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Upper temperature tolerances of exotic brackish-water mussel, Mytilopsis leucophaeata (Conrad): An experimental study

机译:外来微咸水贻贝Mytilopsis leucophaeata(Conrad)的最高温度耐受性:实验研究

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The dark false mussel, Mytilopsis leucophaeata is an important mussel colonising the brackish-water systems of temperate and subtropical regions. Of late it has earned notoriety as a biofouling species in industrial cooling water systems. However, there are no published data on the temperature tolerance of this species. This paper presents data on the upper temperature tolerance of this mussel from the view point of biofouling control using, thermal methods. In addition to mortality, response of physiological activities such as oxygen consumption, filtration rate, foot activity and byssus thread production were also studied at temperatures varying from 5 to 35℃. Experiments were also carried out to understand the effect of mussel size, breeding condition, nutritional status and acclimation conditions (temperature and salinity) on the mortality pattern. The physiological activities were significantly reduced at temperatures beyond 27.5℃ and ceased at 35℃. In 20 mm size group mussels exposed to 37℃, 50% mortality was observed after 85 min and 100% mortality after 113 min. The effect of mussel size on mortality at different temperatures was significant, with the larger size group mussels showing greater resistance. M. leucophaeata collected during the non-breeding season (December-April) were more tolerant to temperature than those collected during the breeding season (June-October). Nutritional status of the mussel had no significant influence on the thermal tolerance of the mussel: fed and starved (non-fed) mussels succumbed to temperature at comparable rates. The effect of acclimation temperature and acclimation salinity on M. leu-cophaeata mortality at different temperatures was significant. Survival time increased with increasing acclimation temperature and decreased with increasing salinity. In comparison with other co-occurring species such as Mytilus edulis and Dreissena polymorpha, M. leucophaeata appears to be more tolerant to high temperature stress.
机译:深色假贻贝,Mytilopsis leucophaeata是在温带和亚热带地区微咸水系统中定殖的重要贻贝。最近,它在工业冷却水系统中作为生物污垢物种而声名狼藉。但是,没有有关该物种的温度耐受性的公开数据。从使用热方法进行生物污垢控制的角度来看,本文介绍了该贻贝的最高温度耐受性数据。除了死亡率以外,还研究了在5至35℃的温度下生理活动的响应,例如耗氧量,过滤速率,足活动和足底线的产生。还进行了实验以了解贻贝的大小,繁殖条件,营养状况和适应条件(温度和盐度)对死亡率的影响。在超过27.5℃的温度下,生理活性显着降低,在35℃时停止。在暴露于37℃的20毫米大小的贻贝中,在85分钟后观察到50%的死亡率,在113分钟后观察到100%的死亡率。贻贝大小对不同温度下死亡率的影响是显着的,大群贻贝显示出更大的抗性。在非育种季节(12月至4月)收集的白带分枝杆菌对温度的耐受性比在育种季节(6月至10月)收集的白斑分支杆菌更耐高温。贻贝的营养状况对贻贝的耐热性没有显着影响:饲喂和饥饿(非饲喂)的贻贝以可比的速度屈服于温度。在不同温度下,驯化温度和驯化盐度对白念珠菌死亡率的影响是显着的。生存时间随着环境温度的升高而增加,而随着盐度的增加而降低。与其他共同出现的物种(例如,Mytilus edulis和Dreissena polymorpha)相比,M。leucophaeata似乎更耐高温。

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