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高二氧化碳改变了凡纳滨对虾(Litopenaeus vannamei)转录组的低氧反应,包括已知和新的血蓝蛋白异构体。

High CO2 alters the hypoxia response of the Pacific whiteleg shrimp (Litopenaeus vannamei) transcriptome including known and novel hemocyanin isoforms.

作者信息

Johnson Jillian G, Paul Matthew R, Kniffin Casey D, Anderson Paul E, Burnett Louis E, Burnett Karen G

机构信息

Grice Marine Laboratory, College of Charleston, Hollings Marine Laboratory, Charleston, South Carolina; and

Grice Marine Laboratory, College of Charleston, Hollings Marine Laboratory, Charleston, South Carolina; and.

出版信息

Physiol Genomics. 2015 Nov;47(11):548-58. doi: 10.1152/physiolgenomics.00031.2015. Epub 2015 Sep 1.

Abstract

Acclimation to low O2 in many organisms involves changes at the level of the transcriptome. Here we used high-throughput RNA sequencing (RNA-Seq) to explore the global transcriptomic response and specific involvement of a suite of hemocyanin (Hc) subunits to low O2 alone and in combination with high CO2, which naturally co-occurs with low O2. Hepatopancreas mRNA of juvenile L. vannamei exposed to air-saturated water, low O2, or low O2/high CO2 for 4 or 24 h was pooled, sequenced (HiSeq 2500) and assembled (Trinity: 52,190 contigs) to create a deep strand-specific reference transcriptome. Annotation of the assembly revealed sequences encoding the previously described small Hc subunit (HcS), and three full-length isoforms of the large subunit (HcL1-3). In addition to this, a previously unidentified full-length Hc subunit was discovered. Phylogenetic analysis demonstrated the subunit to be a β-type Hc subunit (denoted HcB), making this the first report of a β-type hemocyanin subunit in the Penaeoidea. RNAs of individual shrimp were sequenced; regulated genes identified from pairwise comparisons demonstrated a distinct pattern of regulation between prolonged low O2 and low O2/high CO2 treatments by GO term enrichment analysis (Roff-Bentzen, P < 0.0001), showcasing the stabilization of energetically costly translational machinery, mobilization of energy stores, and downregulation of the ubiquitin/proteasomal degradation machinery. Exposure to hypoxia for 24 h resulted in an increase in all of the full-length hemocyanin subunits (HcS, HcL1, HcL2, HcL3, and HcB). The addition of CO2 to hypoxia muted the transcriptomic response of all the Hc subunits to low O2, except for the β-type subunit.

摘要

许多生物对低氧的适应涉及转录组水平的变化。在这里,我们使用高通量RNA测序(RNA-Seq)来探索全球转录组反应以及一组血蓝蛋白(Hc)亚基单独对低氧以及与高二氧化碳(自然与低氧同时出现)联合作用的具体参与情况。将暴露于空气饱和水、低氧或低氧/高二氧化碳环境4小时或24小时的凡纳滨对虾幼体的肝胰腺mRNA进行混合、测序(HiSeq 2500)并组装(Trinity:52,190个重叠群),以创建一个深度链特异性参考转录组。对组装结果的注释揭示了编码先前描述的小Hc亚基(HcS)以及大亚基的三种全长异构体(HcL1 - 3)的序列。除此之外,还发现了一个先前未鉴定的全长Hc亚基。系统发育分析表明该亚基是一种β型Hc亚基(命名为HcB),这是对虾总科中β型血蓝蛋白亚基的首次报道。对单个虾的RNA进行测序;通过GO术语富集分析(Roff - Bentzen,P < 0.0001),从成对比较中鉴定出的受调控基因显示,在长时间低氧和低氧/高二氧化碳处理之间存在明显的调控模式,展示了能量消耗大的翻译机制的稳定、能量储备的动员以及泛素/蛋白酶体降解机制的下调。暴露于低氧24小时导致所有全长血蓝蛋白亚基(HcS、HcL1、HcL2、HcL3和HcB)增加。除β型亚基外,向低氧环境中添加二氧化碳减弱了所有Hc亚基对低氧的转录组反应。

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