• 제목/요약/키워드: Ovarian developmental phases

검색결과 12건 처리시간 0.041초

Changes in Biochemical Composition of the Digestive Gland of the Female Purple Shell, Rapana venosa, in Relation to the Ovarian Developmental Phases

  • Chung, Ee-Yung;Kim, Sung-Yeon;Park, Kwan-Ha
    • 한국패류학회지
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    • 제17권1호
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    • pp.27-33
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    • 2001
  • The Ovarian developmental phases of the reproductive cycle of Rapana venosa can be classified into five successive stages by histological study: early active stage (September to February), late active stage (December to April), ripe stage (March to July), partially spawned stage (May to August), and recovery stage (June to September). To understand the characteristics of nutrient storage and utilization in the digestive gland cells with ovarian developmental phases, we examined the digestive gland - which is the major nutrient supply organ associated with ovarian development of the female purple shell - by biochemical methods. Total protein contents in the digestive gland tissues increased in March (late active stage) and reached the maximum in May (ripe and partially spawned stages), and then their levels sharply decreased in July (partially spawned and recovery stages). Total lipid contents in the digestive gland tissues reached the maximum in January (early active stage). Thereafter, their levels rapidly decreased from May (ripe and partially spawned stages) and reached a minimum in July (partially spawned and recovery stages). The total DNA contents did not significantly change regardless of the different developmental stages of the ovary. However, it was also found from biochemical analysis that changes in total RNA content follow the same seasonal cycling to protein. These results indicate that the digestive gland is an important energy storage and supply organ in purple shells, and that the nutrient contents of the digestive gland change in response to gonadal energy needs.

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Ultrastructural Study of Germ Cells and Reproductive Cycle in Female Neptunea arthritica cumingii

  • Han, Ji-Soo;Chung, Ee-Yung;Park, Gab-Man
    • 한국발생생물학회:학술대회논문집
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    • 한국발생생물학회 2005년도 제20차 학술대회 논문집
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    • pp.52-52
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    • 2005
  • Oogenesis, the gonadosomatic index (GSI), reproductive cycle and first sexual maturation of the female Neptunea (Barbitonia) arthritica cumingii have been investigated by light and electron microscope observations. In the early vitellogenic oocyte, the Golgi complex and mitochondria were involved in the formation of glycogen, lipid droplets and yolk granules. In late vitellogenic oocytes, the rough endoplasmic reticulum and multivesicular bodies were involved in the formation of proteid yolk granules in the cytoplasm. In particular, compared with the results of other gastropods, it is a different result that appearances of cortical granules at the cortical layer and microvilli on the vitelline envelope, which is associated with heterosynthetic vitellogenesis, were not observed in vitellogenic oocytes during oogenesis. A mature yolk granule was composed of three components: main body (central core), superficial layer, and the limiting menbrane, Monthly changes in the gonadosomatic index in females were studied in 2002 and 2003 were closely associated with ovarian developmental phases. Spawning occurred between May and August in 2002 and 2003 and the main spawning occurred between June and July when the seawater temperature rose to approximately 18${\sim}$23${\circ}$C. The female reproductive cycle can be classified into five successive stages: early activestage (Septmber to October), late active stage ( November to February), ripe stage (February to June), partially spawned stage (May to Aygust), and recovery stage (June to August).

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비단가리비, Chlamys farreri의 난소 발달단계에 따른 폐각근, 난소 및 소화맹낭의 생화학적 성분의 계절적 변화 (Seasonal Changes in Biochemical Components of the Adductor Muscle, Digestive Diverticula and the Ovary in Chlamys farreri in Relation to the Ovarian Developmental Phases)

