Heritability, genetic correlations and genotype-environment interactions for growth and survival of larvae and post-larvae of the Caribbean scallop, Argopecten nucleus (Mollusca: Bivalvia)
Autor: | Luz Adriana Velasco, Judith Barros, Federico M. Winkler |
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Rok vydání: | 2018 |
Předmět: |
0106 biological sciences
Larva biology 010604 marine biology & hydrobiology Argopecten nucleus fungi Zoology 04 agricultural and veterinary sciences Aquatic Science Heritability Selective breeding biology.organism_classification 01 natural sciences Genetic gain Genotype Scallop 040102 fisheries 0401 agriculture forestry and fisheries Mollusca |
Zdroj: | Aquaculture. 495:948-954 |
ISSN: | 0044-8486 |
Popis: | The Caribbean scallop Argopecten nucleus is a species with a great potential for commercial aquaculture in the Caribbean given its fast growth and the availability of culture technology. However, its production relies completely on hatchery-reared seed, and the survival in early stages, particularly during the settling process, is the main limitation for this activity to become cost effective. Thus, in order to assess the feasibility of improving survival of larvae and post-larvae of A. nucleus through genetic selection without affecting growth, it was estimated the heritability and the genotype-environment interactions for such traits, as well as the genetic correlations between them. These parameters were estimated based on intraclass correlations of 40 full-sib families (10 half-sib families) at 1, 11 and 75 days post fertilization. Heritability values were very high for the post-larvae survival (0.49), while it was low and not significant for larvae survival (≤0.07) and medium to high for growth traits of larvae and post-larvae (>0.3). The traits analyzed in post-larvae exhibited significant genotype-environment interactions in relation to culture depth in the sea. No significant genetic correlations between the measured traits were found. The results suggest the existence of an important genetic component in the variation of post-larval survival, and larval and post-larval growth, as well as a high potential response to direct genetic selection, especially for post-larval survival (50% increase per generation), without affecting the growth traits. |
Databáze: | OpenAIRE |
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