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Exposure of gnotobiotic Artemia franciscana larvae to abiotic stress promotes heat shock protein 70 synthesis and enhances resistance to pathogenic Vibrio campbellii

机译:暴露于非生物成因的生源性Artemia Franciscana幼虫可促进热休克蛋白70的合成并增强对病原性坎氏弧菌的抵抗力

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摘要

Larvae of the brine shrimp Artemia franciscana serve as important feed in fish and shellfish larviculture; however, they are subject to bacterial diseases that devastate entire populations and consequently hinder their use in aquaculture. Exposure to abiotic stress was shown previously to shield Artemia larvae against infection by pathogenic Vibrio, with the results suggesting a mechanistic role for heat shock protein 70. In the current report, combined hypothermic/hyperthermic shock followed by recovery at ambient temperature induced Hsp70 synthesis in Artemia larvae. Thermotolerance was also increased as was protection against infection by Vibrio campbellii, the latter indicated by reduced mortality and lower bacterial load in challenge tests. Resistance to Vibrio improved in the face of declining body mass as demonstrated by measurement of ash-free dry weight. Hypothermic stress only and acute osmotic insult did not promote Hsp70 expression and thermotolerance in Artemia larvae nor was resistance to Vibrio challenge augmented. The data support a causal link between Hsp70 accumulation induced by abiotic stress and enhanced resistance to infection by V. campbellii, perhaps via stimulation of the Artemia immune system. This possibility is now under investigation, and the work may reveal fundamental properties of crustacean immunity. Additionally, the findings are important in aquaculture where development of procedures to prevent bacterial infection of feed stock such as Artemia larvae is a priority.
机译:卤水虾对虾Franciscana的幼虫是鱼类和贝类幼虫养殖的重要饲料。然而,它们遭受细菌性疾病的侵害,使整个种群遭受破坏,因此阻碍了它们在水产养殖中的使用。先前已证明暴露于非生物胁迫下可以使卤虫幼虫免受病原性弧菌感染,结果表明热休克蛋白70具有机械作用。在当前报告中,低温/高热休克相结合,然后在环境温度下恢复诱导Hsp70合成。卤虫幼虫。耐热性也有所提高,而坎贝氏弧菌感染的保护作用也有所增强,后者通过在挑战试验中降低死亡率和降低细菌载量来表明。测量无灰干重表明,面对体重下降,对弧菌的抵抗力得到改善。仅低温胁迫和急性渗透性侵袭并不会促进卤虫幼虫中Hsp70的表达和耐热性,也不会增强对弧菌攻击的抵抗力。数据支持非生物胁迫诱导的Hsp70积累与坎贝氏弧菌对感染的抵抗力增强之间的因果关系,这可能是通过卤虫免疫系统的刺激来实现的。目前正在研究这种可能性,这项工作可能揭示出甲壳类动物免疫力的基本特性。此外,该发现在水产养殖中也很重要,在该水产养殖中,优先开发预防细菌感染饲料(例如卤虫幼虫)的程序。

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  • 来源
    《Cell Stress and Chaperones》 |2008年第1期|59-66|共8页
  • 作者单位

    Laboratory of Aquaculture ampamp Artemia Reference Center Faculty of Bioscience Engineering Ghent University Rozier 44 9000 Gent Belgium;

    Laboratory of Aquaculture ampamp Artemia Reference Center Faculty of Bioscience Engineering Ghent University Rozier 44 9000 Gent Belgium;

    Department of Biology Dalhousie University Halifax NS Canada B3H 4J1;

    Laboratory of Aquaculture ampamp Artemia Reference Center Faculty of Bioscience Engineering Ghent University Rozier 44 9000 Gent Belgium;

    Laboratory of Aquaculture ampamp Artemia Reference Center Faculty of Bioscience Engineering Ghent University Rozier 44 9000 Gent Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Temperature stress; Osmotic stress; Artemia franciscana; Hsp70; Cross-protection;

    机译:温度胁迫;渗透胁迫;方济各;Hsp70;交叉保护;

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