By Rex A. Dunham
The genetic development of fish for aquaculture and similar fisheries is a box of analysis that has obvious tremendous advances in recent times. but there isn't any ebook which gives an available assessment of the topic. This publication goals to fill this hole and should be appropriate for complicated scholars and researchers in animal genetics, fish biology and aquaculture.
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Additional resources for Aquaculture and Fisheries Biotechnology, CABI Publishing
Head weight and visceral percentages did not differ between triploid and diploid channel ϫ blue and channel ϫ white hybrid catﬁsh. Triploid Atlantic salmon ϫ brown trout hybrids had the same dress-out percentage as Atlantic salmon in saltwater net pens (Galbreath and Thorgaard, 1997). Female triploid hybrids between female rainbow trout hybridized with either male brook trout, S. fontinalis, Arctic charr, S. alpinus or lake charr, S. , 2000). Similar results were obtained for triploid common carp in India.
1997) Kavumpurath and Pandian (1990) Sutterlin et al. (1987) Utter et al. (1983) Utter et al. (1983) Utter et al. (1983) Solar et al. (1984) Lou and Purdom (1984) Chourrout (1984) Palti et al. (1997) Palti et al. (1997) 90% Shelton et al. (1986) 98–100% Galbreath and Samples (2000) 93–100% Manning and Crim (2000) 90% Piferrer et al. (2000) 100% Gorshkov et al. 7% Ueno (1984) Cherfas et al. (1990) 80–100% Hollebecq et al. (1988) 95% McCarter (1988) 98% Cassani and Caton (1986a) 67% (0–100%) Cassani and Caton (1986a) 80–100% Aldridge et al.
Again, in this case the restricted ﬁsh never caught up and their ﬁnal weight was less than that of the full-fed ﬁsh. Feed consumption rates are higher and feed conversion is more efﬁcient for the restricted ﬁsh, but this is an expected result since they were smaller throughout the experiment. The data are very convincing for the conclusion that compensatory gain does not exist. All of these experiments demonstrate that compensatory gain was not exhibited by channel catﬁsh ﬁngerlings; therefore the multiple rearing technique is valid for genetics experiments involving ﬁngerling channel catﬁsh.
Aquaculture and Fisheries Biotechnology, CABI Publishing by Rex A. Dunham