IF 4.1 2区 农林科学 Q1 FISHERIES
Marcio Aversa-Marnai , Alejandro Perretta , Paula Céspedes , Ignacio Quartiani , Daniel Conijeski , Mariela Bollati-Fogolin , Andrea Villarino , Valeria Silva-Álvarez , Ana María Ferreira
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引用次数: 0

摘要

鲟鱼养殖面临着全球变暖带来的挑战,因为慢性热应激(CHS)会危及鱼类健康和生产的可持续性。为了解决这个问题,我们分析了俄罗斯鲟鱼(Acipenser gueldenstaedtii)在受到 CHS 和嗜水气单胞菌(Aeromonas hydrophila)挑战后的血清先天成分和腹膜的细胞组成。暴露于 CHS 的俄罗斯鲟鱼的血清总蛋白水平和碱性磷酸酶活性均有所下降,而同时暴露于细菌挑战和 CHS 的鲟鱼的下降幅度更大。这组鲟鱼的健康状况恶化,生长速度降低,死亡率升高。在可耐受的温度下,细菌挑战会增加血清脑磷脂、溶菌酶和血清淀粉样蛋白 A 的水平,而在 CHS 条件下,血清脑磷脂、溶菌酶和血清淀粉样蛋白 A 的水平往往较低。俄罗斯鲟鱼的天真腹膜细胞组成显示,骨髓细胞占主导地位,淋巴细胞所占比例较小。CHS 改变了这种分布,增加了淋巴细胞的比例,同时降低了骨髓细胞的比例。CHS 减少了具有最高吞噬潜能的髓样细胞,这可能会影响腹膜细菌的清除。主成分分析表明,鲟鱼的整体先天反应随温度暴露而变化,这证明了 CHS 对抗菌反应的影响。总之,这项研究首次展示了软骨鱼腹膜细胞的组成。此外,它还证明了 CHS 对鲟鱼早期全身和腹膜抗蚜蝇反应的破坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chronic heat stress reshapes Russian sturgeon innate immune response to Aeromonas hydrophila challenge

Chronic heat stress reshapes Russian sturgeon innate immune response to Aeromonas hydrophila challenge
Sturgeon aquaculture faces challenges due to global warming, as chronic heat stress (CHS) jeopardises fish health and production sustainability. To tackle this issue, we analysed serum innate components and the cellular composition of the peritoneum in Russian sturgeons (Acipenser gueldenstaedtii) subjected to CHS and challenged with Aeromonas hydrophila. Russian sturgeons exposed to CHS exhibited a reduction in the serum levels of total protein and alkaline phosphatase activity, trending to a higher decrease in sturgeons exposed to both bacterial challenge and CHS. This sturgeon group showed a worsened health status, reduced growth and a higher mortality rate. Under tolerable temperatures, the bacterial challenge increased serum ceruloplasmin, lysozyme and serum amyloid A levels, which tended to be lower under CHS. The naive peritoneal cellular composition of the Russian sturgeon revealed a predominance of myeloid cells, with lymphoid cells present in a smaller proportion. CHS altered this distribution, increasing lymphoid while reducing myeloid cell percentages and A. hydrophila challenge reverted these alterations. Myeloid cells exhibiting the highest phagocytic potential were reduced by CHS, potentially compromising peritoneal bacterial clearance. Principal component analysis revealed that sturgeons' integral innate response varied according to temperature exposure, evidencing CHS's impact on the anti-bacterial response. Overall, this study provides a first picture of the peritoneal cellular composition of a chondrostean fish. Furthermore, it demonstrates the disruption caused by CHS on the sturgeon's early systemic and peritoneal responses mounted against A. hydrophila.
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来源期刊
Fish & shellfish immunology
Fish & shellfish immunology 农林科学-海洋与淡水生物学
CiteScore
7.50
自引率
19.10%
发文量
750
审稿时长
68 days
期刊介绍: Fish and Shellfish Immunology rapidly publishes high-quality, peer-refereed contributions in the expanding fields of fish and shellfish immunology. It presents studies on the basic mechanisms of both the specific and non-specific defense systems, the cells, tissues, and humoral factors involved, their dependence on environmental and intrinsic factors, response to pathogens, response to vaccination, and applied studies on the development of specific vaccines for use in the aquaculture industry.
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