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Calculation of breed direct and maternal genetic fractions and breed specific direct and maternal heterozygosity for crossbreeding data

机译:计算品种直接和母系遗传分数,并为杂交育种数据培育特定的直接和母系杂合性

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摘要

Teaching, research, and herd breeding applications may require calculation of breed additive contributions for direct and maternal genetic effects and fractions of heterozygosity associated with breed specific direct and maternal heterosis effects. These coefficients can be obtained from the first NB rows of a pseudo numerator relationship matrix where the first NB rows represent fractional contributions by breed to each animal or group representing a specific breed cross. The table begins with an NB x NB identity matrix representing pure breeds. Initial animals or representative crosses must be purebreds or two-breed crosses. Parents of initial purebreds are represented by the corresponding column and initial two-breed cross progeny by the two corresponding columns of the identity matrix. After that, usual rules are used to calculate the NB column entries corresponding to breeds for each animal. The NB entries are fractions of genes expected to be contributed by each of the pure breeds and correspond to the breed additive direct fractions. Entries in the column corresponding to the dam represent breed additive maternal fractions. Breed specific direct heterozygosity coefficients are entries of an NB x NB matrix formed by the outer product of the two NB by 1 columns associated with sire and dam of the animal. One minus sum of the diagonals represents total direct heterozygosity. Similarly, the NB x NB matrix formed by the outer product of columns associated with sire of dam and dam of dam contains breed specific maternal heterozygosity coefficients. These steps can be programmed to create covariates to merge with data. If X represents these coefficients for all unique breed crosses, then the reduced row echelon form function of MATLAB or SAS can be used on X to determine estimable functions of additive breed direct and maternal effects and breed specific direct and maternal heterosis effects.
机译:教学,研究和畜群育种应用可能需要计算直接和母体遗传效应以及与品种特有的直接和母体杂种优势相关的杂合度分数的种加性贡献。这些系数可以从伪分子关系矩阵的前NB行获得,其中前NB行代表按品种对代表特定杂交品种的每只动物或组的分数贡献。该表以代表纯种的NB x NB身份矩阵开头。最初的动物或有代表性的杂交必须是纯种或两种杂交。初始纯种的亲本由单位矩阵的两个对应列表示,初始两个品种的杂交后代由单位矩阵的两个对应列表示。之后,使用常规规则来计算与每只动物的品种相对应的NB列条目。 NB条目是预期由每个纯品种贡献的基因的分数,并且对应于品种加性直接分数。对应于水坝的栏中的条目代表品种加性母体部分。品种特定的直接杂合系数是由两个NB乘以1列与动物的父亲和母亲相关的NB乘以NB组成的NB x NB矩阵的条目。对角线的一减总和表示总的直接杂合性。类似地,由与坝母和坝母相关的柱的外积形成的NB x NB矩阵包含特定品种的母体杂合性系数。可以对这些步骤进行编程以创建要与数据合并的协变量。如果X代表所有唯一品种杂交的这些系数,则可以在X上使用MATLAB或SAS的简化行梯形形式函数来确定累加品种直接和母体效应以及特定品种直接和母体杂种效应的可估计函数。

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  • 作者

    Van Vleck, L. Dale;

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  • 年度 1997
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