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南非恩古尼杂交牛和邦斯玛拉杂交牛的拷贝数变异发现

Copy Number Variation Discovery in South African Nguni-Sired and Bonsmara-Sired Crossbred Cattle.

作者信息

Kooverjee Bhaveni B, Soma Pranisha, van der Nest Magrieta A, Scholtz Michiel M, Neser Frederick W C

机构信息

Animal Production, Agricultural Research Council, Pretoria 0062, South Africa.

Department of Biochemistry, Genetics and Microbiology, University of Pretoria, Pretoria 0028, South Africa.

出版信息

Animals (Basel). 2023 Aug 3;13(15):2513. doi: 10.3390/ani13152513.

Abstract

Crossbreeding forms part of Climate-Smart beef production and is one of the strategies to mitigate the effects of climate change. Two Nguni-sired and three Bonsmara-sired crossbred animals underwent whole genome sequencing. Following quality control and file preparation, the sequence data were investigated for genome-wide copy number variation (CNV) using the panelcn.MOPS tool. A total of 355 CNVs were identified in the crossbreds, of which 274 were unique in Bonsmara-sired crossbreds and 81 unique in the Nguni-sired crossbreds. Genes that differed in copy number in both crossbreds included genes related to growth (SCRN2, LOC109572916) and fertility-related factors (RPS28, LOC1098562432, LOC109570037). Genes that were present only in the Bonsmara-sired crossbreds included genes relating to lipid metabolism (MAF1), olfaction (LOC109569114), body size (HES7), immunity (LOC10957335, LOC109877039) and disease (DMBT1). Genes that were present only in the Nguni-sired crossbreds included genes relating to ketosis (HMBOX1) and amino acid transport (LOC109572916). Results of this study indicate that Nguni and Bonsmara cattle can be utilized in crossbreeding programs as they may enhance the presence of economically important traits associated with both breeds. This will produce crossbred animals that are good meat producers, grow faster, have high fertility, strong immunity and a better chance of producing in South Africa's harsh climate conditions. Ultimately, this study provides new genetic insights into the adaptability of Nguni and Bonsmara crossbred cattle.

摘要

杂交育种是气候智能型牛肉生产的一部分,也是减轻气候变化影响的策略之一。对两头恩古尼种公牛和三头博斯马拉种公牛的杂交后代进行了全基因组测序。经过质量控制和文件准备后,使用panelcn.MOPS工具对序列数据进行全基因组拷贝数变异(CNV)研究。在杂交后代中总共鉴定出355个CNV,其中274个在博斯马拉种公牛杂交后代中是独特的,81个在恩古尼种公牛杂交后代中是独特的。在两个杂交后代中拷贝数不同的基因包括与生长相关的基因(SCRN2、LOC109572916)和与生育相关的因子(RPS28、LOC1098562432、LOC109570037)。仅在博斯马拉种公牛杂交后代中存在的基因包括与脂质代谢(MAF1)、嗅觉(LOC109569114)、体型(HES7)、免疫(LOC10957335、LOC109877039)和疾病(DMBT1)相关的基因。仅在恩古尼种公牛杂交后代中存在的基因包括与酮病(HMBOX1)和氨基酸转运(LOC109572916)相关的基因。本研究结果表明,恩古尼牛和博斯马拉牛可用于杂交育种计划,因为它们可能会增加与这两个品种相关的经济重要性状。这将培育出肉类生产性能良好、生长更快、生育力高、免疫力强且在南非恶劣气候条件下有更好生产机会的杂交动物。最终,本研究为恩古尼牛和博斯马拉牛杂交后代的适应性提供了新的遗传学见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dd8/10417447/3494a354d5f8/animals-13-02513-g001.jpg

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