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RNA-Seq Analysis for Assessing the Early Response to DSP Toxins in Mytilus galloprovincialis Digestive Gland and Gill

机译:RNA-SEQ分析评估米尔狼科病incialis消化腺和鳃的DSP毒素的早期反应

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摘要

The harmful effects of diarrhetic shellfish poisoning (DSP) toxins on mammalian cell lines have been widely assessed. Studies in bivalves suggest that mussels display a resistance to the cytogenotoxic effects of DSP toxins. Further, it seems that the bigger the exposure, the more resistant mussels become. To elucidate the early genetic response of mussels against these toxins, the digestive gland and the gill transcriptomes of Mytilus galloprovincialis after Prorocentrum lima exposure (100,000 cells/L, 48 h) were de novo assembled based on the sequencing of 8 cDNA libraries obtained using an Illumina HiSeq 2000 platform. The assembly provided 95,702 contigs. A total of 2286 and 4523 differentially expressed transcripts were obtained in the digestive gland and the gill, respectively, indicating tissue-specific transcriptome responses. These transcripts were annotated and functionally enriched, showing 44 and 60 significant Pfam families in the digestive gland and the gill, respectively. Quantitative PCR (qPCR) was performed to validate the differential expression patterns of several genes related to lipid and carbohydrate metabolism, energy production, genome integrity and defense, suggesting their participation in the protective mechanism. This work provides knowledge of the early response against DSP toxins in the mussel M. galloprovincialis and useful information for further research on the molecular mechanisms of the bivalve resistance to these toxins.
机译:广泛评估了腹泻贝类中毒(DSP)毒素对哺乳动物细胞系的有害影响。双抗体的研究表明,贻贝显示对DSP毒素的细胞诱导毒性作用的抵抗力。此外,似乎曝光越大,耐贻贝越多。为了阐明贻贝对这些毒素的早期遗传反应,脊髓植物利马腔暴露(100,000个细胞/ L,48h)氏菌病毒肠蠕动(100,000个细胞/ L,48h)的消化腺和鳃转录om是基于使用a的8个CDNA文库的测序组装的DE Novo组装Illumina Hiseq 2000平台。该组件提供了95,702个Contigs。在消化腺和鳃中分别总共2286和4523种差异表达的转录物,表明组织特异性转录组反应。这些转录物分别注释和功能富集,分别在消化腺和鳃中显示44和60个重要的PFAM系列。进行定量PCR(QPCR)以验证与脂质和碳水化合物代谢,能量产生,基因组完整性和防御有关的几种基因的差异表达模式,表明他们参与保护机制。这项工作提供了对贻贝M. Galloprovincialis中对DSP毒素的早期反应的了解,以及进一步研究对这些毒素的分子机制的进一步研究。

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