• 제목/요약/키워드: stages of reproductive cycle

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Gonadal Development and Reproductive Cycle of the Top Shell, Omphalius rusticus(Gastropoda: Trochidae)

  • Lee, Ju Ha
    • Animal cells and systems
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    • 제5권1호
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    • pp.37-44
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    • 2001
  • Gonadal development, reproductive cycle, gonad index, meat weight rate, and first sexual maturity of the top shell, Omphalius rusticus were Investigated monthly by histological observations. Specimens were collected from the west coast of Korea during the period from January to December in 1999. O. rusticus is dioecious and oviparous. The gonad is widely situated on the surface of the digestive g1and located in the posterior spiral meat part in the shell. The ovary and the testis were composed of a number of oogenic follicles and several spermatogenic follicles, respectively. Ripe oocytes were approximately 120-130 $\mu$m in diameter. The meat weight rate peaked in June (27.7%), and then rapidly decreased in September (19.5%). Monthly changes in the gonad index in both sexes reached the maximum in June, and then sharply decreased in September. Percentages of first sexual maturity of female and male snails ranging from 9.0 to 9.9 mm in shell heights were 58.3% and 54.5%, respectively, and 100% in those over 11.0 mm in both sexes participated in reproduction. Reproductive cycle of this species can be categorized into five successive stages: in females, early active (October to April), late active (December to June), ripe (April to September), spawning (July to September) and recovery (September to January): in males, early active (November to March), late active (December to June), ripe (April to September), spawning (July to September) and recovery (September to December). Gonadal development, gametogenesis, reproductive cycle, and spawning were closely related to the seawater temperature.

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Annual Reproductive Cycle of Acheilognathus rhombeus, in Korea

  • Ki, Se-Un;Kho, Kang-Hee;Lee, Won-Kyo
    • 한국발생생물학회지:발생과생식
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    • 제23권4호
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    • pp.323-331
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    • 2019
  • In this study, an experiment was conducted to investigate the annual reproductive cycle of a Korean flat bittering, Acheilognathus rhombeus, from Ogok-myeon located in Seomjin River. The reproductive cycle was examined histologically regarding water temperature and day length of the habitat, the gonadosomatic index (GSI), and developmental characteristics of female and male gonads. The maximum GSI was found to be 3.50±0.53 and 1.36±0.14 for females and males, respectively, when the water temperature and day light was 16.9℃ and 11.3 hours, respectively in October 2018. On the other hand, the minimum GSI was found to be 0.16±0.09 and 0.69±0.15 for males and females in December 2018 and February 2019, respectively. The ovipositor of females appeared from August to November 2018. We compared and calculated the stages of germ cell developmental characteristics in the testis and ovaries to determine the reproductive cycle. According to the result, we classified the female A. rhombeus reproductive cycle into four phases, which are ripe and spawning phase (October), degenerative phase (November to December), growing phase (January to March) and mature phase (April to September). The annual reproductive cycle of male A. rhombeus was categorized into four phases: mature phase (June to October), degenerative phase (November to March), resting phase (April) and growing phase (May). The Korean flat bittering is an autumn-spawner as the main spawning season in October. In male, testicular spermatogonia appeared all year-round, and the ripe and releasing phase, which is characteristics of the spawning season in other fish, did not appear.

북방대합(Spisula sachalinensis)의 생식주기 (Reproductive Cycle of Surf Clam, Spisula sachalinensis)

  • 이정용;장영진;이채성
    • 한국수산과학회지
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    • 제30권1호
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    • pp.132-138
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    • 1997
  • 동해안 한해성 조개인 북방대합의 자원 증대를 위한 기초 자료를 얻기 위하여 1994년 3월부터 1995년 5월까지 주로 조직학적 방법에 의해 생식소의 발달과정과 생식주기를 조사하였다. 북방대합은 자웅이체로서, 생식소는 해부학적으로 소화맹낭과 족부 근육 사이에 위치하였다. 비만도는 1994년 6월에 0.19로 가장 높았으며 11월에 최소값을 보였다. 생물학적 최소형은 각장 50.0mm였으며, 80.0mm 이상의 대형개체에서도 $10\%$ 미만의 성적으로 미분화한 개체가 관찰되었다. 성숙한 난모세포의 크기는 $50\~60{\mu}m$였으며, 성숙기의 정소에서 정소란이 관찰되었다. 북방대합의 생식주기는 분열증식기 ($10\~1$월), 성장기 ($2\~4$월), 성숙기 ($4\~6$월), 산란기 ($6\~7$월) 및 휴지기 ($8\~9$월)의 연속적인 5단계로 구분되었다.

