首页> 外文期刊>Journal of dairy science >Genetic basis and risk factors for infectious and noninfectious diseases in US Holsteins. I. Estimation of genetic parameters for single diseases and general health
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Genetic basis and risk factors for infectious and noninfectious diseases in US Holsteins. I. Estimation of genetic parameters for single diseases and general health

机译:美国荷斯坦牛传染性和非传染性疾病的遗传基础和危险因素。 I.估计单一疾病和一般健康的遗传参数

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Health data collected from 1996 to 1999 from 177 herds in Minnesota and Wisconsin were analyzed to establish genetic basis for infectious and noninfectious diseases. Three types of health traits were targeted. First, available infectious conditions were used to identify animals that are superior in their general immunity (including innate immunity) for infectious diseases. Generalized immunity may be thought of as a combination of immune responses to a variety of immune system challenges. Second, single infectious and noninfectious diseases were analyzed separately. Third, infectious reproductive diseases as one category of related conditions, and cystic ovary disease as one category of 3 related noninfectious ovary disorders were studied.Data were analyzed using a threshold model that included herd, calving year, season of calving, and parity as cross-classified fixed factors; and sire and cow within sires as random effects. Days at risk and days in milk at the beginning of a record were included by fitting the days as continuous covariates in the model. A heritability value of 0.202 +/- 0.083 was estimated for generalized immunity. Heritability values of 0.141 and 0.161 were estimated for uterine infection and mastitis, respectively. Heritability of single noninfectious disorders ranged from 0.087 to 0.349. The amount of additive genetic variance recovered in the underlying scale of noninfectious disorders tended to zero when combining multiple conditions. The study supports combining infectious diseases into categories of interest but we do not recommend the same approach for noninfectious disorders.
机译:分析了1996年至1999年在明尼苏达州和威斯康星州的177个牧群的健康数据,为传染病和非传染病建立了遗传基础。针对三种类型的健康特征。首先,利用现有的传染病条件来鉴定对传染病具有一般免疫力(包括先天免疫力)优异的动物。广义免疫可被认为是对各种免疫系统挑战的免疫反应的组合。其次,分别分析了单一传染病和非传染病。第三,以传染病生殖疾病为一类相关疾病,以囊性卵巢疾病为一类3种非传染性卵巢疾病中的一类,采用阈值模型分析数据,包括牛群,产犊年,产犊季节和均等作为交叉。分类的固定因素;并在父本中将父本和母牛作为随机效应。通过将天数作为模型中的连续协变量进行拟合,可以包括风险天数和记录开始时的牛奶天数。对于广义免疫,遗传度值估计为0.202 +/- 0.083。估计子宫感染和乳腺炎的遗传值分别为0.141和0.161。单个非感染性疾病的遗传力范围为0.087至0.349。当组合多个条件时,在非传染性疾病的潜在规模中恢复的加成遗传方差量趋于零。该研究支持将感染性疾病归类为感兴趣的类别,但我们不建议对非感染性疾病采用相同的方法。

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