Laboratory for Marine Fisheries Science and Food Production Processes, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.
Key Laboratory of Sustainable Development of Marine Fisheries, Ministry of Agriculture, Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao, China.
PLoS One. 2019 Apr 8;14(4):e0211182. doi: 10.1371/journal.pone.0211182. eCollection 2019.
In order to screen the candidate genes of Fenneropenaeus chinensis related to low-temperature tolerance, this research takes juvenile prawns of F. chinensis (P40) in low temperature stress group (4°C) and normal temperature group (18°C) as experimental materials. The results showed that a total of 127,939 Unigenes with average length of 1,190 bp were obtained by assembly, of which 46% were annotated in the Nr database. A total of 1,698 differentially expressed genes were screened by differential gene expression analysis, of which 920 genes showed up-regulated expression and 778 genes showed down-regulated expression. Both GO and KEGG enrichment analysis revealed that differentially expressed genes were enriched in spliceosomes, ribosomes, bile secretion, ABC transport pathways, and cellular nitrogen compound synthesis. A further in-depth analysis obtained 8 genes that may be associated with low-temperature traits of F. chinensis. Five of them displayed up-regulated expression, including ATP-binding cassette protein C, acid ceramidase, glutathione transferase, C-type lectin and heat shock protein HSP70. The remaining three genes, γ-butyl betaine hydroxylase, β-hexosaminidase A and long chain fatty acid-CoA ligase displayed down-regulated expression. Eight differentially expressed genes were randomly selected and the real time RT-PCR verification showed that their expression levels were consistent with the sequencing results, demonstrating the accuracy of the sequencing results. The results of this study provide basic data for revealing the molecular mechanisms of F. chinensis in response to low temperature stress and the molecular assisted breeding of F. chinensis in low temperature.
为了筛选中国对虾(Fenneropenaeus chinensis)低温耐受相关的候选基因,本研究以低温胁迫组(4°C)和常温组(18°C)的中国对虾幼虾为实验材料。结果表明,通过组装共获得 127939 条平均长度为 1190bp 的 Unigenes,其中 46%在 Nr 数据库中得到注释。通过差异基因表达分析共筛选出 1698 个差异表达基因,其中 920 个基因表现为上调表达,778 个基因表现为下调表达。GO 和 KEGG 富集分析显示,差异表达基因富集在剪接体、核糖体、胆汁分泌、ABC 转运途径和细胞含氮化合物合成等途径。进一步深入分析获得了 8 个可能与中国对虾低温特性相关的基因。其中 5 个基因表现为上调表达,包括 ATP 结合盒蛋白 C、酸性神经酰胺酶、谷胱甘肽转移酶、C 型凝集素和热休克蛋白 HSP70。其余 3 个基因,γ-丁基甜菜碱羟化酶、β-己糖胺酶 A 和长链脂肪酸-CoA 连接酶,表现为下调表达。随机选择 8 个差异表达基因进行实时 RT-PCR 验证,结果显示其表达水平与测序结果一致,证明了测序结果的准确性。本研究结果为揭示中国对虾低温胁迫响应的分子机制以及中国对虾低温分子辅助育种提供了基础数据。