采用参与式和生物经济建模方法的中部高原山羊育种目标。

IF 1.9 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Journal of Animal Breeding and Genetics Pub Date : 2023-08-22 DOI:10.1111/jbg.12821
Zeleke Tesema, Belay Derbie, Abiy Shenkute, Mulatu Gobeze, Alemu Kefale, Solomon Gizaw
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引用次数: 0

摘要

通过参与式比例堆法和生物经济模型,确定了低投入生产体系下中部高原山羊养殖的繁殖目标。此外,还推导了各育种目标性状的经济价值和相对经济价值。采用参与式比例堆垛法估算农民对所识别的山羊性状的相对权重,并采用广义多项logit模型分析对相对权重进行统计评估。采用生物经济模型计算鉴定性状的经济价值。体型、被毛颜色、断奶后生长率和断奶率是农民择优选择的重要性状,相对体重(比值比)分别为1.58、1.38、1.37和1.13。深红色后是浅红色的山羊最受欢迎(p -1 year-1)。因此,根据经济基础方法选择中部高原山羊最重要的性状是断奶后增重、断奶率和体重(6个月重)。此外,毛色是山羊饲养员仅次于体型的第二大首选特征。因此,除了经济上重要的数量性状外,还应将这一美学性状纳入设计的育种方案中。参与式比例堆垛法与生物经济模型相结合,可以更好地了解农户的性状偏好,提高农户的盈利能力。本研究估算的性状经济价值可用于构建中部高原山羊的选择指标。
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Breeding objectives for Central Highland goats using participatory and bio-economic modelling approaches

The breeding objectives of Central Highland goats rearing under a low-input production system were defined through a participatory proportional piling method and bio-economic model. Additionally, the economic values and relative economic value of the breeding objective traits were derived. A participatory proportional piling method was used to estimate the relative weights of farmers attached to a list of goat traits identified, and the relative weights were statistically evaluated using a generalized multinomial logit model analysis. A bio-economic model was used to compute the economic values of the identified traits. The most important traits for selection of does according to farmer's preference were body size, coat colour, post-weaning growth rate and weaning rate with a relative weight (odds ratio) of 1.58, 1.38, 1.37 and 1.13, respectively. Goats with dark red followed by light red coat colour were the most preferred (p < 0.001) by goat keepers compared with white-coloured goats. Farmers were more likely (p < 0.001) to allocate higher scores for does-bearing twins than for single and triplet-bearing does. Using the bio-economic model (economic value and relative economic value), post-weaning growth rate, weaning rate, and six-month weight (body size) were identified as the most important traits and if the mean of these traits is changed by one genetic standard deviation, the change in profit will range from 2.06 to 3.03 $ doe−1 year−1. Therefore, the most important traits for the selection of Central Highland goats according to the economic-based method were post-weaning weight gain, weaning rate and body size (six-month weight). Besides, coat colour was the second preferred trait by goat keepers next to body size. Thus, this aesthetical trait should be included in the designed breeding programme besides economically important quantitative traits. The combination of the participatory proportional piling method and bio-economic model would give better insights to explore the trait preferences of farmers and enhance profitability. The economic values of traits estimated in this study can be used for the construction of selection indices for Central Highland goats.

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来源期刊
Journal of Animal Breeding and Genetics
Journal of Animal Breeding and Genetics 农林科学-奶制品与动物科学
CiteScore
5.20
自引率
3.80%
发文量
58
审稿时长
12-24 weeks
期刊介绍: The Journal of Animal Breeding and Genetics publishes original articles by international scientists on genomic selection, and any other topic related to breeding programmes, selection, quantitative genetic, genomics, diversity and evolution of domestic animals. Researchers, teachers, and the animal breeding industry will find the reports of interest. Book reviews appear in many issues.
期刊最新文献
Issue Information Influence of variance component estimates on genomic predictions for growth and reproductive-related traits in Nellore cattle. Genomic selection strategies for the German Merino sheep breeding programme - A simulation study. Correction to: Rahbar et al., 2023. Defining desired genetic gains for Pacific white shrimp (Litopeneaus vannamei) breeding objectives using participatory approaches. Journal of Animal Breeding and Genetics. 2024;141:390-402. Combining genomics and semen microbiome increases the accuracy of predicting bull prolificacy.
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