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古吉拉特牛的饲料效率、生长、阴囊周长和胴体性状的遗传关联。

Genetic association between feed efficiency, growth, scrotal circumference, and carcass traits in Guzerat cattle.

机构信息

Animal Science Department, Goiás Federal University, Esperança, s/n, GO, 74690-900, Goiânia, Brazil.

Embrapa Cerrados, 73310-970, BR-020, Km 18, DF, Planaltina, Brazil.

出版信息

Trop Anim Health Prod. 2023 Mar 25;55(2):132. doi: 10.1007/s11250-023-03552-0.

Abstract

The objective of this study was to estimate the genetic parameters for feed efficiency-related traits and their genetic correlations with growth, male fertility, and carcass traits using multi-trait analysis in Guzerat cattle. Further, it aimed to predict the direct and correlated responses for feed efficiency traits when selection was applied for growth, male fertility, and carcass traits. The evaluated traits were adjusted weight at 120 (W120), 210 (W210), 365 (W365), and 450 days of age (W450), adjusted scrotal circumference at 365 days of age (SC365) and at 450 days of age (SC450), scrotal circumference, ribeye area (REA), backfat thickness (BFT), rump fat thickness (RFT), residual feed intake (RFI), and dry matter intake (DMI). The genetic parameters were obtained by the restricted maximum likelihood method (REML), using an animal model in multi-trait analyses. The heritability estimates for W120, W210, W365, W450, SC365, and SC450 varied from low to high (0.17 to 0.39). The carcass traits, REA, BFT, and RFT, displayed low to moderate heritability estimates, 0.27, 0.10, and 0.31, respectively. The heritability estimates for RFI (0.15) and DMI (0.23) were low and moderate, respectively. The RFI showed low genetic correlations with growth traits, ranging from - 0.07 to 0.22, from 0.03 to 0.05 for scrotal circumference, and from - 0.35 to 0.16 for carcass, except for DMI, which ranged from 0.42 to 0.46. The RFI and DMI presented enough additive genetic variability to be used as selection criteria in Guzerat breed genetic improvement program. Additionally, the response to selection for RFI would be higher when selection is performed directly for this trait. The selection for residual feed intake would not promote unfavorable correlated responses for scrotal circumference, carcass (yield and finish), and growth traits. Therefore, the selection for more efficient animals would not compromise the productive, reproductive, and carcass performance, contributing to reduce the production costs, increasing the profitability and sustainability of beef cattle production in tropical areas.

摘要

本研究旨在利用多性状分析估计古吉拉特牛的饲料效率相关性状的遗传参数及其与生长、雄性生育力和胴体性状的遗传相关性。此外,还旨在预测当选择应用于生长、雄性生育力和胴体性状时,饲料效率性状的直接和相关反应。评估的性状包括调整后的 120 天体重(W120)、210 天体重(W210)、365 天体重(W365)和 450 天体重(W450)、调整后的 365 天阴囊周长(SC365)和 450 天阴囊周长(SC450)、阴囊周长、眼肌面积(REA)、背膘厚(BFT)、臀脂厚(RFT)、剩余采食量(RFI)和干物质采食量(DMI)。通过限制最大似然法(REML),利用动物模型在多性状分析中获得遗传参数。W120、W210、W365、W450、SC365 和 SC450 的遗传力估计值从低到高(0.17 到 0.39)。胴体性状、REA、BFT 和 RFT 的遗传力估计值分别为 0.27、0.10 和 0.31,属于低到中。RFI(0.15)和 DMI(0.23)的遗传力估计值较低,分别为低和中。RFI 与生长性状的遗传相关性较低,范围从-0.07 到 0.22,从 0.03 到 0.05 为阴囊周长,从-0.35 到 0.16 为胴体,除了 DMI,范围从 0.42 到 0.46。RFI 和 DMI 具有足够的加性遗传变异性,可以作为古吉拉特牛遗传改良计划的选择标准。此外,当直接对该性状进行选择时,RFI 的选择反应会更高。对剩余采食量的选择不会导致阴囊周长、胴体(产肉量和肉质)和生长性状的不利相关反应。因此,选择更高效的动物不会影响生产、繁殖和胴体性能,有助于降低生产成本,提高热带地区肉牛生产的盈利能力和可持续性。

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