Accelerated photoperiod promotes gonadal maturation in the sea urchin Strongylocentrotus intermedius

被引:0
|
作者
Masataka Ishii
Tatsuya Unuma
Akio Masadate
Hiroshi Hoshikawa
Kazuhiro Takahashi
Shinichi Kosaka
Atsunori Masuda
Katsusuke Murakami
机构
[1] Tomari Village Hall,Kushiro Field Station
[2] Fisheries Resources Institute,Graduate School of Bioresources
[3] Japan Fisheries Research and Education Agency,undefined
[4] Kushiro District Fisheries Technical Guidance Office,undefined
[5] Central Fisheries Research Institute,undefined
[6] Hokkaido Research Organization,undefined
[7] Kosaka Engineering Consulting Office,undefined
[8] Tamagawa University,undefined
[9] Mie University,undefined
[10] Hoshikawa Engineering Consulting Office,undefined
来源
Fisheries Science | 2022年 / 88卷
关键词
Gametogenesis; Gonad; Maturation; Photoperiod manipulation; Sea urchin;
D O I
暂无
中图分类号
学科分类号
摘要
In sea urchin hatcheries that produce seeds for the Strongylocentrotus intermedius stock enhancement program, promoting broodstock maturation is advantageous for early gamete collection and the resultant increase in seed size when they are released on fishery grounds. Here, the effects of photoperiod control were investigated to develop a method for promoting gonadal maturation. Adult sea urchins collected from the southwestern coast of Hokkaido in the Sea of Japan were reared from December to August or November under an ambient photoperiod and three accelerated photoperiods that shortened the annual change in day length between the two winter solstices to 8, 6, or 4 months. Maturation progress was evaluated by histological observations and spawning reaction tests, which involved observing gamete release from the gonopore after removing the coelomic fluid. The sea urchins reared under any of the accelerated photoperiods matured in June or July, 2–3 months earlier than those reared under the ambient photoperiod. The eggs and sperm collected from the photoperiod-treated sea urchins were fertilizable and grew normally into juveniles through metamorphosis. Therefore, accelerated photoperiods are effective for promoting maturation and early gamete collection in S. intermedius.
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页码:299 / 310
页数:11
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