• Title/Summary/Keyword: Gonadal sex differentiation

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Effects of Nonylphenol on Gonadal Development and Growth of Olive Flounder, Paralichthys olivaceus (Nonylphenol이 넙치, Paralichthys olivaceus의 생식소 발달과 성장에 미치는 영향)

  • 문순주;이치훈;나오수;김병호;이영돈
    • Environmental Analysis Health and Toxicology
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    • v.17 no.1
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    • pp.7-11
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    • 2002
  • Effects of nonylphenol (NP) on gonadal development and growth of olive flounder, Paralichthys olivaceus were investigated. NP treatment was carried out to fry fish (during 55 to 64 days after hatching) using oral adminstration at nominal NP concentrations of 50, 100 and 150 tig/g BW Gonad before NP treatment was sexually undifferentiated as observed with mostly gonia cells. At 159 days after hatching, ovarian lamella of ovary were filled with oogonia and perinucleolus oocytes. On the other hand, testicular lobules of the testis were occupied by spermatogonia, spermatocytes and spermatids. Histological observation of ovary and testis development was any different between the control and NP treated groups. However, growth was significantly increased in NP treated groups than control groups (P< 0.05). These results considerate that NP has any effect for sex differentiation and gonadal development, but act for early growth in olive flounder.

Sex Differentiation of the Gonad in Red Sea Bream, Pagrus major with Cultured Condition (양식산, 참돔 Pagrus major의 생식소 성분화)

  • 김형배
    • Journal of Aquaculture
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    • v.11 no.4
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    • pp.529-546
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    • 1998
  • Gonadal part that developed by indifferentiation period for 6 months after hatching is made as gonad and fat body. These gonad are thin semi-transparant and undistinguished germ cell. Germinal epithelium is distinguished by development of gonad epithelial tissue from 7 months after hatching. Sex differentiation is begun by oogonia develoment at 8 months after hatching. Primary oocytes grow over germinal epithelium of gonadal cavity, at 9 months after hatching, gonadal cavity become ovarian cavity as they increasing. As soon as oocytes at 13 months after hatching are filled with the whole part of gonad, degeneration of oocyte is begun. And then, gonad has cavity tissue, a small number of oocyte are located in gonadal cavity. At 15 months after hatching, new primary oocyte develop and cavity of ovarian tissue in the central of ovarian cavity. Spermatogonia multiplicate and cavity tissue consist of testicular tissue. These gonad become hermaphrodite and then ditermine the sex of female and male. These results show the red sea bream is juvenile hermaphrodite and undif-ferentiated gonochoristic teleost. Male and female differentiation type of gonad is divided in undifferentiation stage, oogonia-like stage, ovary-like stage, ovary development stage, hermaphroditic testis stage, hermaphroditic ovary stage, and testis development stage. Undifferentiation stage is continued total lenth 18cm at 13 months after hatching. ovary-like stage is continued total length 11~18cm at 13 months after hatching. Ovary-like stage is continued total length 14~26cm at 10~14 months after hatching. Ovary development stage begins from total length 20cm, 14 months after hatching. At 20 months after hatching, 44 percent of total sampled individuals had ovary. Hermaphroditic ovary stage first begins total length 19~20 cm at 15 months after hatching, but it is not observed total length 28~29cm at 20months after hatching. Hermaphroditic testis stage first begins total length 21~22cm at 20months after hatching and is continued for 20months. Testis development stage first begins total length 20~21cm at 20 months after hatching, and is occupied 33 percent total length 28~29cm at 20 months. The beginning of sex differentiation more than 50 percent is from total length 16cm at 11 months after hatching. Sex determination begins total length 20cm, 14months after hatching in female and total length 20cm, 15 months after hatching in male. Sex determination more than 50 percent begins total length 23cm,, 17 months after hatching. Undifferentiated gonadal part of red sea bream consist gonad and fat body. As differentiation is going on and gonad is growing, fat body shrinks. This appearence is showed the same tendency in 3-year old red sea bream. 1.9mm larvae after hatching grow about 19mm larvae for 47 days. The relationship between the total length and body weight of larvae and juveniles in $BW=4.45{\times}10^{-6}TL^{3.4718}$ r=0.9820. Fishes in cage culture grow to maximum total length 28.4cm. The relationship between the total length and body weight of these fishes is $BW=2.36{\times}10^{-2}TL^{2.9180}$, r=0.9971. Undifferentiated gonadal part of red sea bream consist gonad and fat body. As differentiation is going on and gonad is growing, fat body shrinks.

