Genomic regions associated with coat color in Gir cattle.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-04-05 DOI:10.1139/gen-2023-0115
Silel Vinicius Simões Andrade Maciel, Ingrid Pereira Pinto Oliveira, B. B. Senes, J. A. V. Vasconcelos Silva, Fabieli Loise Braga Feitosa, J. S. Alves, Raphael Bermal Costa, Gregorio Camargo
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Abstract

Indicine cattle breeds are adapted to the tropical climate and their coat plays an important role in this process. Coat color influences thermoregulation and the adhesion of ectoparasites and may be associated with productive and reproductive traits. Furthermore, coat color is used for breed qualification, with breeders preferring certain colors. The Gir cattle is characterized by a wide variety of coat colors. Therefore, we performed genome-wide association studies in order to identify candidate genes for coat color in Gir cattle. Different phenotype scenarios were considered in the analyses and regions were identified on eight chromosomes. Some regions and many candidate genes are influencing coat color in the Gir cattle, which was found to be a polygenic trait. The candidate genes identified have been associated with white spotting patterns and base coat color in cattle and other species. In addition, a possible epistatic effect on coat color determination in the Gir cattle was suggested. This is the first published study that identified genomic regions and listed candidate genes associated with coat color in Gir cattle. The findings provided a better understanding of the genetic architecture of the trait in the breed and will allow to guide future fine-mapping studies for the development of genetic markers for selection.
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与吉尔牛毛色相关的基因组区域。
印地安牛适应热带气候,其被毛在这一过程中发挥着重要作用。被毛颜色影响体温调节和体外寄生虫的附着,并可能与生产和繁殖特性有关。此外,毛色还可用于品种鉴定,饲养者会偏好某些颜色。吉尔牛的特点是被毛颜色多种多样。因此,我们进行了全基因组关联研究,以确定吉尔牛毛色的候选基因。分析中考虑了不同的表型情况,并确定了 8 条染色体上的区域。研究发现,一些区域和许多候选基因会影响吉尔牛的毛色,而毛色是一个多基因性状。已确定的候选基因与牛和其他物种的白斑模式和基础被毛颜色有关。此外,研究还提出了吉尔牛毛色决定过程中可能存在的表观效应。这是首次公开发表的研究,确定了与吉尔牛毛色相关的基因组区域并列出了候选基因。研究结果使人们更好地了解了该品种的遗传结构,并将指导未来的精细图谱研究,以开发用于选择的遗传标记。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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