Khalil Mohamed H, Elattar Eman A, El-Seedy Ayman S, Shebl Mostafa K
Department of Poultry Production, Faculty of Agriculture (El-Shatby), Alexandria University, Alexandria, Egypt.
Laboratory of Cellular and Molecular Genetics, Department of Genetics, Faculty of Agriculture (El-Shatby), Alexandria University, Alexandria, Egypt.
Vet World. 2024 Jul;17(7):1482-1489. doi: 10.14202/vetworld.2024.1482-1489. Epub 2024 Jul 10.
There is a limited amount of research conducted on quail breeding domestically and internationally, particularly at the molecular level. This study aimed to detect single-nucleotide polymorphisms in the growth hormone (GH) and insulin-like growth factor-1 (IGF-1) genes across two quail varieties and their hybrids correlate these genetic factors with body weight (BW) and growth rate at 0 and 6 weeks, and assess crossing effects.
White and Japanese quail were crossed. Simultaneously producing pure varieties and crosses (genotypes) was achieved through this breeding strategy. Fifty females from each genotype were randomly selected for blood sampling. Genomic DNA was extracted and amplified from the blood using the DNeasy blood kit (Qiagen, Germany). Nucleotide polymorphism between quail genotypes was determined through DNA sequencing.
Two types of alleles (A and B) for the GH gene in quails showed significant genotypic differences (AA, BB, and AB). The quail carried a mutated IGF-1 gene. For growth traits, substantial positive heterosis was detected.
The genotype AA had the highest BW and weight gain. The white variety can act as a sire, and both white and Japanese varieties can function as dams to improve growth traits. The growth characteristics of the hybrids surpassed those of the original varieties.
国内外对鹌鹑育种的研究有限,尤其是在分子水平上。本研究旨在检测两个鹌鹑品种及其杂种中生长激素(GH)和胰岛素样生长因子-1(IGF-1)基因的单核苷酸多态性,将这些遗传因素与0周龄和6周龄时的体重(BW)及生长速率相关联,并评估杂交效应。
白鹌鹑和日本鹌鹑进行杂交。通过这种育种策略同时获得纯种和杂交种(基因型)。从每个基因型中随机选取50只雌性进行采血。使用德国Qiagen公司的DNeasy血液试剂盒从血液中提取并扩增基因组DNA。通过DNA测序确定鹌鹑基因型之间的核苷酸多态性。
鹌鹑GH基因的两种等位基因类型(A和B)表现出显著的基因型差异(AA、BB和AB)。鹌鹑携带一个突变的IGF-1基因。对于生长性状,检测到显著的正向杂种优势。
基因型AA的体重和体重增加最高。白色品种可作为父本,白色和日本品种均可作为母本以改善生长性状。杂种的生长特性超过了原始品种。