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Whole genome scan reveals the genetic signature of African Ankole cattle breed and potential for higher quality beef

机译:全基因组扫描揭示了非洲Ankole牛品种的遗传特征以及更高品质牛肉的潜力

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Background Africa is home to numerous cattle breeds whose diversity has been shaped by subtle combinations of human and natural selection. African Sanga cattle are an intermediate type of cattle resulting from interbreeding between Bos taurus and Bos indicus subspecies . Recently, research has asserted the potential of Sanga breeds for commercial beef production with better meat quality as compared to Bos indicus breeds. Here, we identified meat quality related gene regions that are positively selected in Ankole (Sanga) cattle breeds as compared to indicus (Boran, Ogaden, and Kenana) breeds using cross-population (XP-EHH and XP-CLR) statistical methods. Results We identified 238 (XP-EHH) and 213 (XP-CLR) positively selected genes, of which 97 were detected from both statistics. Among the genes obtained, we primarily reported those involved in different biological process and pathways associated with meat quality traits. Genes ( CAPZB , COL9A2 , PDGFRA , MAP3K5 , Z NF41 0, and PKM2) involved in muscle structure and metabolism affect meat tenderness. Genes ( PLA2G2A , PARK2 , ZNF410 , MAP2K3 , PLCD3 , PLCD1 , and ROCK1 ) related to intramuscular fat (IMF) are involved in adipose metabolism and adipogenesis. MB and SLC48A1 affect meat color. In addition, we identified genes ( TIMP2 , PKM2 , PRKG1 , MAP3K5 , and ATP8A1 ) related to feeding efficiency. Among the enriched Gene Ontology Biological Process (GO BP) terms, actin cytoskeleton organization, actin filament-based process, and protein ubiquitination are associated with meat tenderness whereas cellular component organization, negative regulation of actin filament depolymerization and negative regulation of protein complex disassembly are involved in adipocyte regulation. The MAPK pathway is responsible for cell proliferation and plays an important role in hyperplastic growth, which has a positive effect on meat tenderness. Conclusion Results revealed several candidate genes positively selected in Ankole cattle in relation to meat quality characteristics. The genes identified are involved in muscle structure and metabolism, and adipose metabolism and adipogenesis. These genes help in the understanding of the biological mechanisms controlling beef quality characteristics in African Ankole cattle. These results provide a basis for further research on the genomic characteristics of Ankole and other Sanga cattle breeds for quality beef.
机译:背景技术非洲是众多牛品种的家园,其人种和自然选择的巧妙组合塑造了其多样性。非洲Sanga牛是Bos taurus和Bos indicus亚种之间的杂交产生的中间类型的牛。最近,研究断言,与嘎斯印度品种相比,桑加品种具有商业牛肉生产潜力,肉质更好。在这里,我们使用交叉种群(XP-EHH和XP-CLR)统计方法,确定了与Indicus(Boran,Ogaden和Kenana)品种相比,在Ankole(桑加)牛品种中阳性选择的与肉品质相关的基因区域。结果我们鉴定了238个(XP-EHH)和213个(XP-CLR)阳性选择基因,其中两个基因均检测到97个。在获得的基因中,我们主要报道了那些与肉质性状有关的不同生物学过程和途径的基因。涉及肌肉结构和代谢的基因(CAPZB,COL9A2,PDGFRA,MAP3K5,Z NF41 0和PKM2)影响肉的嫩度。与肌内脂肪(IMF)相关的基因(PLA2G2A,PARK2,ZNF410,MAP2K3,PLCD3,PLCD1和ROCK1)参与脂肪代谢和脂肪形成。 MB和SLC48A1影响肉的颜色。此外,我们确定了与饲喂效率相关的基因(TIMP2,PKM2,PRKG1,MAP3K5和ATP8A1)。在丰富的基因本体生物学过程(GO BP)术语中,肌动蛋白细胞骨架组织,基于肌动蛋白丝的过程和蛋白质泛素化与肉嫩度相关,而细胞成分组织,肌动蛋白丝解聚的负调控和蛋白复合物拆卸的负调控则与肉的嫩度有关。参与脂肪细胞调节。 MAPK通路负责细胞增殖,并在增生性生长中起重要作用,对肉的嫩度具有积极作用。结论结果显示,在Ankole牛中,与肉品质特性相关的几个候选基因是阳性选择的。鉴定出的基因与肌肉结构和代谢以及脂肪代谢和脂肪生成有关。这些基因有助于了解控制非洲Ankole牛牛肉质量特征的生物学机制。这些结果为进一步研究优质牛肉的Ankole和其他Sanga牛品种的基因组特征提供了基础。

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