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Changes in Liver Proteome Expression of Senegalese Sole (Solea senegalensis) in Response to Repeated Handling Stress

机译:塞内加尔鞋底(Solea senegalensis)肝脏蛋白质组表达对重复处理压力的响应变化

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摘要

The Senegalese sole, a high-value flatfish, is a good candidate for aquaculture production. Nevertheless, there are still issues regarding this species' sensitivity to stress in captivity. We aimed to characterize the hepatic proteome expression for this species in response to repeated handling and identify potential molecular markers that indicate a physiological response to chronic stress. Two groups of fish were reared in duplicate for 28 days, one of them weekly exposed to handling stress (including hypoxia) for 3 min, and the other left undisturbed. Two-dimensional electrophoresis enabled the detection of 287 spots significantly affected by repeated handling stress (Wilcoxon-Mann-Whitney U test, p<0.05), 33 of which could be reliably identified by peptide mass spectrometry. Chronic exposure to stress seems to have affected protein synthesis, folding and turnover (40S ribosomal protein S12, cathepsin B, disulfide-isomerase A3 precursor, cell-division cycle 48, and five distinct heat shock proteins), amino acid metabolism, urea cycle and methylation/folate pathways (methionine adenosyltransferase I alpha , phenylalanine hydroxylase, mitochondrial agmatinase, serine hydroxymethyltransferase, 3-hydroxyanthranilate 3,4-dioxygenase, and betaine homocysteine methyltransferase), cytoskeletal (40S ribosomal protein SA, alpha -actin, beta -actin, alpha -tubulin, and cytokeratin K18), aldehyde detoxification (aldehyde dehydrogenase 4A1 family and aldehyde dehydrogenase 7A1 family), carbohydrate metabolism and energy homeostasis (fatty acid-binding protein, enolase 3, enolase 1, phosphoglycerate kinase, glyceraldehyde-3-phosphate dehydrogenase, aconitase 1, mitochondrial ATP synthase alpha -subunit, and electron-transfer flavoprotein alpha polypeptide), iron and selenium homeostasis (transferrin and selenium binding protein 1), steroid hormone metabolism (3-oxo-5- beta -steroid 4-dehydrogenase), and purine salvage (hypoxanthine phosphoribosyltransferase). Further characterization is required to fully assess the potential of these markers for the monitoring of fish stress response to chronic stressors of aquaculture environment.
机译:塞内加尔唯一的高价值比目鱼是水产养殖生产的理想人选。尽管如此,关于该物种对圈养压力的敏感性仍然存在一些问题。我们旨在表征这种蛋白质在重复处理中的肝脏蛋白质组表达,并鉴定潜在的分子标记,这些标记指示对慢性应激的生理反应。两组鱼一式两份饲养28天,其中一组每周暴露于压力下(包括缺氧)3分钟,另一组则不受干扰。二维电泳能够检测到287个受重复处理压力显着影响的斑点(Wilcoxon-Mann-Whitney U检验,p <0.05),其中33个可以通过肽质谱法可靠地鉴定。长期暴露于压力下似乎影响了蛋白质的合成,折叠和周转(40S核糖体蛋白S12,组织蛋白酶B,二硫键异构酶A3前体,细胞分裂周期48和五个不同的热休克蛋白),氨基酸代谢,尿素周期和甲基化/叶酸途径(甲硫氨酸腺苷转移酶Iα,苯丙氨酸羟化酶,线粒体胍丁胺酶,丝氨酸羟甲基转移酶,3-羟基邻氨基苯甲酸3,4-二加氧酶和甜菜碱高半胱氨酸甲基转移酶),细胞骨架(40S核糖体蛋白SA,α-肌动蛋白,β-肌动蛋白-微管蛋白和细胞角蛋白K18),醛解毒(醛脱氢酶4A1家族和醛脱氢酶7A1家族),碳水化合物的代谢和能量稳态(脂肪酸结合蛋白,烯醇酶3,烯醇酶1,磷酸甘油酸酯激酶,甘油醛-3-磷酸脱氢酶,乌头酸酶1,线粒体ATP合酶α-亚基和电子转移黄素蛋白α多肽),铁和硒体内稳态(转铁蛋白和硒结合蛋白1),类固醇激素代谢(3-氧代-5-β-类固醇4-脱氢酶)和嘌呤挽救(次黄嘌呤磷酸核糖基转移酶)。需要进一步表征以充分评估这些标记物的潜力,以监测鱼类对水产养殖环境慢性应激源的应激反应。

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