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Genetic and phenotypic associations of feed efficiency with growth and carcass traits in Australian Angus cattle

机译:饲料效率与澳大利亚安格斯牛生长和car体性状的遗传和表型关联

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摘要

Genetic and phenotypic parameters for feed efficiency, growth, and carcass traits for Australian Angus beef cattle were estimated. Growth traits included birth weight ( ), 200-d weight (200dWT), 400-d weight (400dWT), and 600-d weight (600dWT). Traits associated with feed efficiency were average daily weight gain (ADG), metabolic midweight, average of daily feed intake ( ), feed conversion ratio ( ), residual feed intake ( ), and residual gain ( ). Carcass traits involved were carcass eye muscle area ( ), carcass intramuscular fat ( ), subcutaneous fat depths at the 12th/13th rib ( ), rump P8 fat depth ( ), and carcass weight ( ). For growth traits, heritability estimates ranged from 0.14 ± 0.03 for 200dWT to 0.48 ± 0.06 for 600dWT. For feed efficiency traits, direct heritability estimates for FI, FCR, RFI, and RG were 0.55 ± 0.08, 0.20 ± 0.06, 0.40 ± 0.07, and 0.19 ± 0.06, respectively. High heritability estimates were observed for CEMA, IMF, P8FAT, and CWT of 0.52 ± 0.09, 0.61 ± 0.09, 0.55 ± 0.09, and 0.66 ± 0.09, respectively. Strong positive genetic correlations were found for FI with 200dWT, 400dWT, and 600dWT of 0.68 ± 0.09, 0.42 ± 0.11, and 0.61 ± 0.07, respectively. Weak genetic correlations were observed between RFI and growth traits. For carcass traits, genetic correlations between RFI and CEMA, IMF, CRIB, P8FAT, CWT were −0.19 ± 0.14, 0.31 ± 0.14, 0.18 ± 0.16, 0.24 ± 0.13, and 0.40 ± 0.12, respectively. There was a tendency for low to moderate unfavorable genetic associations between feed efficiency traits, evaluated as RFI and RG, with growth and carcass traits. This implies that selection for RFI would have slight negative impacts on growth and reduce carcass quality. To avoid this, it would be necessary to build selection indices to select feed efficient animals without compromising growth and meat quality.
机译:估计了澳大利亚安格斯肉牛的饲料效率,生长和car体性状的遗传和表型参数。生长特征包括出生体重(),200 d体重(200dWT),400 d体重(400dWT)和600 d体重(600dWT)。与饲料效率相关的性状是平均日增重(ADG),代谢中重,日平均采食量(),饲料转化率(),剩余饲料摄入量()和剩余增重()。涉及的体特征是eye体眼肌面积(),car体肌内脂肪(),第12/13肋骨的皮下脂肪深度(),臀部P8脂肪深度()和car体重量()。对于生长性状,遗传力估计范围从200dWT的0.14±0.03到600dWT的0.48±0.06。对于饲料效率性状,FI,FCR,RFI和RG的直接遗传力估计分别为0.55±0.08、0.20±0.06、0.40±0.07和0.19±0.06。 CEMA,IMF,P8FAT和CWT的高遗传力估计值分别为0.52±0.09、0.61±0.09、0.55±0.09和0.66±0.09。 FI的200dWT,400dWT和600dWT分别具有0.68±0.09、0.42±0.11和0.61±0.07的强正遗传相关性。 RFI和生长性状之间的遗传相关性较弱。对于car体性状,RFI与CEMA,IMF,CRIB,P8FAT,CWT之间的遗传相关性分别为-0.19±0.14、0.31±0.14、0.18±0.16、0.24±0.13和0.40±0.12。饲料效率性状(以RFI和RG评估)与生长和car体性状之间存在低到中等不利的遗传关联。这意味着选择RFI将对生长产生轻微的负面影响并降低car体质量。为了避免这种情况,有必要建立选择指数来选择饲料有效的动物而又不损害生长和肉质。

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