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首页> 外文期刊>Progress in Biophysics and Molecular Biology: An International Review Journal >Analyses of the molecular mechanisms associated with salinity adaption of Trachidermus fasciatus through combined iTRAQ-based proteomics and RNA sequencing-based transcriptomics
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Analyses of the molecular mechanisms associated with salinity adaption of Trachidermus fasciatus through combined iTRAQ-based proteomics and RNA sequencing-based transcriptomics

机译:基于ITRAQ的蛋白质组学和基于RNA测序的转录组合的Trachidermus fasciatus盐度与盐度组合相关的分子机制分析

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摘要

Osmoregulation mechanism underlying acclimation and adaptation of migratory fish to different salinities has been studied for decades. Recently developed transcriptomic and proteomic techniques would make it possible to provide more reliable data to decipher the mechanism study at a molecular level. Here in this study, an integrative analysis of the kidney-specific transcriptome and proteome was performed to identify important regulators and pathways involved in salinity adaption of roughskin sculpin (Trachidermus fasciatus). Fish were subjected to seawater-to-freshwater transfer that was achieved in 24 h, samples were collected at 12, 24 and 48 h after the start of the experiment. Time course profiling of gene and protein expressions were examined using RNA-seq and iTRAQ methods. A total of 1504 differentially expressed genes (DEGs) and 378 differentially expressed proteins (DEPs) were identified at the three time points. 66 proteins were filtered by correlation of transcriptome and proteome results. When comparing the data obtained from the three time points, 12 h exhibited the largest number of DEGs and DEPs, suggesting the time course experiment is critical to clarify the framework of regulatory genes proteins in response to salinity change. This study provides the first time-course, kidney-specific, combined transcriptomic and proteomic profiling associated with salinity adaption of Trachidermus fasciatus. The results revealed the possibility of T. fasciatus as an experimental animal for osmoregulation studies, showed the powerfulness of combining transcriptomic and proteomic approaches to provide molecular insights of osmoregulation mechanisms in migratory fish. (C) 2018 Published by Elsevier Ltd.
机译:几十年来研究了适应迁移到不同盐水的渗透性和适应不同盐水的机制。最近开发的转录组和蛋白质组学技术将使可以提供更可靠的数据来破译分子水平的机制研究。在此研究中,进行了对肾特异性转录组和蛋白质组的一致性分析,以鉴定粗糙度适应粗糙的调节剂和致病术的重要调节因子和途径。对24小时进行的鱼类进行海水到淡水转移,在实验开始后12,24和48小时收集样品。使用RNA-SEQ和ITRAQ方法检查基因和蛋白质表达的时间过程分析。在三个时间点中鉴定了总共1504个差异表达基因(DEGS)和378个差异表达的蛋白质(DEPS)。通过转录组和蛋白质组结果的相关来过滤66个蛋白质。当比较从三个时间点获得的数据时,12小时展示了最大的DEG和DEPS,表明时间课程实验至关重要,以澄清调节基因蛋白响应盐度变化的框架。本研究提供了与Trachidermus Fasciatus的盐度适应相关的第一次时间,肾特异性,组合的转录组和蛋白质组学分析。结果表明,T.Fasciatus作为OsmoreGulation研究的实验动物的可能性,表明了转录组和蛋白质组学方法组合的强大性,以提供迁移鱼中OsmoreGulation机制的分子见解。 (c)2018由elestvier有限公司出版

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