Advancing equine genomics: the development of a high density Axiom_Ashwa SNP chip for Indian horses and ponies

IF 3.9 4区 生物学 Q1 GENETICS & HEREDITY
Sonika Ahlawat, Saket Kumar Niranjan, Reena Arora, Ramesh Kumar Vijh, Amod Kumar, Upasna Sharma, Meenal Raheja, Kanika Popli, Seema Yadav, Sharat Chandra Mehta
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Abstract

The unique horse and pony breeds of India are declining at an alarming rate. These horses have been integral to the Indian culture and customs for centuries and represent a valuable genetic resource. It is imperative to harness the potential of this equine genetic resource that urgently needs conservation. The study highlights the design and development of a high density SNP array, the Axiom_Ashwa to aid in the genetic analysis and conservation efforts for Indian horse and pony breeds. With 613,950 SNPs, this chip offers extensive genome coverage having an average inter-marker distance of 4 kb. The Axiom_Ashwa has been validated on a larger set of diverse indigenous samples as well as Thoroughbreds, demonstrating a high call rate of 99.4% and robustness for genotyping indigenous breeds. Linkage disequilibrium (LD) analysis showed higher average LD in Indian breeds compared to exotic breeds, suggesting a limited effective population size and recent bottlenecks. Phylogenetic and population stratification analyses using PCA and DAPC clearly distinguished horses, ponies and Thoroughbreds, confirming the efficacy of the Axiom_Ashwa chip. These findings underscore the urgent need for conservation efforts for Indian horse breeds, which have experienced significant drop in population size. The Axiom_Ashwa SNP chip offers advantages such as cost-effectiveness and high throughput, providing a more accurate genetic representation of Indian horses.

推进马基因组学:为印度马和小马开发高密度 Axiom_Ashwa SNP 芯片。
印度独特的马和矮种马正在以惊人的速度减少。几个世纪以来,这些马匹一直是印度文化和习俗不可或缺的一部分,也是宝贵的遗传资源。当务之急是利用这一亟待保护的马类遗传资源的潜力。该研究强调了高密度 SNP 阵列 Axiom_Ashwa 的设计和开发,以帮助印度马和矮种马的遗传分析和保护工作。该芯片拥有 613,950 个 SNPs,可提供广泛的基因组覆盖范围,标记间的平均距离为 4 kb。Axiom_Ashwa 芯片已在更多不同的本土马种和纯血马样本上进行了验证,显示出 99.4% 的高调用率和对本土马种基因分型的稳健性。连锁不平衡(LD)分析表明,与外来品种相比,印度品种的平均 LD 较高,这表明有效种群规模有限,近期出现了瓶颈。利用 PCA 和 DAPC 进行的系统发育和种群分层分析明确区分了马、矮种马和纯血马,证实了 Axiom_Ashwa 芯片的功效。这些发现强调了保护印度马品种的紧迫性,因为印度马的种群数量已经大幅下降。Axiom_Ashwa SNP 芯片具有成本效益和高通量等优势,能更准确地反映印度马的遗传情况。
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来源期刊
CiteScore
3.50
自引率
3.40%
发文量
92
审稿时长
2 months
期刊介绍: Functional & Integrative Genomics is devoted to large-scale studies of genomes and their functions, including systems analyses of biological processes. The journal will provide the research community an integrated platform where researchers can share, review and discuss their findings on important biological questions that will ultimately enable us to answer the fundamental question: How do genomes work?
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