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Morphological Sex Differentiation of the Abalone Haliotis discus hannai (북방전복 Haliotis discus hannai의 형태학적 성분화)

  • Kim, Hyejin;Jeon, Mi Ae;Choi, Ji Sung;Kim, Byeong Hak;Son, Maeng Hyun;Lee, Jung Sick
    • The Korean Journal of Malacology
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    • v.31 no.4
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    • pp.273-277
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    • 2015
  • This study was conducted to provide the reproductive biological information and basic data on the artificial sex control of Haliotis discus hannai. The morphological sex differentiation process of H. discus hannai could be classified into following five phases: 1) formation of gonad outer membrane (FGOM) (${\leq}SL\;10.0{\pm}1.0mm$), 2) primordial germ cells (PGCs) appearance in the connective tissue between intestine and hepatopancreas (PAC), and formation of gonadal cavity (FGC) (SL $15.0{\pm}2.0mm$), 3) PGCs appearance in the epithelial layer of gonadal cavity (PAG) (SL $18.0{\pm}2.0mm$), 4) formation of gametogenic follicle and appearance of early oocytes and spermatogonia (FGOC) (SL $21.0{\pm}2.0mm$), 5) morphological sex differentiation (MSD) (${\geq}SL\;23.0{\pm}2.0mm$). From histological analysis sex differentiation rate in SL 24.1-25.0 mm of H. discus hannai was 90.0% and sex ratio (female : male) was 1:0.8.

The Gonadal Development and Sex Differentiation in the Spotted Sea Bass, Lateolabrax maculatus (점농어, Lateolabrax maculatus의 생식소 발달과 성분화)

  • 이원교;곽은주;양석우;김정우
    • Development and Reproduction
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    • v.4 no.2
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    • pp.195-201
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    • 2000
  • Sex differentiation process of the spotted sea bass, Lateolabrax maculatus, was investigated by histological method. The fish samples were collected from just after hatching to 365 days later. The primordial germ cells and genital ridge were appeared separately hanging under air bladder in 30-day larva (total length: 11.7~13.2 mm), and were unified into the undifferentiated gonads in 40-day larva (12.5~14.0 mm). The ovarian differentiation was started in 60-day juvenile (23.6~27.0 mm). The somatic tissues were elongated in tip of both ends of undifferentiated gonad and were fused each other. The complete ovarian cavity was appeared in 80-days juvenile(33.1~42.5 mm). The testicular differentiation was initiated in 70-day juvenile (24.8~31.6 mm). The rudiment of sperm duct was appeared in the center of the undifferentiated gonad. The meiosis of germ cells in the ovary was started in 168-day juvenile (88.0~115.4 mm). In 287-day juvenile (175.1~233.6 mm), the ovary was filled with both of chromatin stage and perinucleolus stage oocytes. The meiosis of male germ cells was started in 245-day juvenile (124.4~168.3 mm). However, the seminiferous tubules of testis were filled with numerous sperm in 365-day juvenile (162.5~253.8 mm). The sex ratio of male and female was 1:1.38. Considering these results, the spotted sea bass was showed differentiated type in sex differentiation and gonochorism in sexuality.

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Gonadal Sex Differentiation in Misgurnus mizolepis (미꾸라지(Misgurnus mizolepis)의 성 분화에 관한 연구)

  • Kim, Dong-Soo;Lee, Ki-Young;Lee, Taek-Yuil
    • Korean Journal of Ichthyology
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    • v.2 no.1
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    • pp.95-105
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    • 1990
  • Gonadal sex differentiation of Misgurnus mizolepis was studied during growth from the size of 3.5 mm (2-day old) larvae to about 80 mm in total length (100-day-old) adult fish. One pair of primordial germ cells were found 2 days after hatching, and the development of prominent genital ridge was noticed at both stages of 4 days and 5 days after hatching. The gonadal sexes of this species were clearly distinguishable in 8 days, when the fry reached 15. 0 mm in total length. Spermatids first appaered at the stage of 20 days after hatching and 100-day-old female fish had well-developed ovaries. Above results indicate that M. mizolepis belongs to the differentiated type of gonochoristic teleosts.

