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首页> 外文期刊>Aquaculture >Emersion survival manipulation in Greenshell (TM) mussels (Perna canaliculus): Implications for the extension of live mussels' shelf-life
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Emersion survival manipulation in Greenshell (TM) mussels (Perna canaliculus): Implications for the extension of live mussels' shelf-life

机译:Greenshell(TM)贻贝(Perna CanAliculus)中的偏振生存操作:对Live Mussels's Shelf-Life延伸的影响

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Farmed adult Greenshell (TM) mussels were exposed to a range of conditions immediately after harvest to evaluate the effects on emersion survival and the implications for live transport. Two experiments were performed, coinciding with the mussel harvest season during summer and winter 2017. In the summer experiment, a wide range of conditions were tested to identify alternatives to be evaluated in more detail during the winter experiment. The postharvest experimental conditions selected included transient re-immersion at different temperatures, cold and heat-shock, tidal simulation, and packing with ice. These treatments aimed to either reduce postharvest stress and/or give the mussels a potentially beneficial physiological and behavioural advantage to help them cope with emersion. The mussels responses in terms of gaping and survival differed between summer and winter, and among and within treatments. Sub-ambient temperature seawater exposure after harvest tended to improve the survival time of the mussels in both seasons, the effect being dependent on both temperature and duration of the exposure. Some of the differences observed could be explained by the conditions (in the wild and in the laboratory) to which the mussels were exposed before emersion and the different capability that each mussel has to cope with stress. However, the exact mechanisms driving these changes are not fully understood and require further investigation. This study, nevertheless, indicates that emersion survival (i.e. live mussel shelf-life) could be extended by re-immersion after harvest combined with a sub-lethal cold-shock followed by immersed recovery before transportation. If the commercial shelf-life of live product can be significantly extended, the implications for food quality and safety will also need to be evaluated. A similar approach could be applied in other shellfish such as other species of mussels as well as oysters or clams to improve shelf-life, considering their physiological capabilities and behaviour and how those are affected by environmental conditions in different seasons or regions.
机译:养殖的成人格雷或贻贝(TM)贻贝在收获后立即暴露于一系列条件,以评估对发射生存的影响和对现场运输的影响。在2017年夏季和冬季进行了两次实验,恰逢贻贝收获季节。在夏季实验中,测试了广泛的条件,以确定在冬季实验期间更详细地评估的替代方案。选定的采后实验条件包括在不同温度,冷热和热休克,潮汐模拟和冰包装时瞬态再浸。这些治疗方法旨在减少采后应力和/或给贻贝提供潜在的有益的生理和行为优势,以帮助他们应对偏振。在夏季和冬季和治疗中和治疗中的缺点和生存方面,贻贝反应。亚环境温度海水暴露在收获后倾向于改善两种季节中贻贝的存活时间,效果取决于曝光的温度和持续时间。观察到的一些差异可以通过在发光之前暴露的条件(野外和实验室)来解释,并且每个贻贝必须应对压力的不同能力。然而,驱动这些变化的确切机制尚不完全理解并需要进一步调查。然而,这项研究表明,在收获后,可以通过再浸入亚致死的冷冲击后重新浸入后浸入沉浸在运输前浸渍恢复。如果实时产品的商业保质期可以大大扩展,还需要评估对食品质量和安全的影响。一种类似的方法可以应用于其他贝类,例如其他贻贝以及牡蛎或蛤蜊,以改善保质期,考虑到他们的生理能力和行为以及那些受到不同季节或地区的环境条件的影响。

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