Embryonic and Larval Development of Stinging Catfish, Heteropneustes fossilis, in Relation to Climatic and Water Quality Parameters
Эмбриональное и личиночное развитие сомика-иглочерева Heteropneustes fossilis в зависимости от климатических параметров и показателей качества воды
2023-02-19
SCID: 54.1/ybmq6dhk
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Heteropneustes fossiliscanonical correlation analysisembryonic developmentinduced breedinglarval development
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Abstract (AI)
). Scientific and evidence-based embryonic and larval development research on this fish species in the context of climate change is limited. This experimental study was conducted via induced breeding of stinging catfish using a conventional hatchery system, rearing the larvae in hapas placed in ponds. A series of microscopic observations using a trinocular digital microscope and an analysis of the relationship between larval growth and climate-driven water quality parameters such as temperature, pH, dissolved oxygen, total dissolved solids, alkalinity, and ammonia were performed. During embryonic development, the first cleavage was observed between 30 and 35 min of post-fertilization. Embryonic development (ranging from the 2-cell to the pre-hatching stage) took 21:00 h. Hatching occurred at 22:30 to 23:00 h after fertilization, with an average larvae length of 2.78 ± 0.04 mm. In the post-hatching stage, four pairs of tiny barbels appeared at 36:00 h, and the larvae started feeding exogenously after 72:00 h. These larvae fully absorbed their yolk sacs on the 6th day and attained an average length of 6.44 ± 0.06 mm. Aerial respiration of the larvae was investigated through naked-eye observation on the 10th day of hatching. The average length of the larvae was 32.00 ± 2.0 mm at the end of the 30-day post-hatching observation period. Bivariate correlation analysis showed significant correlations between key climatic variables and water quality parameters under hapa-based larval-rearing conditions. According to canonical correlation analysis, the first canonical function revealed the highest significant correlation between the two sets of variables (r1 = 0.791). The response variable weight of larvae (6.607) was linked to two explanatory variables: pH (0.321) and dissolved oxygen (0.265). For the second canonical correlation function, a positive correlation (0.431) was observed between the two sets of variables. Larval weight (-18.304) was observed to be linked to climatic variables, including air temperature (-0.316) and surface pressure (0.338). Results of this study reveal the subtle correlation between larval growth and water quality driven by climatic variables.
Key Findings
1
Canonical correlation analysis showed a strong association between climatic and water-quality variables (r1 = 0.791), with larval weight linked particularly to pH and dissolved oxygen.
2
Embryonic cleavage began 30–35 minutes after fertilization, and development from the two-cell stage to pre-hatching lasted 21 hours.
3
Hatching occurred 22.5–23 hours after fertilization, producing larvae averaging 2.78 ± 0.04 mm in length.
4
Larvae developed four pairs of barbels by 36 hours, began exogenous feeding after 72 hours, and completely absorbed yolk sacs by day six.
5
Larvae displayed aerial respiration by day 10 and reached 32.00 ± 2.0 mm average length after 30 days post-hatching.
Research Object
Embryonic and larval development of stinging catfish (Heteropneustes fossilis) under hapa-based hatchery rearing conditions
Research Subject
Developmental stages, growth, feeding, yolk-sac absorption, and aerial respiration in relation to climate-driven water-quality parameters
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2023-02-19
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