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时间转录组谱分析揭示了大型淡水虾在急性盐碱性应激下基因表达的动态变化。

Temporal Transcriptomic Profiling Reveals Dynamic Changes in Gene Expression of Giant Freshwater Prawn upon Acute Saline-Alkaline Stresses.

机构信息

Key Laboratory of Freshwater Aquatic Genetic Resources, Ministry of Agriculture and Rural Affairs, Shanghai Ocean University, Shanghai, 201306, China.

National Demonstration Centre for Experimental Fisheries Science Education, Shanghai Ocean University, Shanghai, 201306, China.

出版信息

Mar Biotechnol (NY). 2024 Jun;26(3):511-525. doi: 10.1007/s10126-024-10314-y. Epub 2024 May 15.

Abstract

Bicarbonate and sulfate are among two primary ion constituents of saline-alkaline water, with excessive levels potentially causing metabolic disorders in crustaceans, affecting their molting and interrupting development. As an economically important crustacean species, the molecular adaptive mechanism of giant freshwater prawn Macrobrachium rosenbergii in response to the stress of bicarbonate and sulfate remains unexplored. To investigate the mechanism underlying NaHCO, NaSO, and mixed NaHCO, NaSO stresses, M. rosenbergii larvae were exposed to the above three stress conditions, followed by total RNA extraction and high-throughput sequencing at eight distinct time points (0, 4, 8, 12, 24, 48, 72, and 96 h). Subsequent analysis revealed 13, 16, and 13 consistently identified differentially expressed genes (DEGs) across eight time points under three stress conditions. These consistently identified DEGs were significantly involved in the Gene Ontology (GO) terms of chitin-based cuticle development, protein-carbohydrate complex, structural constituent of cuticle, carnitine biosynthetic process, extracellular matrix, and polysaccharide catabolic process, indicating that alkaline stresses might potentially impact the energy metabolism, growth, and molting of M. rosenbergii larvae. Particularly, the transcriptome data revealed that DEGs associated with energy metabolism, immunity, and amino acid metabolism were enriched across multiple time points under three stress conditions. These DEGs are linked to Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways, including glycolysis/glucogenesis, amino sugar and nucleotide sugar metabolism, and lysine degradation. Consistent enrichment findings across the three stress conditions support conclusions above. Together, these insights are instrumental in enhancing our understanding of the molecular mechanisms underlying the alkaline response in M. rosenbergii larvae. Additionally, they offer valuable perspectives on the regulatory mechanisms of freshwater crustaceans amid saline-alkaline water development.

摘要

碳酸氢盐和硫酸盐是盐碱水中的两种主要离子成分,其含量过高可能导致甲壳类动物代谢紊乱,影响其蜕皮和发育。巨型淡水虾罗氏沼虾是一种经济上重要的甲壳类动物,其对碳酸氢盐和硫酸盐胁迫的分子适应机制尚不清楚。为了研究罗氏沼虾幼虫应对碳酸氢盐、硫酸盐和混合碳酸氢盐、硫酸盐胁迫的分子适应机制,将罗氏沼虾幼虫暴露于上述三种胁迫条件下,然后在八个不同时间点(0、4、8、12、24、48、72 和 96 h)提取总 RNA 并进行高通量测序。随后的分析表明,在三种胁迫条件下,8 个时间点有 13、16 和 13 个一致鉴定的差异表达基因(DEG)。这些一致鉴定的 DEG 显著参与了基于几丁质的表皮发育、蛋白质-碳水化合物复合物、表皮结构成分、肉碱生物合成过程、细胞外基质和多糖分解代谢的基因本体论(GO)术语,表明碱性胁迫可能会影响罗氏沼虾幼虫的能量代谢、生长和蜕皮。特别是,转录组数据表明,与能量代谢、免疫和氨基酸代谢相关的 DEG 在三种胁迫条件下的多个时间点都有富集。这些 DEG 与京都基因与基因组百科全书(KEGG)途径有关,包括糖酵解/糖异生、氨基糖和核苷酸糖代谢以及赖氨酸降解。三种胁迫条件下的一致富集结果支持了上述结论。这些结果共同增强了我们对罗氏沼虾幼虫碱性反应分子机制的理解。此外,它们为在盐水-碱性水开发过程中淡水甲壳类动物的调控机制提供了有价值的视角。

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