ICAR-National Bureau of Animal Genetic Resources, Karnal 132001, Haryana, India.
ICAR-National Bureau of Animal Genetic Resources, Karnal 132001, Haryana, India.
Gene. 2024 Aug 30;921:148541. doi: 10.1016/j.gene.2024.148541. Epub 2024 May 8.
Camels play a crucial socio-economic role in sustaining the livelihoods of millions in arid and semi-arid regions. They possess remarkable physiological attributes which enable them to thrive in extreme environments, and provide a source of meat, milk and transportation. With their unique traits, camels embody an irreplaceable source of untapped genomic knowledge. This study introduces Axiom-MaruPri, a medium-density SNP chip meticulously designed and validated for both Camelus bactrianus and Camelus dromedarius. Comprising of 182,122 SNP markers, derived from the re-sequenced data of nine Indian dromedary breeds and the double-humped Bactrian camel, this SNP chip offers 34,894 markers that display polymorphism in both species. It achieves an estimated inter-marker distance of 14 Kb, significantly enhancing the coverage of the camel genome. The medium-density chip has been successfully genotyped using 480 camel samples, achieving an impressive 99 % call rate, with 96 % of the 182,122 SNPs being highly reliable for genotyping. Phylogenetic analysis and Discriminant Analysis of Principal Components yield clear distinctions between Bactrian camels and dromedaries. Moreover, the discriminant functions substantially enhance the classification of dromedary camels into different breeds. The clustering of various camel breeds reveals an apparent correlation between geographical and genetic distances. The results affirm the efficacy of this SNP array, demonstrating high genotyping precision and clear differentiation between Bactrian and dromedary camels. With an enhanced genome coverage, accuracy and economic efficiency the Axiom_MaruPri SNP chip is poised to advance genomic breeding research in camels. It holds the potential to serve as an invaluable genetic resource for investigating population structure, genome-wide association studies and implementing genomic selection in domesticated camelid species.
骆驼在维持干旱和半干旱地区数百万人的生计方面发挥着至关重要的社会经济作用。它们具有非凡的生理特征,使它们能够在极端环境中茁壮成长,并提供肉类、牛奶和运输的来源。骆驼具有独特的特征,体现了一种不可替代的未开发基因组知识来源。本研究介绍了 Axiom-MaruPri,这是一种为双峰驼和单峰驼精心设计和验证的中密度 SNP 芯片。该芯片由来自 9 个印度单峰驼品种和双峰驼的重测序数据衍生的 182122 个 SNP 标记组成,在两个物种中都显示出多态性的 34894 个标记。它实现了估计的标记间距离为 14 Kb,显著提高了骆驼基因组的覆盖度。该中密度芯片已成功用于 480 个骆驼样本的基因分型,获得了令人印象深刻的 99%的呼叫率,其中 182122 个 SNP 中有 96%具有高度可靠性用于基因分型。系统发育分析和主成分判别分析清楚地区分了双峰驼和单峰驼。此外,判别函数大大提高了不同品种单峰驼的分类能力。各种骆驼品种的聚类显示出地理和遗传距离之间明显的相关性。结果证实了该 SNP 阵列的功效,表明双峰驼和单峰驼的基因分型精度高,分化明显。Axiom_MaruPri SNP 芯片具有更高的基因组覆盖度、准确性和经济效益,有望推动骆驼的基因组育种研究。它具有作为一种宝贵的遗传资源的潜力,可以用于研究种群结构、全基因组关联研究和实施驯化骆驼物种的基因组选择。