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한국 서해안산 큰이랑피조개, Scapharca satowi의 생식주기에 관한 조직학적 연구 (Histological Study on the Reproductive Cycle of Scapharca satowi on the West Coast of Korea)

  • 송홍인;조영록;박영제;박광재
    • 한국양식학회지
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    • 제14권4호
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    • pp.205-211
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    • 2001
  • 한국 서해안에 한정적으로 분포하는 특산종이나 산업적으로 활용되지 못하고 있는 큰이랑피조개를 새로운 산업화 양식품종으로 개발하기 위한 기초 자료를 얻기 위한 1999년 7월부터 2000년 6월까지 충남 태안군 근흥면 연안에서 형망으로 채집한 큰이랑피조개(Scapharcs satowi)의 생식소 발달과정과 생식주기를 조사하였다. 큰이랑피초개는 자웅이체로서, 난소와 정소는 각각 수 많은 난자형성소낭과 정자형성소낭으로 구성되어 있었다. 소낭에는 간충직과 호산성 과립세포들이 들어 있는데, 이들은 초기 생식세포의 형성과 발달에 영양을 공급하는 영양세포로 여겨진다. 비만도는 2000년 5월에 0.012이던 것이 수온 상승과 더불어 증가하여 6월에는 최고값인 0.017로 증가하였다. 이 후 급격한 감소와 더불어 유의한 변화는 보이지 않았다. 육중강량비도 비만포와 비슷한 경향으로 2000년 6월에 44%로 가장 높았다가, 이후 지속적인 감소를 나타내었다. 군 성숙도가 50%를 넘는 개체는 암, 수 모두 각장 70~79.9mm인 개체들로 조사되었고, 100mm 이상의 대형개체에서도 10%미만의 성적으로 미성숙한 개체가 관찰되었다. 생식주기는 수온 변화 경향에 따라 약간의 차이는 있을 수 있.으나, 조기 활성기 12~3월, 후기 활성기 4~5월, 완숙기 6~7월, 부른 산란기 7~9월, 퇴차 및 비활실기 9~11월인 것으로 판단된다.

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Spermatogenesis and Reproductive Cycle in Male Spisula sachalinensis (Bivalvia: Mactridae) of Korea

  • Lee, Ki-Yong;Chung, Ee-Yung;Lee, Jeong-Yong
    • 한국패류학회지
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    • 제24권1호
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    • pp.1-10
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    • 2008
  • Spermatogenesis and the reproductive cycle in male Spisula sachalinensis were investigated by cytological and histological observations. The morphology of the spermatozoon has a primitive type and is similar to those of other bivalves in that it contains a short midpiece with four mitochondria surrounding the centrioles. But spermatozoon of this species has not axial rod and satellite body in the midpiece. The morphologies of the sperm nucleus type and the acrosome shape of this species have a globe-shape type and modified cap-like shape, respectively. The spermatozoon is approximately $40-45{\mu}m$ in length including the sperm nucleus length (about $1.35{\mu}m$), acrosome length (about $1.50{\mu}m$) and tail flagellum. The axoneme of the sperm tail flagellum consists of nine pairs of microtubules at the periphery and a pair at the center. The axoneme of the sperm tail shows a 9+2 structure. The spawning period of these species lasts from June to July, and the main spawning occurs in July when seawater temperatures are greater than $20^{\circ}C$. The male reproductive cycle of this species can be categorized into five successive stages: early active stage (October to January), late active stage (February to April), ripe stage (April to June), partially spawned stage (June and July), and spent/inactive stage (August to September).

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Ultrastructure of Germ Cells during Spermatogenesis and the Reproductive Cycle in Male Meretrix petechialis on the West Coast of Korea

  • Chung, Ee-Yung
    • 한국패류학회지
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    • 제22권2호
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    • pp.115-124
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    • 2006
  • Gonad index, spermatogenesis and the reproductive cycle of Meretrix petechialis were investigated by cytological, histological observations. Monthly changes in the gonad index coincides the gonadal development. The morphology of the spermatozoon had a primitive type and is similar to that of other bivalves having a short mid-piece with five to six mitochondria surrounding the centrioles. The morphology of the sperm nucleus type and the acrosome shape of this species were cylindrical type and cap-like shape, respectively. The spermatozoon was approximately 40-45 ${\mu}m$ in length including the sperm nucleus length (about 1.50 ${\mu}m$), acrosome length (0.60 ${\mu}m$) and tail flagellum. The axoneme of the tail flagellum consisted of nine pairs of microtubules at the periphery and a pair at the center. The axoneme of the sperm tail showed 9 + 2 microtubular arrangement. The spawning period was from June to September and the main spawning occurred from July to August when seawater temperatures were higher than $20^{\circ}C$. The reproductive cycle of this species could be categorized into five successive stages: early active stage (February to March), late active stage (February to May), ripe stage (April to July), partially spawned stage (June to September), and spent/inactive stage (September to February).

