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首页> 外文期刊>Marine biotechnology >De Novo Transcriptome Sequencing of the Snail Echinolittorina malaccana: Identification of Genes Responsive to Thermal Stress and Development of Genetic Markers for Population Studies
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De Novo Transcriptome Sequencing of the Snail Echinolittorina malaccana: Identification of Genes Responsive to Thermal Stress and Development of Genetic Markers for Population Studies

机译:De Novo转录组测序蜗牛Echinolittorina Malaccana:响应于热应力和遗传标志物的遗传标志物的基因鉴定

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摘要

Echinolittorina snails inhabit the upper intertidal rocky shore and face strong selection pressures from thermal extremes and fluctuations. Revealing the molecular processes of adaptive significance is greatly obstructed by the scarcity of genomic resource for these taxa. Here, we reported the first comprehensive transcriptome dataset for the genus Echinolittorina. Using Illumina HiSeq 2000 platform, about 52 M and 54 M paired-end clean reads were, respectively, generated for the control and heat-stressed libraries. Totally, 115,211 unique transcript fragments (unigenes) were assembled, with an average length of 453 bp and a N50 size of 492 bp. Approximately one third of the unigenes could be annotated according to their homology matches against the Nr, Swiss-Prot, COG, or KEGG databases, and they were found to represent 23,098 non-redundant genes. Gene expression comparison revealed that 1,267 and 6,663 annotated genes were, respectively, up- and downregulated with at least twofold changes upon heat stress. Gene Ontology and KEGG pathway analyses indicated that there were overrepresented amount of genes enriched in a broad spectrum of biological processes and pathways, including those associated with cytoskeleton organization, developmental regulation, signaling transduction, infection, and cardiac function. In addition, a transcriptome-wide search for polymorphic loci yielded a total of 11,228 simple sequence repeats (SSRs) from 9,938 unigenes and 138,631 single nucleotide polymorphism (SNP) and insertion/deletion (INDEL) sites among 22,770 unigenes. The large number of transcript sequences acquired, the biological pathways identified, and the candidate microsatellite and SNP/INDEL loci discovered in the study will serve as valuable resources for further investigations of genetic differentiation and thermal adaptation among populations.
机译:Echinolittorina蜗牛栖息于上透射岩石岸上,从极端和波动的波动面对强烈的选择压力。揭示适应性意义的分子过程受到这些分类群的基因组资源的稀缺性的大大阻碍。在这里,我们报告了Echinolittorina属的第一个综合转录组数据集。使用Illumina Hiseq 2000平台,分别为控制和热应力的文库产生约52米和54米的配对读数。完全,组装了115,211个独特的转录片段(unigenes),平均长度为453bp和492bp的N50尺寸。大约三分之一的unigenes可以根据他们的同源性与NR,瑞士 - Prot,Cog或Kegg数据库进行注释,并且发现它们代表23,098个非冗余基因。基因表达比较显示,在热应激后至少两倍的变化,分别上调和下调1,267和6,663个注释基因。基因本体和Kegg途径分析表明,在广泛的生物学过程和途径中富集了富集量的基因,包括与细胞骨架组织,发育调节,信号转导,感染和心脏功能相关的途径。此外,对多晶型基因座的转录组搜索产生的总共11,228个简单的序列重复(SSRS),从9,938个unigenes和138,631个单核苷酸多态性(SNP)和22,770个unegenes中的插入/缺失(Indel)位点。获得的大量转录物序列,鉴定的生物途径和研究中发现的候选微卫星和SNP / Indel基因座将作为有价值的资源,以进一步调查种群之间的遗传分化和热适应。

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