<p>Plasma estradiol 17β (E<sub>2</sub>) and gonadosomatic index (GSI) are reliable biomarkers for assessing gonadal maturity in fish. This study investigated seasonal variations in GSI and plasma E<sub>2</sub> concentrations and their correlation with ovarian development stages in female golden trevally (<i>Gnathanodon speciosus</i>), a high-value fish species for marine aquaculture, over an annual reproductive cycle. The broodfish were 900 ± 200&#xa0;g and 40 ± 5&#xa0;cm in body weight and total length, respectively. From November to February, plasma E<sub>2</sub> levels and GSI remained low, followed by a significant increase from March to October, with E<sub>2</sub> peaking during vitellogenesis. Ovarian histology revealed asynchronous oocyte development from March to October, with multiple oocyte stages coexisting, confirming <i>G. speciosus</i> as a multiple-spawning species with a reproductive season spanning March to October. Elevated plasma E<sub>2</sub> levels during oocyte growth underscore its pivotal role in driving vitellogenesis. These findings enhance understanding of <i>G. speciosus</i> reproductive physiology, providing valuable insights for optimizing broodstock management, conditioning protocols, and strategic planning for artificial reproduction and seed production for marine aquaculture.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Seasonal dynamics of plasma estradiol 17β level, gonadosomatic index, and ovarian development in female golden trevally (Gnathanodon speciosus)

  • Hung Quoc Pham,
  • Hoang Minh Le,
  • Ut Van Phan,
  • Minh Van Nguyen,
  • Khuong V. Dinh

摘要

Plasma estradiol 17β (E2) and gonadosomatic index (GSI) are reliable biomarkers for assessing gonadal maturity in fish. This study investigated seasonal variations in GSI and plasma E2 concentrations and their correlation with ovarian development stages in female golden trevally (Gnathanodon speciosus), a high-value fish species for marine aquaculture, over an annual reproductive cycle. The broodfish were 900 ± 200 g and 40 ± 5 cm in body weight and total length, respectively. From November to February, plasma E2 levels and GSI remained low, followed by a significant increase from March to October, with E2 peaking during vitellogenesis. Ovarian histology revealed asynchronous oocyte development from March to October, with multiple oocyte stages coexisting, confirming G. speciosus as a multiple-spawning species with a reproductive season spanning March to October. Elevated plasma E2 levels during oocyte growth underscore its pivotal role in driving vitellogenesis. These findings enhance understanding of G. speciosus reproductive physiology, providing valuable insights for optimizing broodstock management, conditioning protocols, and strategic planning for artificial reproduction and seed production for marine aquaculture.