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Genetic and phenotypic parameters for litter size survival rate gestation length and litter weight traits in American mink

机译:美洲水貂产仔数成活率妊娠长度和产仔体重性状的遗传和表型参数

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摘要

The economic efficiency of mink production is greatly influenced by reproductive performance. Therefore, the objective of this study was to estimate phenotypic and genetic parameters for reproduction traits including total number of kits born (>TB), number of live kits at birth (>LB), number of live kits at weaning (>LW), survival rate at birth (>SB), survival rate at weaning (>SW), gestation length (>GL), average kit weight per litter at birth (>AWB), average kit weight per litter at week 3 (>AW3), and average kit weight per litter at weaning (>AWW) in American mink. Data included records of 3,046 litters collected by the Canadian Centre for Fur Animal Research at Dalhousie Faculty of Agriculture between 2002 and 2016. Significance (P < 0.05) of fixed effects (year, number of matings, color type, age of dam, origin of dam, sex ratio, and number of live kits) and random effects of permanent environment were determined using univariate repeatability models. A significant effect of permanent environment was only found for survival rate traits (P < 0.05). Subsequently, genetic and phenotypic parameters for all traits were estimated by fitting a set of bivariate models using ASREML 4.0. Heritabilities (± SE) were estimated to be 0.07 ± 0.03 for TB, 0.07 ± 0.02 for LB, 0.09 ± 0.04 for LW, 0.13 ± 0.03 for SB, 0.10 ± 0.02 for SW, 0.29 ± 0.03 for GL, 0.28 ± 0.05 for AWB, 0.19 ± 0.04 for AW3, and 0.10 ± 0.04 for AWW. Moderate positive genetic correlation was observed between AWB with SB (0.66 ± 0.10) and SW (0.61 ± 0.13). Furthermore, genetic correlations of LB with SW and AWB were 0.55 ± 0.16 and 0.53 ± 0.18, respectively. On the other hand, negative and moderate genetic correlations were observed between GL and survival rates at birth (−0.43 ± 0.14) and at weaning (−0.37 ± 0.15). These results indicated that selection for higher litter weights at birth can effectively improve survival rate and number of live kits in mink farms. It was suggested to incorporate litter weight traits as a selection criterion to increase maternal ability in mink breeding programs. Unfavorable genetic trends were observed for the studied traits indicating that phenotypic selection with low selection intensity had not been an efficient method to improve them over the last 10 yr. It was recommended to use genetic or genomic evaluation methods for mink selection.
机译:水貂生产的经济效率在很大程度上受到繁殖性能的影响。因此,本研究的目的是评估生殖性状的表型和遗传参数,包括出生的试剂盒总数(> TB ),出生时的活试剂盒数量(> LB )。 ,断奶时的活检数量(> LW ),出生时的生存率(> SB ),断奶时的生存率(> SW ),妊娠期(> GL ),出生时每窝平均套件重量(> AWB ),第3周时每窝平均套件重量(> AW3 )和平均值美国貂的断奶(> AWW )时每窝的成套件重量。数据包括2002年至2016年间加拿大达尔豪西农业大学加拿大毛皮动物研究中心收集的3,046窝幼仔的记录。固定效应(年,交配次数,颜色类型,水坝年龄,产地来源)的意义(P <0.05)。使用单变量可重复性模型确定水坝,性别比和活动套件的数量)以及永久环境的随机影响。仅对于存活率性状,发现永久环境的显着影响(P <0.05)。随后,通过使用ASREML 4.0拟合一组双变量模型来估计所有性状的遗传和表型参数。遗传力(±SE)估计为TB 0.07±0.03,LB 0.07±0.02,LW 0.09±0.04,SB 0.13±0.03,SW 0.10±0.02,GL 0.29±0.03,AWB 0.28±0.05 ,对于AW3为0.19±0.04,对于AWW为0.10±0.04。 AWB与SB(0.66±0.10)和SW(0.61±0.13)之间观察到中等程度的正相关。此外,LB与SW和AWB的遗传相关性分别为0.55±0.16和0.53±0.18。另一方面,在出生和断奶时(-0.43±0.14)和断奶时(-0.37±0.15)之间,GL与存活率之间存在负和中等的遗传相关性。这些结果表明,在出生时选择较高的产仔体重可以有效提高水貂养殖场的成活率和活体工具箱数量。建议将杂物重性状作为选择标准,以提高水貂育种计划中的母体能力。对于所研究的性状,观察到不利的遗传趋势,这表明在过去十年中,低选择强度的表型选择并不是改善它们的有效方法。建议使用遗传或基因组评估方法选择水貂。

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