  • 정의영;구재근;박기열;이창훈
    • 한국패류학회지
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    • 제21권1호
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    • pp.71-80
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    • 2005
  • We investigated the reproductive cycle with ovarian development of Chlamys farreri by histological observations, and seasonal changes in biochemical components of the adductor muscle, digestive diverticula and ovary were studied by biochemical analysis. The reproductive cycle of this species can be classified into five successive stages: early active stage (January to March), late active stage (March to April), ripe stage (April to August), partially spawned stage (June to August) and spent/inactive stage (August to January). According to ANOVA test, there were significant differences (p < 0.05) in total protein, total lipid and glycogen contents among months for all of the adductor muscle, digestive diverticula and ovary. Total protein contents in ovary and digestive diverticula showed significant changes (ANOVA, p < 0.05) during the study period, while that in the adductor muscle did not. Total protein content was highest in the adductor muscle, followed by ovary, and lowest in digestive diverticula. There was no correlation in total protein content between the adductor muscle and digestive diverticula (p = 0.220). But strong positive correlation was found between adductor muscle and ovary (r = 0.450, p = 0.013). ANOVA showed that there were significant differences in total lipid and glycogen contents among months for all of the adductor muscle, ovary, and digestive diverticula (p < 0.05). The monthly changes in total lipid content were highly variable in ovary and digestive gland. High contents of total lipid were found during April and May-June in ovary, while March and June-July in digestive diverticula. There was a strong negative correlation in total lipid content between ovary and digestive diverticula (r = -0.397, p = 0.030). Unlike total protein or total lipid, glycogen content in the adductor muscle was most dynamic. It showed more than 36-fold changes in the adductor muscle (at most 3-fold change in ovary) during the study period. Glycogen content was higher during May-July in the adductor muscle, while it was higher in March and August in digestive diverticula. There was a strong negative correlation in glycogen content between the adductor muscle and digestive diverticula (r = -0.584, p = 0.001).

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Characterization of Pubertal Development Phases in Female Longtooth Grouper, Epinephelus bruneus via Classification of Bodyweight

  • Ryu, Yong-Woon;Hur, Sang-Woo;Hur, Sung-Pyo;Lee, Chi-Hoon;Lim, Bong-Soo;Lee, Young-Don
    • 한국발생생물학회지:발생과생식
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    • 제17권1호
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    • pp.55-62
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    • 2013
  • Puberty is the developmental period which animals obtain the ability of reproducing sexually for the first time in life. In commercially important aquaculture fish species, the onset of puberty is a matter of major interest due to controlling of sexual maturation to improve broodstock management. To investigate pubertal characteristics of female longtooth grouper (Epinephelus bruneus), specimens were classified into three groups by the bodyweight, including 1, 2, and 3 kg group. Thereafter, we focused on ovarian development and level changes of endocrine regulation factors (GnRH, GTHs, steroid hormone). In the non-breeding season (April), the levels of endocrine regulation factors showed increasing trends in accordance with bodyweight gaining; nevertheless, the oocytes were growth phase belongs to almost peri-nucleous stages in all groups. In the breeding season (June), the levels of endocrine regulation factors were fluctuated that decreases in levels of sbGnRH and $FSH{\beta}$ mRNA expressions along with serum $E_2$ concentrations in 3 kg of group. However, $LH{\beta}$ mRNA expression levels sustained increasing trends by the bodyweight. Moreover, the oocytes developed that 2 kg and 3 kg groups obtained plentiful vitellogenic oocytes while 1 kg group was still composed with greater part of pre-vitellogenic oocytes. Especially, the oocytes of 3 kg group reached over 450 ${\mu}m$ of diameters that indicating possibility to enter the final maturations. These results suggest that the progress of pubertal development in female E. bruneus could be classify into three phases via bodyweight, including pre-puberty (1 kg), early-puberty (2 kg) and puberty (3 kg).

Seasonal Changes in Biochemical Components of the Adductor Muscle, Digestive Diverticula and the Ovary in Female Chlamys farreri in Relation to the Ovarian Developmental Phases

  • Kim, Hyun-Jin;Chung, Ee-Yung;Park, Ki-Yeol;Kim, Eun-Jong
    • 한국발생생물학회:학술대회논문집
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    • 한국발생생물학회 2005년도 제20차 학술대회 논문집
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    • pp.51-51
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    • 2005
  • We inestigated the reproductive cycle with ovarian development of Chlamys farreri by histological observations, and seasonal changes in biochemical components of the adductor muscle, digestive diverticula and ovary were studied by biochemical analysis. The reproductive cycle of this species can be classified into five successive stages: early active stage (January to March), late active stage (March to April), ripe stage (April to August), partially spawned stage (June to August) and spent/inactive stage (August to January). According to ANOVA test, there were significant differences (p<0.05) in total protein, total lipid and glycogen contents among months for all of the adductor muscle, digestive diverticula and ovary. Total protein contents in ovary and digestive diverticula showed significant changes(ANOVA, p<0.05) during the study period, while that in the adductor muscle did not. Total protein content was highest in the adductor muscle, followed by ovary, and lowest in digestive diverticula. There was no correlation in total protein content between the adductor muscle and digestive diverticula (p=0.220). But strong positive correlation was found between adductor muscle and ovary (r=0.450, p=0.013). ANOVA showed that there were significant differences in total lipid and glycogen contents among months for all of the adductor muscle, ovary, and digestive diverticula (p<0.05). The monthly changes in total lipid content were highly variable in ovary and digestive gland. High contents of total lipid were foung during April and May-June in ovary, while March and June-July in digestive diverticula. There was a strong negative correlation in total lipid content between ovary and digestive diverticula (r=- 0.397, p=0.030). Unlike total protein of total lipid, glycogen content in the adductor muscle was most dynamic. It showed more than 36-fold changes in the adductor muscle (at most 3-fold change in ovary) during the study period. Glycogen content was higher during May-July in the adductor muscle, While it was higher in March and august in digestive diverticula. There was a strong negative correlation in glycogen content between the adductor muscle and digestive diverticula (r=-0.584, p=0.001).

