• Title/Summary/Keyword: GONADOSOMATIC INDEX

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Reproductive Cycle of the Red Marbled Rockfish Sebastiscus tertius (붉은쏨뱅이(Sebastiscus tertius)의 생식 주기)

  • Lim, Sang-Gu;Kim, Kawang-Su;Kim, Chul-Won;Kim, Jung-Woo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.44 no.6
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    • pp.701-708
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    • 2011
  • The aim of the present study was to analyze the reductive cycle of the red marbled rockfish Sebastiscus tertius. The analysis was based on annual changes in the gonadosomatic index (GSI), the hepatosomatic index (HSI), histology of the gonadal structure, and plasma sex steroid hormone levels of adult fish from April 1997 to April 1998. GSI of females began to increase in February and peaked ($10.8{\pm}2.72$) in May. HIS levels ($3.41{\pm}0.49$) peaked in February and elevated plasma steroid hormones ($1.47{\pm}0.75$ ng/mL for estradiol-$17{\beta}$ ($E_2$) and $230.7{\pm}27.6$ pg/mL for testosterone (T)) were observed in April. However, in male fish, GSI levels started to increase in August and remained high until November ($0.21{\pm}0.05$). T levels were was also elevated in August and peaked in October ($188.1{\pm}43.5$ pg/mL) and November ($186.8{\pm}28.0$ pg/mL), but started to decline 1 month than the GSI. These results suggest that female ovoviviparious periods span from April to June and amle mating periods occur from November to February.

Sexual Maturation of Viviparous Teleost Surfperch, Ditrema temmincki (태생 경골어류 망상어, Ditrema temmincki의 성성숙)

  • Lee, Jung-Sick;An, Cheul-Min;Chin, Pyung
    • Korean Journal of Ichthyology
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    • v.7 no.2
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    • pp.150-159
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    • 1995
  • First sexual maturity, monthly changes in gonadosomatic index and reproductive cycle of viviparous teleost surfperch, Ditrema temmincki were investigated under photomicroscopy. Samples were collected from May 1992 to August 1993 in the vicinity of Suyoung Bay, Pusan, Korea. Body length at the first sexual maturity in female and male were 12.5cm and 13.5cm, respectively. Gonadosomatic index(GSI) in female reached the maximum in June(just before parturition) and male GSI reached the maximum in October(just before copulation). The testis is composed of a number of seminiferous tubules, and spermatogonia are originated from the germinal epithelium on the seminiferous tubule. The ovary consists of several ovigerous folds, and oogonia are originated from the inner surface of the germinal epithelium within the ovigerous fold. Annual reproductive cycle was classified into the following successive periods : in male, growing period from May to August, maturation period from September to October, copulation period from November to December, and degeneration and resting period from January to April, and in female, growing period from September to October, copulation and maturation period from November to December, gestation period from January to June, and resting period from July to August. Hepatosomatic index(HSI) in male appeared to be negatively correlated with gonadosomatic index, but that in female showed to be positively correlated.

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Reproductive Ecology of the Hard Shelled Mussel, Mytilus coruscus in Western Korea (한국 서해산 홍합, Mytilus coruscus의 번식생태)

  • Lee, Il-Ho;Chung, Ee-Yung;Son, Pal-Won;Shin, Moon-Seup
    • The Korean Journal of Malacology
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    • v.23 no.2
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    • pp.199-208
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    • 2007
  • The gonad index, gonadosomatic index, the condition index, reproductive cycle, first sexual maturity, and sex ratio of the hard shelled mussel, Mytilus coruscus were investigated by using histological analysis and morphometric data. Specimens were collected monthly in Kyeokpo, western Korea from January to December, 2006. The gonad index reached a maximum in February, and minimum in September. Both the monthly variations of the gonad index (GI) and the gonadosomatic index (GSI) reached a maximum in February. After that, their values continually decreased between March and April because of spawning. The monthly variation of the condition index coincides with the GI and the GSI. The spawning period was from February to April, with the main spawning occurring between February and March. The reproductive cycle of this species could be classified into six stages: early active stage (November to January), late active stage (November to February), ripe stage (December to April), partially spawned stage (February to April), degenerative stage (April to October), and resting stage (June to December ). Percentages of sexual maturity was over 50% for the female and male hard shelled mussels that ranges from 40.1 to 50.0 mm in shell length. The percentage was 100% for those that are over 50.1 mm. The sex ratios of females to males over 40.1 mm in shell length were not significantly different from a 1:1 sex ratio $(x^2\;=\;0.63,\;p\;>\;0.05)$. No evidence of hermaphroditism was found in histological sections of any hard shelled mussel examined.

