• Title/Summary/Keyword: 소 경골

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Ovarian Differentiation of the Scorpion Fish, Sebastiscus marmoratus (쏨뱅이, Sebastiscus marmoratus의 난소 분화)

  • Oh, Seong-Rip;Hur, Sung-Pyo;Lim, Bong-Soo;Lee, Chi-Hoon;Lee, Young-Don
    • Development and Reproduction
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    • v.10 no.3
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    • pp.193-196
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    • 2006
  • The process in the formation of primordial germ cells, primitive and early gonadogenesis were investigated by histological examination for the reproductive physiological study in the scorpion fish, Sebastiscus marmoratus. The primordial germ cells about $10\;{\mu}m$ in diameter were observed in the fibrous mesenchymal tissue located between gut and mesonephric duct of the larvae within the maternal body. As the fibrous epithelium extends to the direction of peritoneum, the primordial germ cells moved. From 31 days post parturition, the fibrous epithelium gets thicker, and the primitive gonad starts to form. From 49 days post parturition, as the primitive gonad of the primitive gonad extend, it starts to form cavity, and about 60 days post parturition, the formation of the ovarian cavity is completed. From 79 days post parturition, germ cells proliferated along the inner edge of the ovarian cavity.

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Sexual maturation of the bluespotted mud hopper, Boleophthalmus Pectinirostris(Linnaeus) (짱뚱어, Boleophthalmus pectinirostris(Linnaeus)의 성 성숙)

  • CHUNG Ee-Yung;AN Cheul-Min;LEE Taek-Yuil
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.24 no.3
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    • pp.167-176
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    • 1991
  • Sexual maturation of the bluespotted mud hopper, Boleophthalmus Pectinirostris(Linnaeus) was investigated histologically on the gonadal development, and studied by gonadosomatic index(GSI), egg diameter composition. Samples were collected in the intertidal zone of Wolyon-ri, Hoihyon-myon, Okku-gun, Chollabuk-do, Korea, from April to October in 1988 and from June to August in 1989. The ovary is a pair of sac-shaped organ. The testis is a pair of tubule-shaped organ and it is connected to the seminal vesicle which is located at the posterior end of the testis. In male and female, GSI began to increase from late May when the water temperature began to increase and reached the maximum value in June and July, respectively. It began to decrease from August, the highest water temperature season. Thereafter, maintained relatively low values until October. The annual reproductive cycle of this species could be classified into four sucessive developmental stages: growing stage$(April{\~}May)$, mature stage$(June{\~}early\;July)$, ripe and spent stage(late lune-early August), degenerative and resting stage$(late\;August{\~}March:\;the wintering\;period)$. According to the frequency distributions of egg diameters in the spawning season, Boleophthalmus Pectinirostris was species to spawn twice or more in the spawning season.

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Effect of Mantidis $O\ddot{O}theca$ and Mori Fructus On treatment of Osteoporosis In Ovariectomized Rats (상표소와 상심자가 난소적출로 유발된 흰쥐의 골다공증 치료효과에 미치는 영향)

  • Lee, Jae-Woo;Seo, Bu-Il;Park, Ji-Ha;Roh, Seong-Soo;Kim, Yong-Hyun;Kim, Mi-Ryeo
    • The Korea Journal of Herbology
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    • v.24 no.1
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    • pp.59-71
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    • 2009
  • Objectives:The present study has been undertaken to investigate the effects of Mantidis $O\ddot{O}theca$ and Mori Fructus on treatment of osteoporosis in ovariectomized rats. Methods: In this experiment, the rats were ovariectomized. Rats were administered by Mantidis $O\ddot{O}theca$ and Mori Fructus. The levels of bone mineral density, osteocalcin.ALP.calcium.phosphorus in serum, calcium. phosphorus.deoxypyridinoline in urine and calcium.phosphorus.ash weight in bone were measured. Results: 1. The levels of femoral and fibula-tibial bone mineral density were significantly increased in comparison with OVX group at 4, 8 weeks in Mantidis $O\ddot{O}theca$ group. And the levels of femoral and fibula-tibial bone mineral density were significantly increased in comparison with OVX group at 8 weeks in Mori Fructus group. 2. The levels of serum osteoclacin and ALP showed significant decrease in comparison with OVX group at 4, 8 weeks in Mantidis $O\ddot{O}theca$ and Mori Fructus group. The levels of serum calcium showed significant decrease in comparison with OVX group at 4 weeks in Mantidis $O\ddot{O}theca$ and Mori Fructus group. The levels of serum phosphorus showed significant decrease in comparison with OVX group at 4, 8 weeks in Mantidis $O\ddot{O}theca$ and Mori Fructus group. 3. The levels of urine calcium, phosphorus and deoxypyridinoline showed significant decrease in comparison with OVX group in Mantidis $O\ddot{O}theca$ and Mori Fructus group. 4. The levels of fibula-tibial calcium and phosphorus showed significant increase in comparison with OVX group in Mantidis $O\ddot{O}theca$ group and Mori Fructus group. The levels of femoral calcium and phosphorus showed significant increase in comparison with OVX group in Mori Fructus group. The levels of femoral and fibula-tibial ash weight showed significant increase in comparison with OVX group in Mantidis $O\ddot{O}theca$ group and Mori Fructus group. Conclusions: Reviewing these experimetal results, it appeared that Mantidis $O\ddot{O}theca$ and Mori Fructus had efficacy on treatment of osteoporosis.

