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Effects of photoperiod on pituitary gonadotropin levels in masu salmon

✍ Scribed by Amano, Masafumi ;Ikuta, Kazumasa ;Kitamura, Shoji ;Aida, Katsumi


Publisher
John Wiley and Sons
Year
2001
Tongue
English
Weight
132 KB
Volume
289
Category
Article
ISSN
0022-104X

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✦ Synopsis


Abstract

We examined the effects of photoperiod on pituitary levels of two types of gonadotropin (GTH), GTH I and GTH II, in masu salmon Oncorhynchus masou to study their mechanism of synthesis. In Experiment 1, the effects of long or short photoperiod combined with castration were examined using 8‐month‐old precocious males. Castration was carried out in early August and then the fish were reared under a short (8L16D) or long (16L8D) photoperiod for 60 days. In Experiment 2, the effects of photoperiod combined with testosterone treatment were examined using 12‐month‐old immature females. Silastic tubes containing testosterone (500 μg /fish) or vehicle were implanted intra‐peritoneally in early October. Fish were reared under 16L8D for 60 days, and then half of the fish were transferred to 8L16D, while the remaining fish were kept under 16L8D until Day 90. In Experiment 1, GTH I contents were higher under 16L8D than under 8L16D in the castrated group on Day 30. Moreover, GTH I contents were higher in the castrated group than the control group under 16L8D on Day 30. GTH II contents increased with testicular maturation in the control groups, whereas they remained at low levels in the castrated groups regardless of photoperiodic treatment. In Experiment 2, GTH I contents did not change remarkably in all the groups, while GTH II contents were remarkably increased by testosterone treatment regardless of photoperiodic treatment. These results indicate that the synthesis of GTH I and GTH II are differently regulated by photoperiod and testosterone in masu salmon. J. Exp. Zool. 289:449–455, 2001. © 2001 Wiley‐Liss, Inc.


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## Abstract The salmon gonadotropin‐releasing hormone (sGnRH) is considered to be involved in gonadal maturation via gonadotropin (GTH) secretion in salmonid fishes. However, there is no direct evidence for endogenous sGnRH‐stimulated GTH secretion in salmonids. In this study, to clarify whether en