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首页> 外文期刊>Animal Production Science >Genetic parameters for bodyweight, wool, and disease resistance and reproduction traits in Merino sheep. 4. Genetic relationships between and within wool traits.
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Genetic parameters for bodyweight, wool, and disease resistance and reproduction traits in Merino sheep. 4. Genetic relationships between and within wool traits.

机译:美利奴绵羊体重,羊毛,抗病性和生殖性状的遗传参数。 4.羊毛性状之间和之内的遗传关系。

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The aim of this paper was to describe the genetic relationship among expressions at different ages of seven wool traits: greasy and clean fleece weights, fibre diameter, coefficient of variation of fibre diameter, staple length and strength, and mean fibre curvature. Genetic correlations among measurements at different ages for the same trait were moderate to high, and ranged from ~0.6 for both fleece weights to 0.9 and higher for mean fibre diameter and curvature. Generally, low to moderate genetic correlations (0.3-0.4) were estimated between fleece weights and fibre diameter, clean fleece weight and staple length, and fibre diameter and staple strength. Small positive genetic correlations (0.2) were estimated between greasy and clean fleece weight with fibre diameter coefficient of variation, and between fibre diameter and staple length. Mean fibre curvature had a negative genetic correlation (approximately -0.4) with most other wool traits, the exceptions were staple strength (~0.0) and coefficient of variation of fibre diameter (approximately -0.1). Fibre diameter, staple length and staple strength had negative genetic correlations with coefficient of variation of fibre diameter (-0.15, -0.10, and -0.61, respectively). The results indicate that for most wool traits only one measurement across ages is required to make accurate selection decisions. The relationships between traits are generally moderate to low suggesting that simultaneous genetic improvement is possible.
机译:本文的目的是描述不同年龄的7种羊毛特性的表达之间的遗传关系:油腻和干净的羊毛重量,纤维直径,纤维直径的变异系数,短纤维长度和强度以及平均纤维曲率。同一性状在不同年龄下的测量值之间的遗传相关性为中等至高,从羊毛重量的〜0.6到平均纤维直径和曲率的0.9或更高。通常,估计羊毛重量和纤维直径,清洁羊毛重量和短纤维长度以及纤维直径和短纤维强度之间的中低遗传相关性(0.3-0.4)。估计油脂含量和清洁羊毛重量之间存在小的正遗传相关性(0.2),且纤维直径变异系数之间,纤维直径与短纤维长度之间存在正相关。平均纤维曲率与大多数其他羊毛性状具有负遗传相关性(约-0.4),例外是短纤维强度(〜0.0)和纤维直径的变异系数(约-0.1)。纤维直径,短纤维长度和短纤维强度与纤维直径的变异系数呈负相关(分别为-0.15,-0.10和-0.61)。结果表明,对于大多数羊毛特性,只需要跨年龄进行一次测量即可做出准确的选择决定。性状之间的关系通常为中等到较低,这表明可能同时进行遗传改良。

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