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首页> 外文期刊>Journal of dairy science >Genetic analysis of rennet coagulation time, curd-firming rate, and curd firmness assessed over an extended testing period using mechanical and near-infrared instruments
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Genetic analysis of rennet coagulation time, curd-firming rate, and curd firmness assessed over an extended testing period using mechanical and near-infrared instruments

机译:使用机械和近红外仪器在延长的测试期内评估凝乳酶凝结时间,凝乳凝固率和凝乳硬度的遗传分析

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摘要

The aims of this study were (1) to analyze rennet coagulation time (RCT), curd-firming rate, and curd firmness obtained by extending the standard 30-min testing time to 45 min; (2) to estimate heritabilities of the aforementioned traits determined by mechanical (Formagraph; Foss Electric, HillerΦd, Denmark) and near-infrared optical (Optigraph; Ysebaert, Frepillon, France) instruments, and to assess the statistical relevance of their genetic background by using the Bayes factor procedure, the deviance information criterion, and the mean squared error; (3) to estimate phenotypic and genetic relationships between instruments within trait and between traits within instrument; and (4) to obtain correlations for sire rankings based on the used instruments. Individual milk samples were collected from 913 Brown Swiss cows reared in 63 herds located in Trento Province (Italy). Milk coagulation properties (MCP) were measured using 2 different instruments: Formagraph and Optigraph. Both instruments were housed in the same laboratory and operated by the same technician. Each sample was analyzed simultaneously on each instrument. All experimental conditions (milk temperature and the concentration and type of rennet) were identical. For the analysis, univariate and bivariate animal models were implemented using Bayesian methods. Univariate analyses were conducted to test the hypothesis that the traits showed additive genetic determination. Deviance information criterion, Bayes factor, and mean squared error were used as model choice criteria. The main results were that (1) RCT could be measured on all samples by extending the observation time to 45 min, and its genetic parameters (h~2 = 0.23) and breeding values could be estimated while avoiding the bias of noncoagulating samples; (2) curd-firming rate could be measured on almost all milk samples, and its genetic parameters could be estimated for the first time on a field data set (h~2 = 0.21); (3) for the first time, genetic parameters of curd firmness 45 min after rennet addition (h~2 = 0.12) were estimated, and they were compared with curd firmness 30 min after rennet addition (h~2 = 0.17); and (4) MCP estimated using the Optigraph appeared to be genetically different from those determined by Formagraph, with the partial exception of RCT (genetic correlation = 0.97). Breeding strategies for the improvement of MCP must be planned with caution. Currently, the high throughput, ease of use, and reduced costs of analysis make predictions obtained from mid-infrared spectroscopy (MIRS) on untreated milk samples a promising alternative to produce relevant data at the population level. The use of mechanical lactodynamographs to establish reference data for MIRS calibrations have been already studied, whereas the use of near-infrared optical lactodynamographs as a reference method for MIRS calibrations needs to be investigated.
机译:这项研究的目的是(1)分析将标准的30分钟测试时间延长至45分钟而获得的凝乳酶凝结时间(RCT),凝乳率和凝乳硬度; (2)估计通过机械仪器(Formagraph; Foss Electric,HillerΦd,Denmark)和近红外光学仪器(Optigraph; Ysebaert,Frepillon,France)确定的上述性状的遗传力,并通过以下方法评估其遗传背景的统计相关性使用贝叶斯因子程序,偏差信息准则和均方误差; (3)估计性状内的工具之间以及工具内的性状之间的表型和遗传关系; (4)根据所使用的工具获得父级排名的相关性。从位于特伦托省(意大利)的63个牛群中饲养的913头棕色瑞士奶牛收集了单独的牛奶样品。乳凝特性(MCP)使用两种不同的仪器进行测量:Formagraph和Optigraph。两种仪器都放在同一实验室中,并由同一技术人员操作。在每个仪器上同时分析每个样品。所有实验条件(牛奶温度以及凝乳酶的浓度和类型)均相同。为了进行分析,使用贝叶斯方法实现了单变量和双变量动物模型。进行单变量分析以检验该性状显示出附加遗传决定的假设。偏差信息标准,贝叶斯因子和均方误差用作模型选择标准。主要结果是:(1)通过将观察时间延长至45min,可以对所有样品进行RCT测量,并在避免非凝结样品偏差的情况下,估计其遗传参数(h〜2 = 0.23)和育种值; (2)几乎所有牛奶样品都可以测定凝乳确认率,并且可以通过现场数据集首次估计其遗传参数(h〜2 = 0.21); (3)首次估算加入凝乳酶后45分钟的凝乳硬度的遗传参数(h〜2 = 0.12),并与加入凝乳酶后30分钟的凝乳硬度的遗传参数(h〜2 = 0.17)进行比较; (4)使用Optigraph估算的MCP在遗传上似乎与通过Formmagraph确定的MCP有所不同,但有一部分是RCT(遗传相关性= 0.97)。必须谨慎规划改善MCP的育种策略。当前,高通量,易用性和降低的分析成本使得通过中红外光谱(MIRS)对未经处理的牛奶样品进行的预测成为在人口水平上产生相关数据的有希望的替代方法。已经研究了使用机械乳腺测功机建立MIRS校准的参考数据,而需要研究使用近红外光学乳腺测功机作为MIRS校准的参考方法。

著录项

  • 来源
    《Journal of dairy science》 |2013年第1期|50-62|共13页
  • 作者单位

    Department of Agronomy, Food, Natural resources, Animals and Environment (DAFNAE), University of Padova, Viale dell'Universita 16,35020 Legnaro, Italy;

    Department of Agronomy, Food, Natural resources, Animals and Environment (DAFNAE), University of Padova, Viale dell'Universita 16,35020 Legnaro, Italy;

    Departament de Ciencia Animal i dels Aliments, Universitat Autdnoma de Barcelona, 08193 Bellaterra, Spain;

    Department of Agronomy, Food, Natural resources, Animals and Environment (DAFNAE), University of Padova, Viale dell'Universita 16,35020 Legnaro, Italy;

    Italian Brown Swiss Cattle Breeders Association, Loc. Ferlina 204, 37012 Bussolengo, Italy;

    Department of Agronomy, Food, Natural resources, Animals and Environment (DAFNAE), University of Padova, Viale dell'Universita 16,35020 Legnaro, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    milk coagulation property; mechanical and optical lactodynamograph; heritability; bayes factor;

    机译:乳凝性;机械和光学泌乳机遗传力贝叶斯因子;

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