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EFFECTS OF ACIDITY AND ALUMINUM ON THE PHYSIOLOGY AND MIGRATORY BEHAVIOR OF ATLANTIC SALMON SMOLTS IN MAINE, USA

机译:酸和铝对美国缅因州大西洋鲑鱼生理和迁徙行为的影响

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Atlantic salmon, Salmo salar, smolts of hatchery origin were held for 5 to 16 days in ambient (pH 6.35, labile Al = 60μg L~(-1)), limed (pH 6.72, labile Al = 58.4μg L~(-1)), or acidified (pH 5.47, labile Al=96 μgL~(-1)) water from the Narraguagus River in Maine, USA. Wild smolts were captured in the same river in rotary traps and held for up to two days in ambient river water. Os-moregulatory ability was assessed by measuring Na~+/K~+ ATPase activity, hematocrit, and blood Cl concentration in freshwater, and after 24-hr exposure to seawater. Hatchery smolts exposed to acidic water and wild smolts displayed sub-lethal ionoregulatory stress both in fresh and seawater, with mortalities of wild smolts in seawater. Using ultrasonic telemetry, hatchery-reared ambient and acid-exposed, and wild smolts were tracked as they migrated through freshwater and estuarine sections of the river. The proportion of wild smolts migrating during daylight hours was higher than for hatchery-reared smolts. Wild smolts remained in the freshwater portions of the river longer than either group of hatchery smolts, although survival during migration to seawater was similar for all three treatments. Acid-exposed hatchery-origin and wild Narraguagus River smolts were both under ionoregulatory stress that may have affected their migratory behavior, but not their survival for the time and area in which we tracked them.
机译:将大西洋鲑,鲑鱼,孵化场的of在环境中(pH 6.35,不稳定的Al =60μgL〜(-1))放置5至16天,撒石灰(pH 6.72,不稳定的Al =58.4μgL〜(-1) )或酸化(pH 5.47,不稳定的Al = 96μgL〜(-1))来自美国缅因州纳拉瓜古斯河的水。在同一条河流中的旋转诱捕器中捕获了野生,并在环境河水中保持了长达两天。通过测量淡水以及暴露于海水中24小时后Na〜+ / K〜+ ATPase活性,血细胞比容和血液Cl浓度来评估Os调节性。暴露于酸性水和野生的孵化场的mol在淡水和海水中均表现出亚致死的电负性压力,而野生的wild在海水中的死亡率也很高。使用超声波遥测技术,在孵化场饲养的环境和酸暴露的环境中,以及在野外迁移到河中淡水和河口段的野mol进行追踪。在白天,迁移的野生软体动物的比例高于孵化场养殖的软体动物。尽管这三种处理在向海水中迁移过程中的存活率都相似,但野生河鲈在这条河的淡水部分中的停留时间要长于任何一个孵化场鲑鱼。暴露于酸的孵化场和野生的纳拉瓜斯河(Narraguagus River)河鲈都处于负离子压力下,这可能影响了它们的迁徙行为,但没有影响我们追踪它们的时间和区域。

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