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Melatonin implantation during spring and summer does not affect the seasonal rhythm of feeding in anadromous Arctic charr (Salvelinus alpinus)

机译:春季和夏季褪黑激素的植入不会影响北极北极红点鲑(Salvelinus alpinus)的摄食季节节律

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摘要

Plasma melatonin levels in the high-latitude teleost Arctic charr (Salvelinus alpinus) are constantly low during summer when feeding activity is high, and high during the dark winter when they eat little and loose weight. The question arises if melatonin is involved in the phase-setting of annual rhythms of feeding and growth and if low summer melatonin production is permissive for high summer growth in this species. The present study was therefore set out to compare the seasonal appetite and growth rhythms in Arctic charr with constantly high plasma melatonin levels from February throughout the Arctic summer (melatonin implanted, average mid-day plasma melatonin levels 1,106 ± 147 pg/ml) with those of fish with natural plasma melatonin levels (vehicle implanted and untreated fish with average mid-day plasma melatonin levels of 94 ± 13 and 58 ± 6 pg/ml, respectively). Feed intake, body mass or body length, as well as the timing of the seasonal growth rhythm, were not affected by the high summer plasma melatonin level. Further, Arctic charr fasted for 3 months had a 24 h plasma profile of melatonin which was consistently higher throughout the scotophase compared to fed charr. Although the daily melatonin production seems to be affected by the energy status of the fish, melatonin does not seem to be directly involved in regulation of the seasonal feeding and growth rhythm in the high-latitude, anadromous Arctic charr.
机译:高纬度硬骨性北极鲑(Salvelinus alpinus)的血浆褪黑素水平在夏季通常在饲喂活动较高的情况下一直较低,而在黑暗的冬季则很少食用且体重较轻的血浆中褪黑激素水平一直很高。问题是,如果褪黑激素参与了摄食和生长的年度节律的阶段设定,并且夏季低褪黑激素的生产是否允许该物种的夏季高生长。因此,本研究的目的是比较北极Charr的季节性食欲和生长节律,以及从整个北极夏季二月份开始的血浆褪黑激素水平持续高(植入褪黑激素,平均中午血浆褪黑激素水平为1,106±147 pg / ml)与天然血浆褪黑激素水平的鱼(植入车辆的鱼和未经处理的鱼类中段平均血浆褪黑激素的水平分别为94±13和58±6 pg / ml)。夏季血浆中褪黑激素的高水平不会影响采食量,体重或体长以及季节性生长节律的时机。此外,禁食3个月的北极红char的褪黑素的血浆分布为24小时,与进食的红char相比,整个褪黑素阶段始终较高。尽管褪黑激素的每日产量似乎受到鱼类能量状况的影响,但褪黑激素似乎并不直接参与调节高纬度北极北极红鲑的季节性摄食和生长节律。

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