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Effect of starvation on tissues in Far Eastern catfish(Silurus asotus) (메기(Silurus asotus) 기아 시 조직학적 변화)

  • Goo, In Bon;Kim, Young Soo;Park, In-Seok
    • Korean Journal of Environmental Biology
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    • v.38 no.2
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    • pp.315-322
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    • 2020
  • A 210-day experiment was conducted to examine the effects of starvation on survival, the gonadosomatic index (GSI), hepatosomatic index (HSI), and the intestinosomatic index (ISI), and histological changes in the renal tubule epithelium, midgut epithelium, and hepatocytes in Far Eastern catfish (Silurus asotus). The survival rate decreased to 92.2±0.47% in the fed group and 74.4±2.59% in the starved group during the 210-day experimental period. GSI, HSI, and ISI were lowest in the starved group (p<0.05). The hepatocyte nuclear area, hepatocyte cell area, the nuclear height of the midgut epithelium, and the nuclear height of the kidney were highest in the fed group (p<0.05). The hepatocyte nuclear area, nuclear height of the midgut epithelium, and nuclear height of the kidney were lowest in the starved group(p<0.05). The numbers of melano-macrophages (MMs) found in the kidney cells increased during starvation in this species. This suggests that thinner body cavity regions, the contraction of hepatocyte nuclear sites, and the spreading of kidney cell MMs in this species could be used as alternative indicators for identifying starvation conditions. Therefore, the results from our study provide accurate indications of the nutritional status of Far Eastern catfish.

Ultrastructural Study on Spermatogenesis and Sexual Maturation of the Male Jicon Scallop, Chlamys farreri on the West Coast of Korea

  • Chung, Ee-Yung;Park, Ki-Yeol;Song, Pal-Won
    • The Korean Journal of Malacology
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    • v.21 no.2 s.34
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    • pp.95-105
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    • 2005
  • Gonadosomatic index, reproductive cycle, spermatogenesis and first sexual maturity of Chlamys farreri were investigated by cytological and histological observations, from January 1998 to December 1999. The gonadosomatic index (GSI) rapidly increased in April and reached a maximum in May when seawater temperature rapidly increase. Then the GSI gradually decreased from June to August when spawning occur. Accordingly, monthly changes in the GSI in males coincide with the reproductive cycle. The spermatozoon of Chlamys farreri is the primitive type found in external fertilization species. The head of the spermatozoon is approximately $2.75{\mu}m$ in length including the acrosome measuring about $0.50{\mu}m$ in length, and its tail was approximately $20{\mu}m$, the axoneme of the tail flagellum consists of nine pairs of microtubules at the periphery and a pair at the center. Five spherical mitochondria around the centriole (the satellite body) appear in the middle piece of the sperm. The spawning period was from June to August and the main spawning occurs from July to August when seawater temperatures are greater than $20^{\circ}C$ The reproductive cycle of this species can be categorized 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). Over 50% of male scallops attained first sexual maturity between 50.0 and 60.0 mm in shell height, and 100% of those over 60.0 mm in shell height achieved maturity. Accordingly, we assume that male individuals begin reproduction at three years of age.

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Comparison of the deleterious effects of yaji and cadmium chloride on testicular physiomorphological and oxidative stress status: The gonadoprotective effects of an omega-3 fatty acid

  • Ekhoye, Ehitare Ikekhuamen;Olerimi, Samson Eshikhokhale;Ehebha, Santos Ehizokhale
    • Clinical and Experimental Reproductive Medicine
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    • v.47 no.3
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    • pp.168-179
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    • 2020
  • Objective: This study investigated testicular oxidative stress status and physiomorphological function in Wistar rats fed with yaji and cadmium chloride (CdCl2). Methods: Sixty male albino Wistar rats (12 per group) were randomly assigned to five groups: group I (control), group II (300 mg/kg.bw of yaji), group III (500 mg/kg.bw of yaji), group IV (2.5 mg/kg.bw of CdCl2), and group V (2.5 mg/kg.bw of yaji+4 mg/kg.bw omega-3). Each group was evenly subdivided into two subgroups and treatment was administered for 14 days and 42 days, respectively. Semen quality (sperm count, progressive motility, normal morphology, and gonadosomatic index), hormones (testosterone, follicle-stimulating hormone, and luteinizing hormone), testicular oxidative stress markers (superoxide dismutase, catalase, glutathione peroxidase, and malonaldehyde) and testicular histomorphological features were examined. Results: Yaji caused significant (p< 0.05) dose- and duration-dependent reductions in semen quality, the gonadosomatic index, testosterone, follicle-stimulating hormone, and luteinizing hormone. Yaji also caused significant (p< 0.05) dose- and duration-dependent decreases in superoxide dismutase, catalase, and glutathione peroxidase activity, as well as increased testicular malonaldehyde levels. Yaji induced distortions in the testicular histological architecture. CdCl2 damaged testicular function by significantly (p< 0.05) reducing semen quality, reproductive hormone levels, and oxidative stress markers in albino Wistar rats. CdCl2 also altered the histology of the testis. Conclusion: This study shows that yaji sauce has similar anti-fertility effects to those of CdCl2, as it adversely interferes with male reproduction by impairing oxidative stress markers and the function and morphological features of the testis.

