解了44,713个组装的转录本和25,319个组装的单基因。用至少一种定义明确的基因本体论(GO)注释了总共21,262个转录本(11,947个组装基因),并将5,131个转录本(3,181个组装单基因)分配给329条《京都议定书》的基因和基因组(KEGG)途径。从雄性和雌性贻贝获得的组装单基因和转录本的数量相似,但在三个研究组织中有所不同,varied中记录的数量最高,其次是肝胰脏,然后是内收肌。多变量分析显示,在三种不同组织中,不同GO术语中注释基因的表达谱以及与应激反应和异源生物降解有关的基因的表达谱方面,在三种不同组织之间有很强的组织特异性模式,但在性别之间却没有。使用实时定量聚合酶链反应分析进一步验证了每种组织类型中某些选定基因的表达谱,并观察到了类似的组织特异性趋势。结论从这项研究中产生的广泛序列数据将为促进绿色假单胞菌的环境研究提供有价值的分子资源,并强调未来组织特异性方法的重要性。

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