Reproduction and Embryonic Development within the Maternal Body of Ovoviviparous Teleost, Sebastes inermis (란태생 경골어류 볼락, Sebastes inermis의 생식과 체내자어발달)

  • LEE Taek-Yuil;KIM Sung-Yeon
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.25 no.5
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    • pp.413-431
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    • 1992
  • Gonadal development, fertilization and egg development in the maternal body and reproductive cycle of ovoviviparous rockfish, Sebastes inermis, were investigated histologically. Gonadosomatic index(GSI) of male and female were increased from September and reached maximum values in December. In the male, GSI decreased from January, but in the female maintained high values till February and decreased from March. Hepatosomatic index(HSI) was related to GSI conversely. In both sex, HSI increased from February and reached maximum in August as the gonad were degenerating and resting, and began to decrease from September as gonad were glowing. This ovoviviparous rockfish copulates in December. Fertilization with sperms maintained between ovulated oocytes in the ovary occurs in January mainly. Egg development in the ovarian cavity and discharging of hatched preiarva occurs from January to February. The reproductive cycle includes the successive stages: Growing(September), Mature (October-November), Ripe and Fertilization(Decembr-Janua), Egg development and Discharging of hatched larva(January-February), Degeneration and Resting(February-August). According to the frequency distribution of egg diameter and histological observation, the ovoviviparous rockfish discharged the prelarva at a time in a spawning season. The sexual maturation is first attained at 2 ages. All females and males reaches first maturity at body length of 17.1cm and 15.1cm respectively. The mean number of the embryos increased with the increase of the total length of female.

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Reproductive Biology of a Shad, Konosirus punctatus(TEMMINCK et SCHLEGEL) (전어, Konosirus punctatus의 생식생물학적 연구)

  • KIM Hyung-Bae;LEE Taek-Yuil
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.17 no.3
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    • pp.206-218
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    • 1984
  • The gonadal development and gametogenesis of shad, Konosirus, punctatus (TEMMINCK et SCHLEGEL) were studied by comparing with various quantitative indices, such as seasonal changes of gonadosomatic index, fatness, egg-diameter composition, first maturing size, and by comparing with histological changes of gonad and gonadotrophs(GTH) in pituitary. The materials were monthly sampled from Dadaepo at the estuary of the Nakdong river in Korea from September, 1982 to October, 1983. The ovary of shad is a pair of sac-shaped organs revered with a fibromuscular capsule and consisting of numerous sacs. The type of testicular structure is lobular type with development of germ cells, mesenchymal tissue on the lobuli. The gonadosomatic index (GSI) is rather low till March, but increases in April and reaches to peak in June in females and May in males. And it suddenly falls in July. The gonads become active on the increase of water temperature and spawning season ends before high water temperature. After spawning, the small oocytes continue to remain as they are untill the growing period next year. The reproductive cycle includes the successive stages of growing from March to April, mature from April to May, ripe and spawning in June, and recovery and resting from July to February next year. In egg-diameter composition of an ovary taken in the spawning season, 2-3 modes were recognized with some batches shown in an ovary. An individual shad spawns twice or more in a month-spawning season. The individual spawning interval is estimated to be ten days or less. Changes of fatness are corelated with those of water temperature that affect on the condition of feeding, but less corelated with spawning. The percentage of mature of female and male fish, are $50\%$ in 17.0-18.0 cm and $100\%$ in 18.0-19.0 cm. GTH cells are activated from growing period and decrease their activity at pre-spawning season with peak activity for mature period.

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Early Gonadogenesis and Sex Differentiation in the Viviparous Teleost, Ditrema temmincki (태생 경골어류, 망상어(Ditrema temmincki)의 초기생식소 형성 및 성분화)

  • LEE Jung Sick;LEE Young Don
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.29 no.1
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    • pp.35-43
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    • 1996
  • The appearance of the primordial germ cells (PGC's), early gonadogenesis, sex differentiation and sex ratio of the embryo in the viviparous teleost, Ditrema temmincki were investigated by using photomicroscopy. The PGC's were first observed in the fibrous mesenchymal tissue located between the early alimentary tract and the dorsal body wall in the late embryonic development stage. During the period from the hatching to the individual total length (TL) of 4.0 mm the PGC's were evenly distributed in the fibrous mesenchymal tissue between alimentary tract and body wall. But the period of TL 5.0 mm mesenchymal tissue separated from the dorsal body wall, the PGC's moved to the posterior mesenchymal tissue and formed the primitive gonad. During the early gonadogenesis, differentiation of the testis and ovary were distinguished from the arrangement of the germ cells and somatic cells. Gonad of embryo in TL 10.0 mm can be separated into the ovary and testis by external morphology. The testis had a separated form which was consisted with two lobes, and the ovary had a fused form in half-posterior part. In the testicular differentiation of the embryo, histological pattern of the seminiferous tubule appeared when TL of the embryo was to be 25.0 mm, for the seminal vesicle was formed In the individual TL of 30.0mm. The testis of the embryo with TL of 45.0 mm was similar to that of the adult fish in the external and internal structures. In the ovarian differentiation, formation of the ovigerous folds and the ovarian cavity were clearly observed when the TL reached to 30.0 mm. The ovary from the individual with TL of 60.0 mm was differentiated into a similar ovary as seen in the adult fish in the external and internal structure. Right before parturition the total length of the individual was approximately 63.0 mm of which the individual embryo has an ovary containing the oocytes in the chromatin nucleolus stage, or a testis containing the spermatogonia, respectively. And the embryonic sex ratio of female to male was 1.65 : 1. Ditrema temmincki is dioecism and the pattern of sex differentiation is belonged to a differentiation type.

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