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Oogenesis and Reproductive Cycle in Neptunea (Barbitonia) arthritica cumingii on the West Coast of Korea

  • Park, Gab-Man;Kim, Yeon-Ho;Kim, Eun-Jong;Choi, Ki-Ho
    • 한국패류학회지
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    • 제22권1호
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    • pp.1-11
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    • 2006
  • The gonadosomatic index (GSI), oogenesis and reproductive cycle in female Neptunea (Barbitonia) afhritica cumingii were investigated by light and electron microscope observations. In the early vitellogenic oocyte, the Golgi complex and mitochondria were involved in the formation of glycogen, lipid droplets and yolk granules. Late in the vitellogenic oocytes, the rough endoplasmic reticulum and multivesicular bodies were involved in the formation of proteid yolk granules in cytoplasm. In particular, compared with the results of other gastropods, it showed a different result that appearances of cortical granules at the cortical layer and microvilli on the vitelline envelope, which is associated with heterosynthetic vitellogenesis, were not observed in vitellogenic oocytes during oogenesis. A mature yolk granule was composed of three components: main body (central core), superficial layer, and the limiting membrane. Monthly changes in the gonadosomatic index in females studied in 2004 and 2005 were closely associated with ovarian developmental phases. Spawning occurred between May and August in 2004 and 2005 and the main spawning occurred between June and July when the seawater temperature rose to approximately $18-23^{\circ}C$. The female reproductive cycle can be classified into five successive stages: early active stage (September to October), late active stage (November to February), ripe stage (February to June), partially spawned stage (May to August), and recovery stage (June to August).

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디지털 색채 분석을 이용한 보구치(Pennahia argentatus) 생식소의 성숙도 판정 (Determination of Maturity Gonads for White Croaker Pennahia argentatus Using Digital Color Analysis)

  • 정재묵;김영혜;문경진;최석진
    • 한국수산과학회지
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    • 제57권2호
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    • pp.145-152
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    • 2024
  • The present study investigated the digital color characteristics corresponding to different maturity stages and maturation levels of white croaker Pennahia argentatus specimens collected from the Southern Sea of South Korea. Maturity stages were determined using photomicrographs depicting ovarian developmental phases and compared with digital color values. The specimens ranged in body length from 21-36 cm, with mature ovaries observed within the 24-30 cm length range. To differentiate the maturing, mature, spawning, and post-spawning stages of the gonads, boundary lines were established based on specific coordinates. For the ovaries, a dividing line was drawn through (-10, -10) and (15, 5), described by the equation Y=3/5X-4; while for the testes, the line passed through (20, 0) and (0, 15), indicated by the equation Y=-3/4X+15. However, the visual determination of the maturity stages proved challenging due to overlapping color values. Consequently, this study underscores the efficacy of employing digital color measurements over subjective visual assessments to evaluate the maturity of white croaker gonads and offers more quantitative insights.

한국 서해산 암컷 비단가리비, Chlamys farreri의 난형성과정 중 생식세포 분화 및 생식주기 (Germ Cell Differentiations during Oogenesis and Reproductive Cycle in Female Jicon Scallop, Chlamys farreri on the West Coast of Korea)

