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Non-Lethal Heat Shock of the Asian Green Mussel Perna viridis Promotes Hsp70 Synthesis Induces Thermotolerance and Protects Against Vibrio Infection

机译:亚洲青贻贝(Perna viridis)的非致命热休克促进Hsp70合成诱导耐热性并防止弧菌感染

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摘要

Mild heat stress promotes thermotolerance and protection against several different stresses in aquatic animals, consequences correlated with the accumulation of heat shock protein 70 (Hsp70). The purpose of this study was to determine if non-lethal heat shock (NLHS) of the Asian green mussel, Perna viridis, an aquatic species of commercial value, promoted the production of Hsp70 and enhanced its resistance to stresses. Initially, the LT50 and LHT for P. viridis were determined to be 42°C and 44°C, respectively, with no heat shock induced death of mussels at 40°C or less. Immunoprobing of western blots revealed augmentation of constitutive (PvHsp70-1) and inducible (PvHsp70-2) Hsp70 in tissue from adductor muscle, foot, gill and mantel of P. viridis exposed to 38°C for 30 min followed by 6 h recovery, NLHS conditions for this organism. Characterization by liquid chromatography-tandem mass spectrometry (LC-MS/MS) revealed that PvHsp70-1 and PvHsp70-2 respectively corresponded most closely to Hsp70 from P. viridis and Mytilus galloprovincialis. Priming of adult mussels with NLHS promoted thermotolerance and increased resistance to V. alginolyticus. The induction of Hsp70 in parallel with enhanced thermotolerance and improved protection against V. alginolyticus, suggests Hsp70 functions in P. viridis as a molecular chaperone and as a stimulator of the immune system.
机译:轻度的热应激可提高水生动物的耐热性并抵御几种不同的压力,其后果与热休克蛋白70(Hsp70)的积累有关。这项研究的目的是确定具有商业价值的水生物种亚洲绿贻贝(Perna viridis)的非致命热休克(NLHS)是否促进了Hsp70的产生并增强了其对压力的抵抗力。最初,测定绿色假单胞菌的LT50和LHT分别为42°C和44°C,在40°C或更低的温度下没有热激引起的贻贝死亡。免疫印迹的免疫印迹显示,暴露于38°C 30分钟的翠绿假单胞菌的内收肌,足,g和man的组织中组成型(PvHsp70-1)和诱导型(PvHsp70-2)Hsp70增强,然后恢复6 h,该生物的NLHS条件。液相色谱-串联质谱(LC-MS / MS)的表征显示,PvHsp70-1和PvHsp70-2分别最分别对应于绿色假单胞菌和Mytilus galloprovincialis的Hsp70。用NLHS灌注成年贻贝可提高耐热性并增加对溶藻弧菌的抵抗力。 Hsp70的诱导与耐热性的提高和对溶藻弧菌的增强的保护同时显示,Hsp70在 P 中起作用。 viridis 作为分子伴侣和免疫系统的刺激物。

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