畜牧与饲料科学 ›› 2017, Vol. 38 ›› Issue (1): 24-24.doi: 10.12160/j.issn.1672-5190.2017.01.008

• 遗传与繁育 • 上一篇    下一篇

超细型绒山羊育种核心群主要表型性状相关性分析

刘斌[1];吴铁成[1];何云梅[2];高娃[1];勿都巴拉[1];马跃军[1];赵存发[1];李玉荣[1]   

  1. [1]内蒙古自治区农牧业科学院,内蒙古呼和浩特010031 [2]内蒙古鄂尔多斯市鄂托克旗家畜改良工作站,内蒙古鄂托克旗016100
  • 出版日期:2017-01-20 发布日期:2017-01-20
  • 通讯作者: 刘斌
  • 作者简介:刘斌(1979-),男,副研究员,博士,主要从事绒毛用羊分子数量遗传育种研究工作。 通讯作者:赵存发(1952-),男,研究员,主要研究方向为绒山羊遗传育种。 李玉荣(1962-),女,研究员,博士,主要研究方向为绒山羊遗传育种.
  • 基金资助:
    国家公益性行业(农业)科研专项(201303059);内蒙古农牧业创新基金项目(2013CXJJM03);内蒙古自治区科技重大专项:内蒙古自治区科技创新引导项目.

Analysis of Correlation between Main Phenotypic Traits of Superfine-type Cashmere Goats in Core Breeding Population

LIU Bin1, WU Tie-eheng1, HE Yun-mei2, Gaowa1, Wudubala1, MA Yue-jun1, ZHAO Cun-fa1, LI Yu-rong1( 1.Inner Mongolia Academy of Agricultural and Animal Husbandry Sciences,Hohhot 010031, China;2.Livestock Improvement Working Station of Otog Banner of Ordos City of Inner Mongolia, Otog Banner 016100, China)   

  • Online:2017-01-20 Published:2017-01-20

摘要: 以内蒙古白绒山羊种羊场、阿拉善白绒山羊种羊场和阿拉善右旗白绒山羊育种基地3个超细育种核心群379只2岁母羊为研究对象,对主要表型性状(体尺性状和绒毛性状)进行分析。结果表明,3个育种核心群间体尺和绒毛性状间存在一定的差异性,平均绒细度均在13.99μm以下,绒伸直长度之间差异均显著(P〈0.05),且阿拉善右旗绒山羊育种基地(7.90 cm)〉内蒙古白绒山羊种羊场(7.53 cm)〉阿拉善白绒山羊种羊场(6.59 cm);绒细度和绒伸直长度呈显著负相关(P〈0.05),绒厚度与绒伸直长度、绒产量呈极显著正相关(P〈0.01),抓绒后体重与体长、胸围呈极显著正相关(P〈0.01);绒山羊各性状对产绒量的回归方程为Y_1=44.99+43.26X_2+2.80X_6,各性状对抓绒后体重的回归方程为Y_2=5.48+0.19X_5+0.09X_6。

Abstract: A total of 379 2-year-old ewes from 3 core breeding populations of superfine-type cashmere goats in Inner Mongolia were included in this study to assess the correlation between their main phenotypic traits (body size and fiber traits). The results showed that there were differences between body size and fiber traits in 3 core breeding populations. The average fibre diameter of each population was all less than 13.99 pLm. There were significant differences in fibre length between 3 core breeding populations (P〈0.05) :Alxa Right Banner Cashmere Goat Breeding Base (7.90 cm) 〉 Inner Mongolia Cashmere Goat Breeding Farm (7.53 cm)〉 Alxa White Cashmere Coat Breeding Farm (6.59 cm). The fibre diameter was significantly and negatively correlated with fibre length (P〈0.05), the cashmere thickness was significantly and positively correlated with fibre length and raw cashmere weight (P〈0.01), and live body weight after rawing cashmere was significantly and positively correlated with body length and chest circumference (P〈0.01). The regression equation of phenotypie traits to raw cashmere weight was Y1=44.99+43.26X2+ 2.80X6, and the regression equation of phenotypie traits to live body weight after tawing cashmere was Y2=5.48+0.19Xs+0.09X6.

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