A 3-bp deletion in the SLC45A2 gene is associated with loss of fleece pigmentation in black-fleeced Suffolk sheep.

IF 1.8 3区 生物学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal genetics Pub Date : 2025-02-01 Epub Date: 2024-11-28 DOI:10.1111/age.13495
R G Tearle, T Chen, F D Brien
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Abstract

Sheep have naturally pigmented wool which interferes with dyeing. Selection has been carried out over many years to remove pigment, with substantial success, but most wool still contains some pigment. As an alternative to selection, it has been proposed to take a naturally occurring mutation found in black Suffolk sheep, that blocks wool pigmentation, and introgress it into other breeds. However, the nature of the mutation has not been identified, prompting us to characterise it. The Suffolk white-fleece phenotype is associated with a novel 3-bp deletion in the gene SLC45A2, which encodes a membrane bound transporter that mediates melanin synthesis. The deletion results in the removal of one amino acid from the protein. The assignment of this deletion as the likely causative mutation is supported by it: being homozygous in the genome of nine animals with a white fleece and not homozygous in the genomes of eight animals with a black fleece; having a high level of conservation of the encoded amino acid sequence in the region surrounding the deleted amino acid across Mammalia; and the same deletion (but in a compound heterozygous state) being found in human SLC45A2 in a person with albinism.

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SLC45A2基因的3个bp缺失与黑羊毛萨福克羊的羊毛色素沉着丧失有关。
绵羊的羊毛有天然色素,这妨碍了染色。多年来,人们一直在进行去除色素的选择,取得了巨大的成功,但大多数羊毛仍然含有一些色素。作为选择的替代方案,有人建议采用在黑色萨福克羊中发现的一种自然发生的突变,这种突变会阻止羊毛色素沉着,并将其渗入其他品种。然而,突变的性质尚未确定,这促使我们对其进行特征描述。萨福克白羊毛表型与SLC45A2基因中一个新的3 bp缺失有关,该基因编码一种介导黑色素合成的膜结合转运蛋白。这种缺失导致从蛋白质中去除一个氨基酸。这种缺失作为可能的致病突变的指定是由它支持的:在9只长白色羊毛的动物的基因组中是纯合的,而在8只长黑色羊毛的动物的基因组中不是纯合的;在整个哺乳动物中,在缺失的氨基酸周围的区域具有高度保守的编码氨基酸序列;在白化病患者的SLC45A2基因中也发现了相同的缺失(但处于复合杂合状态)。
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来源期刊
Animal genetics
Animal genetics 生物-奶制品与动物科学
CiteScore
4.60
自引率
4.20%
发文量
115
审稿时长
5 months
期刊介绍: Animal Genetics reports frontline research on immunogenetics, molecular genetics and functional genomics of economically important and domesticated animals. Publications include the study of variability at gene and protein levels, mapping of genes, traits and QTLs, associations between genes and traits, genetic diversity, and characterization of gene or protein expression and control related to phenotypic or genetic variation. The journal publishes full-length articles, short communications and brief notes, as well as commissioned and submitted mini-reviews on issues of interest to Animal Genetics readers.
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