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首页> 外文期刊>Science of the total environment >Full-length transcriptome sequences of ridgetail white prawn Exopalaemon carinicauda provide insight into gene expression dynamics during thermal stress
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Full-length transcriptome sequences of ridgetail white prawn Exopalaemon carinicauda provide insight into gene expression dynamics during thermal stress

机译:Ridgetail白虾Exopalaemon Carinicaua的全长转录组序列在热应力期间提供了对基因表达动态的洞察力

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摘要

Marine heat waves and extreme high temperature become more frequent and intense in these years, which affected the survival of aquaculture animals. The ridgetail white prawn Exopalaemon carinicauda is an important economic species in eastern China, which has remarkable thermal tolerance. However, there has been little study of its thermal-adaptation mechanisms due to the complex genetic structure and unknown genome. To better understand the molecular mechanisms of £. carinicauda to adapt to the changing temperature, a combination of Illumina-based short reads RNA-seq and single molecule real-time-based full-length transcriptome sequencing was used in this study. In total, 17,212 unigenes from high-quality transcripts of E carinicauda were generated and 14,663 complete ORFs were detected with an average length of 1980 bp. In addition, the transcriptome profiles of £ carinicauda treated with 34 °C heat stress for 6 and 24 h were analyzed. These differentially expressed genes were primarily enriched in oxidation-reduction process (Gene Ontology enrichment, GO) and the pathways of starch and sucrose metabolism (Kyoto Encyclopedia of Genes and Genomes enrichment, KEGG) after 6 h thermal stress, which indicated that £. carinicauda was suffering the attack by reactive oxygen species. After 24 h thermal stress, these differentially expressed genes were enriched in the pathway of lysosome, glycine, serine and threonine metabolism, fatty acid metabolism (KEGG), which indicated the oxidative stress was decreased. Interestingly, 40 genes for hemocyanin were found to be downregulated after 6 h heat stress, which indicated that the immunocompetence of £. carinicauda decreased after short term thermal stress (6 h). After 24 h thermal stress, E carinicauda showed transcriptional adaptation to high temperature by upregulating of 11 genes encoding molecular chaperones, including HSP40 and HSP90 which were firstly reported to be related to thermal stress in £ carinicauda. These results promote a better understanding of the thermal-adaptation mechanism of E. carinicauda.
机译:这些年来,海洋热波和极端的高温变得更频繁和激烈,影响了水产养殖动物的生存。 Ridgetail白虾Exopalaemon Carinicauda是中国东部的重要经济物种,具有显着的热耐受性。然而,由于复杂的遗传结构和未知的基因组,对其热适应机制几乎没有研究。更好地理解£的分子机制。在该研究中使用了克林纳适应温度变化的温度,基于Illumina的短读取RNA-SEQ和单分子实时的全长转录组测序。总共产生17,212名从e carinicaa的高质量转录物的未成熟,并且检测到14,663个完全orfs,平均长度为1980年的bp。此外,分析了用34℃热应激治疗6和24小时的kcinicaua的转录组谱。这些差异表达的基因主要富含氧化还原过程(基因本体富集,GO)和淀粉和蔗糖代谢的途径(基因的蔗糖和基因组富集,Kegg),其在6小时后胁迫后,这表明£。 Carinicauda通过反应性氧物种遭受攻击。在24小时的热应力之后,这些差异表达基因富含溶酶体,甘氨酸,丝氨酸和苏氨酸代谢的途径,脂肪酸代谢(Kegg),其表明氧化应激降低。有趣的是,发现40种血红蛋白基因在6小时热胁迫后下调,这表明£的免疫功能性。在短期热应力(6小时)后捕鱼减少。在24小时热应力之后,E Carinicaua通过上调编码分子伴侣的11个基因,包括Hsp40和Hsp90,据报道,据据报道,据报道,该转录适应高温,其中据报道,据报道,该HSP40和HSP90与克利诺加群岛的热应力有关。这些结果促进了更好地了解E. Carinicauda的热适应机制。

著录项

  • 来源
    《Science of the total environment 》 |2020年第10期| 141238.1-141238.11| 共11页
  • 作者单位

    Key Laboratory for Sustainable Utilization of Marine Fisheries Resources Ministry of Agriculture Yellow Sea Fisheries Research Institute Chinese Academy of Fishery Sciences Qingdao. PRChina Function Laboratory for Marine Fisheries Science and Food Production Processes Qingdao National Laboratory for Marine Science and Technology Qingdao PR China;

    Key Laboratory for Sustainable Utilization of Marine Fisheries Resources Ministry of Agriculture Yellow Sea Fisheries Research Institute Chinese Academy of Fishery Sciences Qingdao. PRChina Function Laboratory for Marine Fisheries Science and Food Production Processes Qingdao National Laboratory for Marine Science and Technology Qingdao PR China;

    Key Laboratory for Sustainable Utilization of Marine Fisheries Resources Ministry of Agriculture Yellow Sea Fisheries Research Institute Chinese Academy of Fishery Sciences Qingdao. PRChina Function Laboratory for Marine Fisheries Science and Food Production Processes Qingdao National Laboratory for Marine Science and Technology Qingdao PR China;

    Key Laboratory for Sustainable Utilization of Marine Fisheries Resources Ministry of Agriculture Yellow Sea Fisheries Research Institute Chinese Academy of Fishery Sciences Qingdao. PRChina Function Laboratory for Marine Fisheries Science and Food Production Processes Qingdao National Laboratory for Marine Science and Technology Qingdao PR China;

    Key Laboratory for Sustainable Utilization of Marine Fisheries Resources Ministry of Agriculture Yellow Sea Fisheries Research Institute Chinese Academy of Fishery Sciences Qingdao. PRChina Function Laboratory for Marine Fisheries Science and Food Production Processes Qingdao National Laboratory for Marine Science and Technology Qingdao PR China;

    Guangdong Evergreen Ltd. Corporation Zhanjiang PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Marine heat wave; Full-length transcriptome; Exopalaemon carinicauda; Differential expression genes; Thermal adaptation; Heat shock protein;

    机译:海洋热浪;全长转录组;Exopalaemon carinicauda;差异表达基因;热适应;热休克蛋白;

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