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首页> 外文期刊>Biological research: BR >De novo transcriptome assembly, functional annotation and differential gene expression analysis of juvenile and adult E. fetida , a model oligochaete used in ecotoxicological studies
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De novo transcriptome assembly, functional annotation and differential gene expression analysis of juvenile and adult E. fetida , a model oligochaete used in ecotoxicological studies

机译:从头转录组组装,功能注释和差异基因表达分析的少年和成年大肠埃希氏菌,一种模型低聚生态毒理学研究中使用

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Earthworms are sensitive to toxic chemicals present in the soil and so are useful indicator organisms for soil health. Eisenia fetida are commonly used in ecotoxicological studies; therefore the assembly of a baseline transcriptome is important for subsequent analyses exploring the impact of toxin exposure on genome wide gene expression. This paper reports on the de novo transcriptome assembly of E. fetida using Trinity, a freely available software tool. Trinotate was used to carry out functional annotation of the Trinity generated transcriptome file and the transdecoder generated peptide sequence file along with BLASTX, BLASTP and HMMER searches and were loaded into a Sqlite3 database. To identify differentially expressed transcripts; each of the original sequence files were aligned to the de novo assembled transcriptome using Bowtie and then RSEM was used to estimate expression values based on the alignment. EdgeR was used to calculate differential expression between the two conditions, with an FDR corrected P value cut off of 0.001, this returned six significantly differentially expressed genes. Initial BLASTX hits of these putative genes included hits with annelid ferritin and lysozyme proteins, as well as fungal NADH cytochrome b5 reductase and senescence associated proteins. At a cut off of P?=?0.01 there were a further 26 differentially expressed genes. These data have been made publicly available, and to our knowledge represent the most comprehensive available transcriptome for E. fetida assembled from RNA sequencing data. This provides important groundwork for subsequent ecotoxicogenomic studies exploring the impact of the environment on global gene expression in E. fetida and other earthworm species.
机译:are对土壤中存在的有毒化学物质敏感,因此是土壤健康的有用指示生物。费雪艾塞尼亚(Eisenia fetida)常用于生态毒理学研究;因此,基线转录组的装配对于探索毒素暴露对全基因组基因表达的影响的后续分析非常重要。本文使用免费提供的软件工具Trinity报告了f。fetida的从头转录组装配。 Trinotate用于对Trinity生成的转录组文件和转解码器生成的肽序列文件进行功能注释,以及BLASTX,BLASTP和HMMER搜索,并加载到Sqlite3数据库中。鉴定差异表达的转录本;使用Bowtie将每个原始序列文件与从头组装的转录组进行比对,然后使用RSEM根据比对估计表达值。 EdgeR用于计算两个条件之间的差异表达,FDR校正的P值截止为0.001,这返回了六个显着差异表达的基因。这些推定基因的最初BLASTX命中包括:环铁蛋白和溶菌酶蛋白,以及真菌NADH细胞色素b5还原酶和衰老相关蛋白。在P 2 = 0.01时,还有26个差异表达的基因。这些数据已公开提供,据我们所知,代表从RNA测序数据中收集到的最广泛的E. fetida转录组。这为后续的生态毒理基因组学研究提供了重要的基础,这些研究探索了环境对大肠埃希菌和其他earth物种中全球基因表达的影响。

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