An Zongqi, Ana C Marshall, J M D R Jayawardana, Mike Weeks, Simon M Loveday, Warren McNabb, Nicolas Lopez-Villalobos
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引用次数: 0
摘要
本研究的目的是估算绵羊奶中柠檬酸含量(CA)和乳酸含量(LA)的遗传参数,并确定新西兰奶羊群中相关的候选基因。研究使用了 165 只母羊的记录。基于血统记录的 CA 和 LA 遗传率估计值分别为 0.65 和 0.33。CA 和 LA 之间的遗传和表型相关性为强-中等负相关。CA 和 LA 的基因组遗传率估计值也很高(0.85、0.51),CA 和 LA 之间的基因组相关性为强负相关(-0.96 ± 0.11)。在 Bonferroni 水平上没有发现明显的相关性。然而,C1QTNF1(第 11 号染色体)中的一个基因内 SNP 与 CA 相关,达到了染色体显著性阈值。另一个与 CA 相关的 SNP 位于基因间(第 15 号染色体)。就 LA 而言,最显著的 SNP 位于 CYTH1(11 号染色体)的基因内,另外两个 SNP 位于 MGAT5B 和 TIMP2(11 号染色体)的基因内,还有四个 SNP 位于基因间(1 号和 24 号染色体)。候选基因的功能表明,CA 和 LA 有可能被用作能量平衡和临床乳腺炎的生物标志物。建议进一步研究以验证本研究结果。
Genome-wide association studies for citric and lactic acids in dairy sheep milk in a New Zealand flock.
The objectives of this study were to estimate genetic parameters for citric acid content (CA) and lactic acid content (LA) in sheep milk and to identify the associated candidate genes in a New Zealand dairy sheep flock. Records from 165 ewes were used. Heritability estimates based on pedigree records for CA and LA were 0.65 and 0.33, respectively. The genetic and phenotypic correlations between CA and LA were strong-moderate and negative. Estimates of genomic heritability for CA and LA were also high (0.85, 0.51) and the genomic correlation between CA and LA was strongly negative (-0.96 ± 0.11). No significant associations were found at the Bonferroni level. However, one intragenic SNP in C1QTNF1 (chromosome 11) was associated with CA, at the chromosomal significance threshold. Another SNP associated with CA was intergenic (chromosome 15). For LA, the most notable SNP was intragenic in CYTH1 (chromosome 11), the other two SNPs were intragenic in MGAT5B and TIMP2 (chromosome 11), and four SNPs were intergenic (chromosomes 1 and 24). The functions of candidate genes indicate that CA and LA could potentially be used as biomarkers for energy balance and clinical mastitis. Further research is recommended to validate the present results.
期刊介绍:
Biotechnology can be defined as any technique that uses living organisms (or parts of organisms like cells, genes, proteins) to make or modify products, to improve plants, animals or microorganisms for a specific use. Animal Biotechnology publishes research on the identification and manipulation of genes and their products, stressing applications in domesticated animals. The journal publishes full-length articles and short research communications, as well as comprehensive reviews. The journal also provides a forum for regulatory or scientific issues related to cell and molecular biology applied to animal biotechnology.
Submissions on the following topics are particularly welcome:
- Applied microbiology, immunogenetics and antibiotic resistance
- Genome engineering and animal models
- Comparative genomics
- Gene editing and CRISPRs
- Reproductive biotechnologies
- Synthetic biology and design of new genomes