  • 박기열;이기영
    • 한국발생생물학회지:발생과생식
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    • 제12권2호
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    • pp.195-202
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    • 2008
  • 1998년 3월부터 1999년 2월까지 전라남도 대흑산도 연안에서 채집한 비단가리비를 대상으로 생식소중량지수, 생식세포 분화 및 난소주기를 조직, 세포학적 관찰에 의해 조사하였다. 초기 난황형성 난모세포에서, 골지체, 미토콘드리아 및 조면소포체들은 지방적 형성에 관여하였다. 후기난황형성난모세포에서 생식상피상에 존재하는 외인성 물질들 즉, 글리코겐 입자들 및 지방 과립상 물질들이 난황막의 미세융모를 통해서 난모세포의 난질로 통과해 들어갔다. 후기난황형성난모세포에서, 난황과립들과 다포체들은 단백질성 난황과립형성에 관여하였다. 난황형성과정은 내인성 자율합성과 외인성 타가합성에 의해서 일어난다. 보조세포들은 초기단계인, 전난황형성 난모세포 및 초기 난황형성 난모세포들의 형성 및 발달에 영양세포로서 기능을 한다. 생식소 중량지수의 월별 변화는 난소 발달단계들과 밀접한 관련을 가지며 변하였다. 본 종의 생식주기는 초기활성기(1~3월), 후기활성기(3~4월), 완숙기(4~8월), 부분산란기(6~8월), 퇴화 및 비활성기(8~12월)의 5단계로 구분되었다. 산란은 6~8월 사이에 일어나며, 주산란기는 수온이 높은 7~8월이었다.

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김제산 가무락조개 Cyclina sinensis의 난소 성숙과 인공산란 및 산란빈도 (Ovarian Maturation, Artificial Spawning and Spawning Frequency of the Venus Clam, Cyclina sinensis, in the Gimje Coastal Waters of Korea)

  • 정의영;허영백;곽오열;최기호
    • 한국패류학회지
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    • 제19권2호
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    • pp.153-153
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    • 2003
  • 2001년 1월부터 2001년 12월까지 전라북도 김제시 심포 앞바다에서 각장 18.6-52.7 mm 의 가무락조개 (Cyclina sinensis) 를 대상으로 자원증식 및 적정 관리를 위해 조직학적 방법에 의해 생식소발달단계에 따른 생식주기와 군성숙도를 조사하였고 인공산란 유도에 의해 산란량과 산란빈도를 조사하였다. 생식소 발달단계에 따른 생식주기를 조직학적으로 조사한 결과 가무락조개의 생식주기는 초기활성기 (2-4월), 후기활성기 (3-6월), 완숙기 (5-8월), 부분산란기 (7-9월), 퇴화 및 비활성기 (9-2월) 의 연속적인 5단계로 구분할 수 있었다. 7월부터 산란하기 시작하여 9월 중순까지 일어났고 산란성기는 7-8월이었다. 각장 25.1-30.0 mm인 암컷 개체들의 군성숙도는 64.3%이었고, 각장 40.1 mm이상인 개체들의 군성숙도는 100%이었다. 인공산란 유도에 의해 각 개체들로부터 방란된 난수는 개체들의 각장이 증가됨에 따라 증가되었다. 2차 산란유도에 의해 방란된 평균 난수는 1차 산란수의 평균 76.87%이었다. 가무락조개의 각 산란 간격은 대략 15-17일 (평균 16.5) 이었고, 한 산란기 중 2회 이상의 산란이 일어날 것으로 추정되었다.

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소의 난소주기 동안 과립막세포와 황체조직에서 단백질 패턴의 변화 (Change of Protein Patterns in Granulosa Cells and Corpus Luteum during the Ovarian Cycle in Cows)

  • 송은지;이용승;이상희;유한준;박정준;정희태;양부근;박춘근
    • Reproductive and Developmental Biology
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    • 제37권3호
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    • pp.149-154
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    • 2013
  • The aim of this study was to evaluate the changes of protein patterns in granulosa cells and corpus luteum in ovaries during the estrus cycle in cows. The estrus cycle was devided into five steps of follicular, ovulatory, early-luteal, mid-luteal and late-luteal phases. In results, 61 spots of total 85 spots were repeated on follicular phase and 51 spots of total 114 spots were repeated on ovulatory phase. The 40 spots of total 129 spots were repeated on early-luteal phase and 49 spots of total 104 spots were repeated on mid-luteal phase. Also 41 spots of total 60 spots were repeated on late-luteal phase. On the other hands, the 16 spots were indicated difference in follicular phase and ovulation phase had a difference 10 spots. It was showed difference No. 103 spot in ovulation phase, No. 135 spot in early-luteal phase and No. 175 and 176 spots in mid-luteal phase. Also, the 11 spots were expressed specifically in mid-luteal phase and No. 178 and 179 spots were difference of expression in late-luteal phase. We confirmed that there were 7 spots for ovulation, 4 spots for luteinization and 2 spots for luteolysis. Spot No. 89~93 in ovulation phase were transferrin, and spot No.94~98 were HSP60. Spot No. 103 was Dusty PK, spot No. 135 was OGDC-E2, and spot No. 175 and 176 were Rab GDI beta from luteinization. Spot No. 178 and 179 in luteolysis were vimentin. This results suggest that will be help to basic data about infertility.