Annual Reproductive Cycle of Acheilognathus rhombeus, in Korea

  • Ki, Se-Un;Kho, Kang-Hee;Lee, Won-Kyo
    • Development and Reproduction
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    • v.23 no.4
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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.

A Study on the Testicular Cycle of Korean Brown Frog (Rana coreana) (한국산개구리(Rana coreana) 정소주기에 관한 연구)

  • Shin, Jung-Min;Ko, Sun-Kun
    • Korean Journal of Environmental Biology
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    • v.32 no.2
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    • pp.153-158
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    • 2014
  • In order to determine the testicular cycle of the Korean brown frog, Rana coreana, the gonadosomatic index (GSI) and the changes of germ cells in testis for adult males were investigated throughout the year. The study indicated that the spermatogenesis in the seminiferous tubule of testis began in August and became most active in the month of September, and the GSI was recorded the highest and the cross area of seminiferous tubule was the widest on this period. Furthermore the seminiferous tubules at the post spawning stage appeared in testis during February, and the spermatogenesis was quiescence period of time from March to July and the GSI and the cross area of seminiferous tubule were found to be the lowest. Based on these observations, we suggest that, GSI of male Korean brown frog changes significantly between July to August, indicating the testicular cycle with discontinuous spermatogenic process, and the breeding season was confirmed to be February.

Effects of Short-Term Exposure with Tri-n-Butyltin Chloride (TBTCl) and Bisphenol A on the Reproduction of the Striped Field Mouse (TBTCl (tri-n-butyltin chloride)과 bisphenol A에 의한 단기노출이 등줄쥐의 번식에 미치는 영향)

  • Kim, Ji-Hye;Min, Byung-Yoon;Yoon, Myung-Hee
    • Journal of Life Science
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    • v.21 no.3
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    • pp.406-411
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    • 2011
  • To investigate the effects of short-term treatment with tri-n-butyltin chloride (TBTCl) and bisphenol A (BPA) on the reproduction of striped field mice, the mice were intramuscularly injected with TBTCl or BPA immediately before the reproductive season and examined in the reproductive season after keeping them for 4 months. As a result, there were no differences between the control and the compound-treated groups regarding body weight in both sexes, the residual levels of the compounds in the adult males, and the gonadosomatic index (GSI) and the histological structures with LM and EM of the testes and epididymides in both the adult and young males. The infant mortality and abortion rate, however, were high in the TBTCl-treated groups and BPA-treated groups respectively, compared to the control group. Conclusively, it was suggested that short-term treatment with TBTCl or BPA in mice in the non-reproductive season might have inhibited the development of the uterine embryos or fetuses, although it did not induce accumulations of these compounds or affect the reproductive organs of adult and young (F1) males.

A Study on the Testicular Cycle of Asian Toad (Bufo gargarizans) (두꺼비(Bufo gargarizans) 정소주기에 관한 연구)

  • Park, Se-Hwa;Ko, Sun-Kun
    • Korean Journal of Environment and Ecology
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    • v.29 no.4
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    • pp.525-532
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    • 2015
  • In order to determine the testicular cycle of the Asian toad, Bufo gargarizans, adult males of the species were captured around Jeongeup city (Jeollabuk-do, Korea) during March, 2012 to February, 2013 and the gonadosomatic index (GSI) and the changes of germ cells in their testes were investigated throughout the year. The study indicated that the spermatogenesis in the seminiferous tubule of testes began in April and became most active in July. The recorded GSI was the highest and the cross area of seminiferous tubule was the widest in this period. The seminiferous tubules at the post spawning stage appeared in February, the largest amounts occurred in March and primary spermatogonia also appeared in this period. The GSI and the cross area of seminiferous tubules were found to be the lowest in March, indicating a testicular cycle with potentially continuous spermatogenic process. According to the findings above, it is confirmed that testicular spermatogenesis takes place actively between April to July in male Asian toad and that their breeding season is February to March.