尼日利亚南南区两个品种家兔及其互交杂交的繁殖、生长和胴体性能

I. Meme, Ekpo, Joseph Sylvester, Emem Iboro
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摘要

对两个品种的家兔及其正交的繁殖、生长和胴体性状进行了评价。两种纯种金鼠(CHA)与新西兰白鼠(NZW)及其互交研究采用CHA x NZW坝(CHA x NZW)和NZW坝x CHA坝(NZW x CHA)。产生4种基因型“CHA x CHA、NZW x NZW、CHA x NZW和NZW x CHA”,共获得126只小猫。研究的生长性状为体重(BWT),生殖性状为妊娠期长(GL)、初生窝数(LSB)、断奶窝数(LSW)、平均初生重(ABWT)、平均断奶重(AWWT)和死亡率(% mortality)。评价胴体性状为屠宰重、屠宰率、肝、心、肺、肾、前腿、胸、腰、后腿和皮肤重量。所得数据进行方差分析,采用Duncan新多元极差检验分离显著性均值。结果表明,遗传组对肉鸡生长、繁殖和胴体性能均有显著影响(p<0.05)。在断奶前和断奶后的生长阶段,NZW × CHA遗传组的体重显著(p<0.05)高于CHA × CHA、NZW × NZW和CHA × NZW 3个遗传组。繁殖和某些胴体性状(净重、前腿、胸、腰、后腿和皮肤)性能也有类似趋势;NZW × CH遗传组优于其他各组。NZW × NZW组死亡率最高(50.28±5.78),NZW × CHA组死亡率最低(5.71±8.69)。综上所述,研究区NZW × CHA在大部分测定性状(生长、繁殖和胴体性状)上的性能最好,因此建议在研究区使用NZW公兔与CHA母兔杂交,以获得更好的繁殖、生长和胴体性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reproductive, growth and carcass performance of two breeds of rabbit and their reciprocal crosses in the south-south zone of Nigeria
The study was conducted to evaluate reproductive, growth and carcass traits of two breeds of rabbit and their reciprocal crosses. Two purebred Chinchilla (CHA) and New Zealand White (NZW) and their reciprocal crossing; CHA sire x NZW dam (CHA x NZW) and NZW sire x CHA dam (NZW X CHA) were used in the study. Four genotypes “CHA x CHA, NZW x NZW, CHA x NZW and NZW x CHA” were generated to obtain one hundred and twenty-six (126) kittens. The growth traits studied was body weight (BWT) while reproductive traits studied were gestation length (GL), litter size at birth (LSB), litter size at weaning (LSW), average birth weight (ABWT), average weaning weight (AWWT) and percent mortality (% mortality). The carcass traits evaluated were dressed weight, dressing percentage, weights of liver, heart, lungs, kidney, foreleg, thoracic, loin, hind leg and skin. The data obtained were subjected to analysis of variance and significant means were separated using Duncan new multiple range test. The results indicated that genetic group had significant (p<0.05) influenced on growth, reproductive and carcass traits performances evaluated. The NZW x CHA genetic group had significantly (p<0.05) heavier body weight than the other three genetic groups CHA x CHA, NZW x NZW and CHA x NZW in both the pre-weaning and post-weaning phases of growth. Similar trends were observed for reproductive and some carcass (dress weight, fore leg, thoracic, loin, hind leg and skin) trait performances; the NZW x CH genetic group was superior to every other group. However, percentage mortality was highest in NZW x NZW (50.28±5.78) and lowest in NZW x CHA (5.71±8.69). It was concluded that NZW x CHA had the best performance in most of the traits measured (growth, reproductive and carcass traits) in the study area and therefore using NZW males to cross with CHA females is recommended in the study area to produce rabbits with better performances in term of reproduction, growth and carcass.
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