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Autosomal and X-linked additive genetic effects on body weight, body measurements and efficiency-related traits in sheep

机译:绵羊体重,身体测量和效率相关性具有血型血型和X型X-联系的添加剂遗传效应

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摘要

This study aimed to measure the contribution of autosomal and X chromosome to the phenotypic variation of growth traits including birth weight (SW), weaning weight (WW) 6-month weight (W6) and pre- and post-weaning average daily gains (ADGa, ADGb), body measurements including body length (BL), height at wither (HW), height at back (HB), heart girth (HG) and scrotal circumference (SC) as well as efficiency related traits including pre- and post-weaning Kleiber ratio (KRa, KRb), pre- and post-weaning efficiency of growth (EFa, EFb) and pre- and post-weaning relative growth rate (RGRa, RGRb) in Makooei sheep. To this end, REML procedure fitting a series of 4 uni-variate animal models including various combinations of autosomal, X-linked and maternal effects were fitted to estimate variance components and corresponding genetic parameters. Bi-variate analyses were also applied to estimate (co)variances between traits. Estimates of autosomal heritability (h(a)(2)) for growth traits ranged from 0.09 (ADGb) to 0.29 (BW). For body measurements, h(a)(2) was in the range between 0.01 (HW) and 0.42 (SC) and for efficiency related traits it was in the range between 0.08 (KRb and RGRb) to 0.13 (KRa). Except for body measurements, other traits studied were affected by maternal effects. The effects of X-linked loci emerged after weaning in a way that for average daily gain and efficiency-related traits measured during post-weaning growth phase, the estimates of the X-linked heritability (h(a)(2)) were comparable to autosomal heritability and ranged between 0.04 (KRb) to 0.07 (EFb). The highest h(a)(2) were observed for height of animals measured at back and wither as 0.12 and 0.13, much higher than corresponding h(a)(2) as 0.01 and 0.04, respectively. The autosomal genetic correlation ranged between 0.05 (EFb-HW) to 0.99 (HW-HB). The X-liked genetic correlation was in the range from 0.16 (RGRb-ADGb) to 0.99 (HW-HB) which showed that a part of genetic (co) variance between studied traits originated from activity of loci on X chromosome. The correlation between breeding values including and excluding X-linked effects decreased as the X-linked genetic effects increased. The lowest correlation was observed for height at wither as 0.85 indicating the importance of including X-linked genetic effects in the procedure of genetic evaluation. It was concluded that in order to increase the accuracy of genetic evaluation, separating X-linked effects from autosomal effects is necessary especially for traits which affected strongly by X-linked loci.
机译:本研究旨在测量常染色体和X染色体对增长性状的表型变异的贡献,包括出生体重(SW),断奶重量(WW)6个月重量(W6)和断奶后的平均每日收益(ADGA ,ADGB),身体测量,包括体长(BL),高度在枯萎(HW),后部高度(HB),心周长(HG)和阴囊圆周(SC)以及效率相关性状,包括预先和后断奶比率(KRA,KRB),生长前和断奶后效率(EFA,EFB)和Makooei羊的前后相对生长速率(RGRA,RGRB)。为此,REML程序拟合一系列4个Uni-变形动物模型,包括常染色体,X键和母体效果的各种组合,用于估计方差分量和相应的遗传参数。双变异分析也应用于特征之间的估计(共)差异。生长性状的常染色体遗传性(H(A)(2))的估计范围为0.09(ADGB)至0.29(BW)。对于身体测量,H(a)(2)在0.01(HW)和0.42(SC)之间,并且效率相关的性状在0.08(KRB和RGRB)至0.13(KRA)的范围内。除了身体测量外,研究的其他特征受孕产妇效果的影响。断奶后出现的X键链接的影响是在断奶后生长期期间测量的平均每日增益和效率相关的特征的方式,X键遗传性(H(a)(2))的估计是可比的常染色体遗传性和范围为0.04(KRB)至0.07(EFB)。观察到最高的H(a)(2)用于在背部和含量为0.12和0.13时测量的动物的高度,远高于相应的H(a)(2)为0.01和0.04。常血型遗传相关的范围在0.05(EFB-HW)至0.99(HW-HB)之间。 X-phashed遗传相关的范围为0.16(RGRB-ADGB)至0.99(HW-HB),其显示研究了研究的特征之间的遗传(CO)差异源于X染色体上的基因座的活性。随着X型遗传效应增加,繁殖值包括和排除X链接效应之间的相关性降低。以0.85患者的高度观察到最低相关性,表明在遗传评估程序中包含X链接遗传效应的重要性。结论是为了提高遗传评价的准确性,特别是对X键位基因座强烈影响的特性,将X链接效应分离为常染色体效应。

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