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遗传关联分析与母猪寿命和终身繁殖性能相关的生长、组成和结构健全性状。

Genetic associations for gilt growth, compositional, and structural soundness traits with sow longevity and lifetime reproductive performance.

机构信息

Iowa State University, Department of Animal Science, Ames 50011, USA.

出版信息

J Anim Sci. 2013 Apr;91(4):1570-9. doi: 10.2527/jas.2012-5723. Epub 2013 Feb 28.

Abstract

The objective of this study was to estimate genetic associations for gilt growth, compositional, and structural soundness with sow longevity and lifetime reproduction. Performance and pedigree information from 1,447 commercial females from 2 genetic lines were included in the data analyzed. Growth was expressed as days to 113.5 kg BW (DAYS) and compositional traits included loin muscle area (LMA), 10th rib backfat (BF10), and last rib backfat (LRF). Structural soundness traits included body structure traits [length (BL), depth (BD), width (BWD), rib shape (BRS), top line (BTL), and hip structure (BHS)], leg structure traits [front legs: legs turned (FLT), buck knees (FBK), pastern posture (FPP), foot size (FFS), and uneven toes (FUT); rear legs: legs turned (RLT), leg posture (RLP), pastern posture (RPP), foot size (RFS), and uneven toes (RUT)], and overall leg action (OLA). Lifetime (LT) and removal parity (RP) were considered as longevity traits whereas lifetime reproductive traits included lifetime total number born (LNB), lifetime number born alive (LBA), number born alive per lifetime day (LBA/LT), and percentage productive days from total herd days (PD%). Genetic parameters were estimated with linear animal models using the average information REML algorithm. Second, to account for censored longevity and lifetime reproduction records, genetic parameters were estimated using Markov Chain Monte Carlo and Gibbs sampling methods. Similar estimates were obtained across the analysis methods. Heritability estimates for growth and compositional traits ranged from 0.50 to 0.70 and for structural soundness traits from 0.07 to 0.31. Longevity and lifetime reproductive trait heritability estimates ranged from 0.14 to 0.17 when REML was used. Unfavorable genetic correlations were obtained for DAYS with LT, RP, LNB, LBA, and PD% and for LRF with PD%. However, LMA was favorably associated with LT, RP, and LNB. Moderate to high correlations were obtained for BL and BRS with all longevity and lifetime reproductive traits. Correlations of BWD with LT and RP were moderate. Associations for leg soundness traits with longevity and lifetime reproductive traits were mainly low and nonsignificant (P ≥ 0.10). However, RLP was moderately correlated with LBA/LT and PD%. Current results indicate that selection for fewer DAYS has an antagonistic effect on lifetime performance. Furthermore, great BL, flat BRS, narrow BWD, and upright RLP seem detrimental to sow longevity and lifetime reproduction.

摘要

本研究的目的是估计生长、组成和结构健全与母猪寿命和终身繁殖的遗传关联。分析中包括了来自 2 个遗传系的 1447 头商业母猪的性能和谱系信息。生长表现为达到 113.5 公斤体重(DAYS)的天数,组成性状包括腰肌肉面积(LMA)、第 10 肋骨背膘(BF10)和最后肋骨背膘(LRF)。结构健全性状包括身体结构性状[长度(BL)、深度(BD)、宽度(BWD)、肋骨形状(BRS)、上线(BTL)和臀部结构(BHS)]、腿部结构性状[前腿:腿部变形(FLT)、弯膝(FBK)、跗关节姿势(FPP)、足大小(FFS)和脚趾不均匀(FUT);后腿:腿部变形(RLT)、腿部姿势(RLP)、跗关节姿势(RPP)、足大小(RFS)和脚趾不均匀(RUT)]和整体腿部动作(OLA)。寿命(LT)和淘汰胎次(RP)被视为寿命性状,而终身繁殖性状包括终身总产仔数(LNB)、终身活产仔数(LBA)、每终身天数的活产仔数(LBA/LT)和总群天数的生产天数百分比(PD%)。使用平均信息 REML 算法的线性动物模型估计遗传参数。其次,为了考虑寿命和终身繁殖记录的截尾,使用马尔可夫链蒙特卡罗和吉布斯抽样方法估计遗传参数。两种分析方法都得到了相似的估计值。生长和组成性状的遗传力估计值在 0.50 到 0.70 之间,结构健全性状的遗传力估计值在 0.07 到 0.31 之间。使用 REML 时,寿命和终身繁殖性状的遗传力估计值在 0.14 到 0.17 之间。DAYS 与 LT、RP、LNB、LBA 和 PD%,以及 LRF 与 PD%之间存在不利的遗传相关性。然而,LMA 与 LT、RP 和 LNB 呈正相关。BL 和 BRS 与所有寿命和终身繁殖性状的相关性均为中度至高度。BWD 与 LT 和 RP 的相关性为中度。腿部健全性状与寿命和终身繁殖性状的相关性主要为低且不显著(P≥0.10)。然而,RLP 与 LBA/LT 和 PD%中度相关。目前的结果表明,选择较少的 DAYS 对终身表现有拮抗作用。此外,较大的 BL、平坦的 BRS、狭窄的 BWD 和直立的 RLP 似乎对母猪的寿命和终身繁殖不利。

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