首页> 外文期刊>Comparative biochemistry and physiology, Part D. Genomics & proteomics >Gene expression profile of hepatopancreas from grass shrimp Palaemonetes pugio exposed to cyclic hypoxia
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Gene expression profile of hepatopancreas from grass shrimp Palaemonetes pugio exposed to cyclic hypoxia

机译:基因表达谱的肝胰腺草虾Palaemonetes pugio暴露于循环缺氧

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Estuarine organisms often experience periods of cyclic hypoxia characterized by hypoxia in the early morning and normoxia in the afternoon. Here we examine the genomic responses of grass shrimp, Palaemonetes pugio, exposed to cyclic hypoxia in the laboratory. Differentially expressed genes in the hepatopancreas were determined in cyclic hypoxic vs. normoxic control groups after 1, 2, 5 and 10 days of exposure to cyclic hypoxia using microarrays printed with 661 annotated transcripts obtained from multiple EST (expressed sequence tag) libraries. Sampling on each day was conducted at two different time series, one in the morning (representing low concentration of dissolved oxygen (DO), designated C-AM) and one in the afternoon (representing high DO concentration, designated C-PM). Distinct differences were observed between the number and identity of specific genes that were significantly down- or up-regulated in shrimp collected at the low DO and high DO points of the cyclic DO cycle. However, cluster analysis showed that the overall response patterns of high (C-PM) and low DO (C-AM) exposures were in the same cluster at 1, 2, and 5 days. In contrast, the response patterns on different days were in different clusters. Day 1 was characterized by up-regulation of 17 unknown genes in the morning and a transient down-regulation of several hemocyanin genes, which returned to normoxic control levels in the afternoon. Days 2 and 5 showed significant down-regulation of 10 (C-AM) and 15 (C-PM) unknown genes, respectively. On day 10 the high DO samples showed a dramatic increase in the number of up-regulated genes, including several distinct hemocyanin genes, and this profile did not cluster with any of the other treatment groups. Vitellogenin, cathepsin L, cytochrome c oxidase subunit III, and fatty acid binding protein 10 were the signature down-regulated genes at day 10 (C-AM). According to GO annotation, the most abundant group of genes for both cyclic low (C-AM) and high (C-PM) DO exposure was associated with transport, defense response, and metabolic process. The differentially expressed genes were mapped to KEGG metabolic and regulatory pathways according to the gene distribution in Drosophila pathway database. Cyclic high (C-PM) DO affected a broad range of pathways compared to cyclic low (C-AM) DO.
机译:河口生物经常经历的时期循环缺氧缺氧的特点早上和下午normoxia。我们检查的基因组反应草虾,Palaemonetes pugio,暴露于循环缺氧实验室。肝胰腺是确定循环缺氧与常氧对照组后1、2、5和10天的缺氧暴露于循环使用微阵列印有661注释记录来自多个美国东部时间(表示序列标签)库。在两个不同的时间序列,一个在早上(代表低的浓度溶解氧、指定C-AM)和一个下午(代表高浓度,指定C-PM)。数量和之间的差异观察身份的特定基因显著下降——或者上调虾收集的低和高做点循环周期。高的总体响应模式(C-PM)和低(C-AM)暴露在相同的集群在1、2和5天。在不同的日子在响应模式不同的集群。17个未知基因的上调和瞬态下调几个血蓝蛋白基因,回到常氧下午控制水平。显示显著下调10 (C-AM)分别和15 (C-PM)未知的基因。10高做样本显示大幅增加数量的差异基因,包括几个不同的血蓝蛋白基因,配置文件不与任何其他的集群治疗组。细胞色素c氧化酶亚基III和脂肪酸结合蛋白10人签名下调基因10天(C-AM)。去注释,最丰富的群基因对循环低(C-AM)、高(C-PM)暴露与运输有关,防御反应和代谢过程。差异表达基因映射到KEGG代谢和监管途径果蝇基因分布的途径数据库。各种途径相比,循环低(C-AM)做的。

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