Understanding the spleen response of Russian sturgeon (Acipenser gueldenstaedtii) dealing with chronic heat stress and Aeromonas hydrophila challenge

IF 2.2 2区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Comparative Biochemistry and Physiology D-Genomics & Proteomics Pub Date : 2024-11-05 DOI:10.1016/j.cbd.2024.101352
Alicia Costábile , Gonzalo Paredes , Marcio Aversa-Marnai , Carmen Lorenzo , Diana Pérez Etcheverry , Mauricio Castellano , Ignacio Quartiani , Daniel Conijeski , Alejandro Perretta , Andrea Villarino , Ana María Ferreira , Valeria Silva-Álvarez
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Abstract

Sturgeon aquaculture has grown in recent years, driven by increasing global demand for its highly valued products. Russian sturgeon (Acipenser gueldenstaedtii), recognised as one of the most valuable species for caviar production, is farmed in several warm-temperate regions. However, the substantial temperature increase due to global warming represents a challenge for developing sturgeon aquaculture. Previously we demonstrated that Russian sturgeon under chronic heat stress (CHS) exhibited a liver metabolic reprogramming to meet energy demands, weakening their innate defences and leading to increased mortality and economic losses. Here, we used RNA-seq technology to analyse regulated genes in the spleen of Russian sturgeons exposed to CHS and challenged with Aeromonas hydrophila. The assembly gave 253,415 unigenes, with 13.7 % having at least one reliable functional annotation. We found that CHS caused mild splenitis and upregulated genes related to protein folding, heat shock response, apoptosis and autophagy while downregulated genes associated with the cell cycle. The cell cycle arrest was maintained upon A. hydrophila challenge in heat-stressed fish, potentially inducing cell senescence. Surprisingly, immunoglobulin heavy and light chains were upregulated in the spleen of stressed sturgeons but not in those maintained at tolerable temperatures; however, no changes in IgM serum levels were observed in any condition. Our findings indicate that long-term exposure to non-tolerable temperatures induced a heat shock response and activated apoptosis and autophagy processes in the spleen. These mechanisms may enable the control of tissue damage and facilitate the recycling of cell components in a condition where the nutrient supply by the liver might be insufficient. Stressed sturgeons challenged with A. hydrophila maintain these mechanisms, which could culminate in cellular senescence.

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了解俄罗斯鲟鱼(Acipenser gueldenstaedtii)对慢性热应激和嗜水气单胞菌挑战的脾脏反应。
近年来,由于全球对鲟鱼高价值产品的需求不断增长,鲟鱼养殖业也随之增长。俄罗斯鲟鱼(Acipenser gueldenstaedtii)是公认的最有价值的鱼子酱生产物种之一,在几个暖温带地区都有养殖。然而,全球变暖导致气温大幅升高,给鲟鱼养殖业的发展带来了挑战。以前我们曾证实,俄罗斯鲟鱼在慢性热应激(CHS)下表现出肝脏代谢重编程以满足能量需求,削弱了其先天防御能力,导致死亡率上升和经济损失。在这里,我们利用 RNA-seq 技术分析了暴露于 CHS 并受到嗜水气单胞菌挑战的俄罗斯鲟鱼脾脏中的调控基因。组装结果显示有 253,415 个单个基因,其中 13.7% 至少有一个可靠的功能注释。我们发现,CHS 会导致轻度脾炎,并上调与蛋白质折叠、热休克反应、细胞凋亡和自噬相关的基因,同时下调与细胞周期相关的基因。当热应激鱼受到蚜蝇疫病挑战时,细胞周期的停滞仍会持续,这可能会诱导细胞衰老。令人惊讶的是,受热应激的鲟鱼脾脏中免疫球蛋白重链和轻链上调,而在可耐受温度下的鲟鱼脾脏中则没有上调;但是,在任何条件下都没有观察到 IgM 血清水平的变化。我们的研究结果表明,长期暴露在非耐受温度下会诱发热休克反应,并激活脾脏中的细胞凋亡和自噬过程。在肝脏营养供应不足的情况下,这些机制可控制组织损伤并促进细胞成分的循环。受刺激的鲟鱼在嗜水鲱鱼的挑战下会维持这些机制,最终导致细胞衰老。
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来源期刊
CiteScore
5.10
自引率
3.30%
发文量
69
审稿时长
33 days
期刊介绍: Comparative Biochemistry & Physiology (CBP) publishes papers in comparative, environmental and evolutionary physiology. Part D: Genomics and Proteomics (CBPD), focuses on “omics” approaches to physiology, including comparative and functional genomics, metagenomics, transcriptomics, proteomics, metabolomics, and lipidomics. Most studies employ “omics” and/or system biology to test specific hypotheses about molecular and biochemical mechanisms underlying physiological responses to the environment. We encourage papers that address fundamental questions in comparative physiology and biochemistry rather than studies with a focus that is purely technical, methodological or descriptive in nature.
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