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Gonadal Development and Sex Differentiation of a Korean Endemic Species, Black Bullhead Pseudobagrus koreanus (한국 특산종 눈동자개, Pseudobagrus koreanus의 생식소 발달과 성분화)

  • Park, Jin-Seok;Lee, Won-Kyo;Park, Chung-Kug;Heo, Seung-Joon;Ki, Se-Wun;Choi, Nak-Hyun
    • Development and Reproduction
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    • v.12 no.3
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    • pp.215-220
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    • 2008
  • Sex differentiation process of the spotted Black Bullhead, Pseudobagrus koreanus, was investigated using fish samples of different age after hatching. The primordial germ cells appeared separately under air bladder in 1-day larva (total length: $6.63{\sim}6.95\;mm$). The primordial gonad with a genital ridge developed in 5-day prelarva ($7.50{\sim}9.36\;mm$). The ovarian differentiation started in about 25-day juvenile ($11.58{\sim}13.21\;mm$). The somatic tissues enlongated in the tip of one end of undifferentiated gonad and fused each other. Thus a small ovarian cavity appeared. The testicular differentiation was initiated in 30-day juvenile ($12.19{\sim}13.72\;mm$). The rudiment of sperm duct was appeared in the lower part of the undifferentiated gonad. In 50-day juvenile ($16.28{\sim}17.06\;mm$), the ovary started to fill with peri-nucleolus oocytes, and the spermatogonia started to develop. In 250-day juvenile ($35.49{\sim}51.12\;mm$), the ovary became bigger and filled with oocytes, and the number of spermatogonia started to increase. Considering these results, the spotted Black Bullhead could be a differentiated type in sex differentiation and gonochorism in sexuality.

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Early Gonadogenesis and Sex Differentiation of the Mandarin Fish Siniperca scherzeri (쏘가리 (Siniperca scherzeri)의 초기 생식소 형성 및 성분화)

  • Lee, Yoon-A;Lee, Byoung-Min;Choi, Kyong-Cheol;Park, Sang-Yong;Bang, In-Chul
    • Journal of Aquaculture
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    • v.18 no.2
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    • pp.76-80
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    • 2005
  • The early gonadal development and sex differentiation of the mandarin fish, Siniperca scherzeri was described from hatch to the 130th day post-hatch (DPH). Primordial germ cells were observed on the just hatched fry (5.10 mm in total length (TL)) and began to protrude into the peritoneal cavity between mesonephric duct and gut. The primordial gonad, with the formation of genital ridge, developed on the 8-10th DPH (10.77-12.47 mm TL). Ovarian differentiation was identified by the presence of ovarian cavity and meiotic oocytes from the 40th DPH (29.75 mm TL). Testicular differentiation was identified by the presence of spermatogonial cells with efferent duct also from the 40th DPH. Sex differentiation of the mandarin fish was identified as gonochoristic type.

Early Gonadogenesis and Sex Differentiation in the Bagrid Catfish, Leiocassis ussuriensis (대농갱이 (Leiocassis ussuriensis)의 초기 생식소 형성 및 성분화)

  • Park, Sang-Yong;Lee, Youn-A;Choi, Kyong-Cheol;Kang, Eon-Jong;Bang, In-Chul
    • Korean Journal of Ichthyology
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    • v.13 no.4
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    • pp.248-253
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    • 2001
  • An histological study was conducted to determine the initial treatment time and treatment duration in the use of sex-reversal hormones in relation to gonadal development and sexual differentiation in the bagrid catfish, Leiocassis ussuriensis. The primordial germ cell, which could be recognized from one-day-old fry, began to protrude into the peritoneal cavity between the mesonephric duct and the gut. The primordial gonad with a genital ridge was developed at 5~10 days after hatching. Sex differentiation of the ovary was identified by the ovarian cavity and meiotic oocytes from 20-day-old larvae. Testicular differentiation was also identified by spermatogonial cells from 20-day-old larvae. It may therefore be concluded that this species belongs to the differentiated type of gonochoristic teleost.

