首页> 外文期刊>Marine & freshwater research >Survival, growth and reproduction of non-indigenous Nile tilapia, Oreochromis niloticus (Linnaeus 1758). I. Physiological capabilities in various temperatures and salinities
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Survival, growth and reproduction of non-indigenous Nile tilapia, Oreochromis niloticus (Linnaeus 1758). I. Physiological capabilities in various temperatures and salinities

机译:非本地尼罗罗非鱼的存活,生长和繁殖,尼罗罗非鱼(Linnaeus 1758)。一,各种温度和盐度下的生理能力

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The physiological tolerances of non-native fishes is an integral component of assessing potential invasive risk. Salinity and temperature are environmental variables that limit the spread of many non-native fishes. We hypothesised that combinations of temperature and salinity will interact to affect survival, growth, and reproduction of Nile tilapia, Oreochromis niloticus, introduced into Mississippi, USA. Tilapia withstood acute transfer from fresh water up to a salinity of 20 and survived gradual transfer up to 60 at typical summertime (30°C) temperatures. However, cold temperature (14°C) reduced survival of fish in saline waters <10 and increased the incidence of disease in freshwater controls. Although fish were able to equilibrate to saline waters in warm temperatures, reproductive parameters were reduced at salinities <30. These integrated responses suggest that Nile tilapia can invade coastal areas beyond their point of introduction. However, successful invasion is subject to two caveats: (1) wintertime survival depends on finding thermal refugia, and (2) reproduction is hampered in regions where salinities are <30. These data are vital to predicting the invasion of non-native fishes into coastal watersheds. This is particularly important given the predicted changes in coastal landscapes due to global climate change and sea-level rise.
机译:非本地鱼类的生理耐受性是评估潜在入侵风险的重要组成部分。盐度和温度是限制许多非本地鱼类传播的环境变量。我们假设温度和盐度的组合会相互作用,从而影响引入美国密西西比州的尼罗罗非鱼(Oreochromis niloticus)的存活,生长和繁殖。罗非鱼可以承受从淡水到盐度为20的急性迁移,并且在典型的夏季(30°C)温度下可以承受高达60的逐渐迁移。但是,低温(14°C)会降低鱼类在小于10的盐水中的存活,并增加淡水控制中疾病的发生率。尽管鱼能够在温暖的温度下与盐水保持平衡,但在盐分<30时,生殖参数却降低了。这些综合反应表明,尼罗罗非鱼可以入侵沿海地区,而不是其引进地。但是,成功的入侵有两个警告:(1)冬季生存取决于寻找热庇护所;(2)盐分<30的地区繁殖受到阻碍。这些数据对于预测非本地鱼类入侵沿海流域至关重要。鉴于全球气候变化和海平面上升导致的沿海景观变化的预测,这一点尤其重要。

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