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Gonadal Development and Reproductive Cycle of Sea Hare Aplysia kurodai in Jeju Coastal Waters

  • Lee, Chi-Hoon;Kaang, Bong-Kiun;Lee, Young-Don
    • 한국발생생물학회지:발생과생식
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    • 제15권3호
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    • pp.257-263
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    • 2011
  • Gonadal development and reproductive cycle of Aplysia kurodai inhabiting the coastal waters of Jeju Island, Korea were investigated based on monthly changes of gonadosomatic index, gametogenesis, and developmental phases of ovotestis. A. kurodai was simultaneous hermaphrodite; the ovotestis generally embedded in the posterior dorsal surface of the brownish digestive gland. The ovotestis is composed of a large number of follicles, and both oocytes and sperm are produced in the same follicles. In the sampling periods, the adult A. kurodai population have characteristic of seasonal pattern present during only 10 months. The reproductive cycle can be grouped into the following successive stages in the ovary: inactive (December to February), active (December to April), mature and spawning (April to September). The gonadal development of A. kurodai coincided with rising temperature, and spawning occurred from April to September, when the temperature was high. The histological observations of the ovotestis suggested that this species have a single spawning season that extend over six months.

Gametogenesis and Reproductive Cycle of the Rock Shell, Reishia (Thais) clavigera (Neogastropoda: Muricidae), on the West Coast of Korea

  • Lee, Ju-Ha
    • Animal cells and systems
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    • 제3권4호
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    • pp.375-383
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    • 1999
  • Gonadal development, gametogenesis, reproductive cycle, and first sexual maturity of Reishia clavigera were investigated monthly from July 1998 to June 1999 through cytological and histological observations. R. clavigera had separate sexes, and was an internal fertilizer. The ma1e penis was located near the two tentacles. The ovary and testis were composed of a great number of oogenic lobules and spermatogenic tubules, respectively. The size of ripe oocyte ranged from 130 to 140 ${\mu}$m in diameter. The peripheral cytoplasm of the germinal vesicle of the ripe oocyte in many cases were surrounded by smaller yolk granules, while the eccentric cytoplasm was occupied with larger ones. The reproductive cycle of R. clavigera could be classified into five successive stages: early active, late active, ripe, spawning, and recovery. Spawning of females occurred from early July to August when the seawater reached above 24.8$^{\circ}C$. Spawning of males occurred from early June to August in the water above 22.8$^{\circ}C$. Minimum size for sexual maturity of both sexes was above 10.0 mm in shell height. Each egg capsule was a cylinder or spindle in shape, 4-6 mm in length and 1-2 mm in width. Colors of newly spawned egg capsules showed yellowish white or pale yellow, while those with veliger larvae showed pale black, and released larvae or dead egg capsules showed black violet. The fecundity in an egg capsule ranged from 70 to 91 eggs (mean=80.28 eggs).

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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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Reproductive Cycle of the Ark Shell, Scapharca subcrenata, on the West Coast of Korea

  • Kwun Sun-Man;Chung Ee-Yung
    • Fisheries and Aquatic Sciences
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    • 제2권2호
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    • pp.142-148
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    • 1999
  • Monthly changes in the gonad index (GI), egg-diameter composition, gonadal development, reproductive cycle of the ark shell, Scapharca subcrenata, were investigated by histological method and morphometric data. This species is dioecious and oviparous. The gonad is located among the subregion of mid-intestinal gland, digestive diverticula and the outer fibromuscular layers compacted by the fibrous connective tissues and muscle fibers. The gonad index sharply increased in May, reached the maximum value in June, and then gradually decreased from July to December. The reproductive cycle of this species can be divided into six successive stages: early active stage (January to May), late active stage (June to July), ripe stage (June to August), partially spawned stage (July to September), degenerative stage (August to December), and resting stage (January to April). S. subcrenata spawns once a year between July and early September, and the main spawning occurred between July and August when the water temperatures were above $20^{\circ}C$. This evidence suggest that timings of maturation and spawning are closely related to water temperatures. Even though the spawning period was once a year, it is assumed that the number of spawning frequencies (broods) may occur more than twice during the spawning season.

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