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Genetic and phenotypic parameters for body weights harvest length and growth curve parameters in American mink

机译:美国水貂中体重收获长度和生长曲线参数的遗传和表型参数

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摘要

Understanding the genetics underlying growth curve is important for selection of animals with better growth potential, but little is known about the genetics of growth curve parameters in mink. This study estimated the genetic parameters for body weights (BWs), harvest length (HL), and growth parameters derived from the Richards model. For this purpose, individual BW of 1,088 mink measured seven times in 3-wk intervals (weeks 13 to 31 of life) were used for growth curve modeling using the Richards model. The BW traits included BW at week 13 (BW13), 16 (BW16), 19 (BW19), 22 (BW22), 25 (BW25), 28 (BW28), and 31 (BW31). Univariate analyses indicated that sex and birth-year had significant effects (P < 0.05) on BW, HL, asymptotic weight (α), growth rate at mature (k), shape parameter (m), weight at the inflection point (WIP), and age at the inflection point (AIP). In contrast, the color type had only significant effect (P < 0.05) on BW31 and HL. Estimated heritabilities (±SE) were ranged from 0.36 ± 0.13 (BW13) to 0.46 ± 0.10 (BW22) for BW and were 0.51 ± 0.09, 0.29 ± 0.09, 0.30 ± 0.09, 0.33 ± 0.1, 0.44 ± 0.10, and 0.47 ± 0.10 for HL, α, k, m, WIP, and AIP, respectively. The parameter α had non-significant (P > 0.05) genetic correlations (±SE) with k (−0.21 ± 0.23) and m (−0.10 ± 0.22), suggesting that changing shape parameters (k and m) will not influence asymptotic weight (α). Strong significant (P < 0.05) phenotypic (from 0.46 ± 0.03 to 0.60 ± 0.03) and genetic (0.70±0.13 to 0.88±0.09) correlations were observed between HL and different BW measures. The α, AIP, and WIP parameters had significant (P < 0.05) genetic correlations with HL indicated that selection for higher α, AIP, and WIP values would increase HL. Parameters k and m had nonsignificant (P > 0.05) genetic correlations with HL, indicating the change of the curve shape could not influence HL. Overall, the results suggest that growth curve parameters are heritable and can respond to genetic or genomic selection for optimizing the performance in mink.
机译:理解遗传学潜在的生长曲线对于选择具有更好的生长潜力的动物是重要的,但对貂皮中生长曲线参数的遗传知之甚少。本研究估计了体重(BWS),收获长度(HL)的遗传参数,以及来自Richards模型的生长参数。为此目的,使用Richards模型用于36%间隔(生命周第13至31周)的7倍的单独BW用于使用Richards模型进行生长曲线建模。 BW特征包括第13周(BW13),16(BW16),19(BW19),22(BW22),25(BW25),28(BW28)和31(BW31)的BW。单变量分析表明,性别和出生年度对BW,HL,渐近重量(α),成熟(k),形状参数(m),重量在拐点(WIP)上的生长速率(WIP)具有显着影响(P <0.05) ,拐点(AIP)的年龄。相比之下,颜色类型在BW31和HL上仅具有显着效果(P <0.05)。估计的遗传性(±SE)为BW 0.36±0.13(BW13)至0.46±0.10(BW22),为0.51±0.09,0.29±0.09,0.30±0.09,0.33±0.1,0.44±0.10和0.47±0.10对于HL,α,K,M,WIP和AIP。参数α具有非显着(p> 0.05)遗传相关(±Se),k(-0.21±0.23)和m(-0.10±0.22),表明改变形状参数(k和m)不会影响渐近重量(α)。在HL和不同BW措施之间观察到强大的显着(P <0.05)表型(从0.46±0.03〜0.60±0.03)相关性(0.70±0.13至0.88±0.88±0.88±0.88±0.88±0.88±0.88±0.88±0.88±0.88±0.88±0.1.0±0.88±0.88±0.09)。 α,AIP和WIP参数具有显着的(P <0.05)与HL的遗传相关性表明为更高α,AIP和WIP值的选择将增加HL。参数K和M与HL的遗传相关性(p> 0.05)遗传相关性,表明曲线形状的变化不能影响HL。总体而言,结果表明,生长曲线参数是遗传的,可以响应遗传或基因组选择,以优化貂皮中的性能。

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