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Effects of Sex Steroid Hormones and High Temperature on Sex Differentiation in Black Rockfish, Sebastes schlegeli (성스테로이드 호르몬과 고수온 처리가 조피볼락, Sebastes schlegeli의 성분화에 미치는 영향)

  • LEE Chi Hoon;NA Oh Soo;YEO In Kn;BAEK Hea Ja;LEE Young Don
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.33 no.5
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    • pp.373-377
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    • 2000
  • This study Investigated the effects of $estradiol-l7{\beta} (E_2)$, $17{\alpha}-methyltestosterone$ (MT) and high temperature (WT) on gonadal sex differentiation in black rockfish, Sebastes srhlegeli. fish were reared to oral adminstration of E, at nominal concentrations of $20, 40 and 60 {\mu}g/g diet$, and MT at nominal concentration of 20 and $50 {\mu}g/g$ diet from 56 days to 77 days after parturition. In the treatment of WT, water temperature of the breeding tanks ranged $27.0{\pm}0.5^{\circ}C$ more than $10^{\circ}C$ approximately, in comparison to the control and other experimental group, In the process of sex differentiation until 56 days after parturition, gonads were composed of mostly gonia cells, sexually undifferentiated. In contrast, 128 dal's after parturition, the ovaries were composed of ovarian cavity and lamellae, and oogonia and perinucleolus oocytes were distributed in the lamellae of ovary, and the testes were composed of a number of seminiferous tubule, and spermatogonia were distributed in the seminiferous tubule, and also melanophore scattered in the matrix layer of testis. In the sex ratio, more females than male were observed from $E_2$. treatment groups when compared to the control, but more males than females were observed from MT and WT treatment groups when compared to the control. In the results of the present study, the concentration and kinds of the sex steroid hormones, and also the rearing high temperature caused to the factor of sex determination in the process of sex differentiation of black rockfish.

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Disruption of Sex Differentiation by Exogenous Sex Steroid Hormones in Korean Rockfish, Sebastes schlegeli (외인성 성스테로이드 호르몬에 의한 조피볼락, Sebastes schlegeli의 성분화 교란)

  • Kwon, Joon-Yeong;Lee, Chan-Hee;Kim, Ju-Yeong;Kim, Sang-Hun;Kim, Dae-Jung;Han, Hyoung-Kyun;Lim, Han-Kyu;Byun, Sun-Gyu
    • Development and Reproduction
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    • v.10 no.4
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    • pp.247-254
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    • 2006
  • It is well publicized that the existence of various endocrine disrupting chemicals threatens normal sexual development of many sedentary marine fishes in the coastal areas. However, a suitable marine fish species for efficient monitoring of this threatening has yet to be identified. One of the difficulties in estimating the effect of endocrine disruption in marine fish is the absence of clear distinction between testicular and ovarian structures at the early stages of sex differentiation. In search of a potential test species, we have investigated the microscopic structures of sexually undifferentiated and differentiated gonads and the susceptibility of gonadal differentiation to exogenous sex steroids during the sex differentiation period in a sedentary marine rockfish, Sebastes schlegeli. Male gonads in this species contained dark pigmentation that made them distinct from female gonads. Treatment either with $estradiol-17\;{\beta}(E_2)$ or $17\;{\alpha}-methyltestosterone$ (MT) significantly altered the sex ratios with the complete sex changes or the occurrence of ovotestis that was easily identified by the mixed structure of dimorphic gonads (coexistence of ovarian cavity/primary oocytes and dark pigmentation/seminiferous tubules). Results in this study suggest that S. schlegeli can be developed as a monitoring/test fish species for endocrine disruption in marine fish in the coastal areas.

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