博尔山羊与中部高地山羊的效率相关特征的遗传分析
Zeleke Tesema1, Kefyalew Alemayehu2, Tesfaye Getachew3
1Debre Birhan Agricultural Research Center, Debre Birhan, Ethiopia.
PloS one
|July 10, 2024
概括
识别布尔山羊和中高地山羊的非遗传因素和遗传参数对于提高雪文山羊生产效率至关重要. 选择生长效率特征,即使具有低遗传性,也可以提高这些经济重要山羊的整体产量.
科学领域:
- 动物遗传学动物遗传学
- 量化遗传学 量化遗传学
- 畜牧业生产 畜牧业生产
背景情况:
- 与效率相关的特征对于山羊养殖的经济可行性至关重要.
- 布尔山羊和中高地山羊是生产雪佛兰羊的重要品种.
- 了解遗传和非遗传影响是优化生产的关键.
研究的目的:
- 确定影响博尔山羊和中高地山羊效率特征的显著非遗传因素.
- 估计各种生长和相对生长率特征的遗传参数.
- 评估基因改进切生产效率的潜力.
主要方法:
- 使用WOMBAT程序使用平均信息限制最大概率 (AIRML) 算法.
- 应用动物模型来估计遗传参数.
- 对包括增长效率 (GE1-3) 和相对增长率 (RGR1-3) 在内的特征进行分析的最小二次平均值.
主要成果:
- 非遗传因素,如出生类型,血液水平,性别和开玩笑年份显著影响了效率特征.
- 直接的附加遗传效应解释了GE2,GE3,RGR1和RGR2.2的显著表型变异.
- 母亲遗传影响影响了大多数特征,遗传性从0.09到0.17.不等.
结论:
- 总遗传性表明遗传进展缓慢,但选择仍然可以提高效率.
- 为增加产量,建议将重点放在增长效率上,直到营销年龄 (GE2) 达到.
- 对于这些经济重要特征的选择是可行的,并且有利于羊生产.
更多相关视频
07:46Author Spotlight: Improving Beef Cattle Nutrition and Production with a Focus on Feed Efficiency and Meat Quality Traits Through Advanced Biochemical and Molecular Assays
Published on: July 12, 2024
506
08:29Measuring Liver Mitochondrial Oxygen Consumption and Proton Leak Kinetics to Estimate Mitochondrial Respiration in Holstein Dairy Cattle
Published on: November 30, 2018
11.3K
相关概念视频
Incomplete Dominance
22.5K
Gregor Mendel's work (1822 - 1884) was primarily focused on pea plants. Through his initial experiments, he determined that every gene in a diploid cell has two variants called alleles inherited from each parent. He suggested that amongst these two alleles, one allele is dominant in character and the other recessive. The combination of alleles determines the phenotype of a gene in an organism.
22.5K
Gene Evolution - Fast or Slow?
7.1K
The genomes of eukaryotes are punctuated by long stretches of sequence which do not code for proteins or RNAs. Although some of these regions do contain crucial regulatory sequences, the vast majority of this DNA serves no known function. Typically, these regions of the genome are the ones in which the fastest change, in evolutionary terms, is observed, because there is typically little to no selection pressure acting on these regions to preserve their sequences.
In contrast, regions which code...
In contrast, regions which code...
7.1K
Epistasis Analysis
5.0K
Although Mendel chose seven unrelated traits in peas to study gene segregation, most traits involve multiple gene interactions that create a spectrum of phenotypes. When the interaction of various genes or alleles at different locations influences a phenotype, this is called epistasis. Epistasis often involves one gene masking or interfering with the expression of another (antagonistic epistasis). Epistasis often occurs when different genes are part of the same biochemical pathway. The...
5.0K
Trihybrid Crosses
23.2K
Trihybrid Crosses
Some of Mendel’s crosses examined three pairs of contrasting characteristics. Such a cross is called a trihybrid cross. A trihybrid cross is a combination of three individual monohybrid crosses. For example, plant height (tall vs. short), seed shape (round vs. wrinkled), and seed color (yellow vs. green).
The F1 generation plants of a trihybrid cross are heterozygous for all three traits and produce eight gametes. Upon self-fertilization, these gametes have an equal...
Some of Mendel’s crosses examined three pairs of contrasting characteristics. Such a cross is called a trihybrid cross. A trihybrid cross is a combination of three individual monohybrid crosses. For example, plant height (tall vs. short), seed shape (round vs. wrinkled), and seed color (yellow vs. green).
The F1 generation plants of a trihybrid cross are heterozygous for all three traits and produce eight gametes. Upon self-fertilization, these gametes have an equal...
23.2K
Dihybrid Crosses
74.7K
Overview
74.7K
Monohybrid Crosses
230.0K
Overview
230.0K
