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Opinion paper: Measuring livestock robustness and resilience: are we on the right track?观点论文:衡量家畜的强健性和恢复力:我们是否走在正确的道路上?
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J Dairy Sci. 2019 Sep;102(9):7904-7916. doi: 10.3168/jds.2018-15792. Epub 2019 Jul 10.
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Review: extended lactation in dairy cattle.综述:奶牛的延长哺乳期。
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Positive relationships between body weight of dairy heifers and their first-lactation and accumulated three-parity lactation production.荷斯坦奶牛干奶牛体重与其第一泌乳期和累计三胎泌乳期产奶量的正相关关系。
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Associations between age at first calving and subsequent lactation performance in UK Holstein and Holstein-Friesian dairy cows.初产年龄与英国荷斯坦和荷斯坦弗里斯奶牛后续泌乳性能的关系。
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9
Impact of longevity on greenhouse gas emissions and profitability of individual dairy cows analysed with different system boundaries.采用不同系统边界分析长寿对温室气体排放和个体奶牛盈利能力的影响。
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Pseudopregnancy and aseasonal breeding in dairy goats: genetic basis of fertility and impact on lifetime productivity.假妊娠和非季节性繁殖在奶牛山羊中:生育的遗传基础及其对终生生产力的影响。
Animal. 2018 Sep;12(9):1799-1806. doi: 10.1017/S1751731117003056. Epub 2017 Dec 1.

山羊终生生产性能性状的遗传分析

Genetic analysis of lifetime productivity traits in goats.

作者信息

Wolber Marie-Rosa, Hamann Henning, Herold Pera

机构信息

Institute of Agricultural Sciences in the Tropics, University of Hohenheim, Garbenstr. 17, 70599 Stuttgart, Germany.

State Agency for Spatial Information and Rural Development Baden-Württemberg, Stuttgarter Str. 161, 70806 Kornwestheim, Germany.

出版信息

Arch Anim Breed. 2021 Jul 6;64(2):293-304. doi: 10.5194/aab-64-293-2021. eCollection 2021.

DOI:10.5194/aab-64-293-2021
PMID:34286065
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8283518/
Abstract

As part of the development of a breeding programme for dairy goats to support sustainable production in organic farming, the overall aim of the present study was to identify traits that can be used as selection criteria for lifetime productivity. The breeding goal is high lifetime productivity with a good milk composition and a good level of robustness in the animals, especially within grazing systems. The lifetime productivity traits analysed in this study were the length of the animal's productive life (LPL), the lifetime efficiency (LEF), and the animal's milk yield efficiency with respect the total number of lactating days (EDM); the average fat and protein content over the animal's lifetime, the fat-to-protein ratio (FPR), and the urea content (UC) were also included as indirect health traits and potential indicators of robustness in dairy goats. The traits' influencing factors, phenotypic and genetic correlations, and heritability were examined. Furthermore, factors influencing milk yield in the first 120 d of lactation during the animal's first lactation were analysed. The aim of investigating milk yield during the first lactation was to consider a connection between early performance recoding in the life of an animal and LPL, LEF, and EDM. In total, lactation and pedigree data from 9192 dairy goats of the common German Fawn (GF) and German White (GW) dairy breeds were used. Prerequisites were that the investigated birth cohorts had to have definitively completed their lifetime production, and a high proportion of goats had to have completed extended lactation. The data analysis showed that breed did not influence milk yield. The age at first kidding, the average number of kids born during the animal's lifetime, and the lactation length did influence the milk yield. This applies to the milk yield during the first 120 d of the first lactation as well as over the lifetime of an animal. Considering the influencing factors, the results showed that LPL was genetically and positively correlated with LEF and EDM ( and respectively). The heritability of LPL, LEF, and EDM was , , and respectively. Regarding the lifetime milk composition, the heritability of protein and fat content, FPR, and UC was , , , and respectively. The heritability regarding the milk yield during the first 120 d of the first lactation was . We found that the milk yield during the first 120 d of the first lactation showed a genetic correlation with LPL, LEF, and EDM of , , and respectively. In summary, LPL, LEF, and EDM are suitable traits to indicate lifetime productivity in dairy goats. An additional indicator for lifetime productivity could be the milk yield during the first 120 d of the first lactation. Moreover, FPR and UC appear to be promising indicator traits for the health and robustness of dairy goats. The present study showed the importance of considering extended lactation in selective breeding programmes as well as the importance of modelling extended lactation in the breeding value estimation.

摘要

作为奶山羊育种计划发展的一部分,以支持有机农业的可持续生产,本研究的总体目标是确定可作为终身生产力选择标准的性状。育种目标是实现高终身生产力,同时具备良好的乳成分以及动物良好的强健水平,特别是在放牧系统中。本研究分析的终身生产力性状包括动物的生产寿命长度(LPL)、终身效率(LEF)以及相对于泌乳总天数的动物产奶效率(EDM);动物终身的平均脂肪和蛋白质含量、脂肪与蛋白质比率(FPR)以及尿素含量(UC)也作为间接健康性状和奶山羊强健性的潜在指标被纳入。研究了这些性状的影响因素、表型和遗传相关性以及遗传力。此外,还分析了动物首次泌乳期间前120天产奶量的影响因素。研究首次泌乳期间产奶量的目的是考虑动物生命早期性能记录与LPL、LEF和EDM之间的联系。总共使用了来自德国普通小鹿(GF)和德国白(GW)奶山羊品种的9192只奶山羊的泌乳和系谱数据。前提条件是所调查的出生队列必须已明确完成其终身生产,并且有很大比例的山羊必须完成延长泌乳期。数据分析表明品种不影响产奶量。初产年龄、动物终身所产羔羊的平均数量以及泌乳长度确实会影响产奶量。这适用于首次泌乳前120天的产奶量以及动物的终身产奶量。考虑到影响因素,结果表明LPL与LEF和EDM在遗传上呈正相关(分别为 和 )。LPL、LEF和EDM的遗传力分别为 、 和 。关于终身乳成分,蛋白质和脂肪含量、FPR和UC的遗传力分别为 、 、 和 。首次泌乳前120天产奶量的遗传力为 。我们发现首次泌乳前120天的产奶量与LPL、LEF和EDM的遗传相关性分别为 、 和 。总之,LPL、LEF和EDM是表明奶山羊终身生产力的合适性状。首次泌乳前120天的产奶量可能是终身生产力的另一个指标。此外,FPR和UC似乎是奶山羊健康和强健性的有前景的指标性状。本研究表明在选择性育种计划中考虑延长泌乳期的重要性以及在育种值估计中对延长泌乳期进行建模的重要性。