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普氏原羚 9 基因在信德牛中的多态性。

Variability in the PRDM9 gene in Sindhi cattle.

机构信息

Escola de Medicina Veterinária e Zootecnia, Universidade Federal da Bahia, (UFBA), Salvador, BA, Brasil.

出版信息

Mol Biol Rep. 2023 Nov;50(11):8839-8842. doi: 10.1007/s11033-023-08778-7. Epub 2023 Sep 2.

Abstract

BACKGROUND

Sindhi is a dual-purpose breed adapted to tropical environments. However, this breed has the smallest total population among indicine breeds in Brazil and the smallest effective number. In addition, the inbreeding coefficient is higher than 6.25% in ~ 60% of the population. Therefore, alternatives to increase genetic diversity are important. Within this context, the PRDM9 gene is particularly interesting since it is involved in meiotic recombination events, consequently enhancing genetic variability in the population by increasing the number of circulating haplotypes. Each allele of the gene induces recombination at a different hotspot. The larger the number of circulating alleles, the higher the recombination rate and the greater the genetic variability.

METHODS

The aim of this study was to characterize alleles of the PRDM9 gene in Sindhi cattle. The region of the zinc finger domains of the gene was amplified by PCR, genotyped, and sequenced for allele identification in 50 Sindhi animals.

RESULTS

Three alleles (A-cattle1, B-cattle14, and C-cattle19) and six genotypes (AA, BB, CC, AB, AC, and BC) were identified.

CONCLUSION

The allele variation of the PRDM9 gene in the Sindhi breed enables to guide the mating of animals with different genotypes/alleles and to promote genetic variability by recombination if there is intralocus variability.

摘要

背景

信德牛是一种适应热带环境的两用品种。然而,该品种在巴西的印度牛品种中总种群数量最小,有效种群数量也最小。此外,在约 60%的群体中,近交系数高于 6.25%。因此,增加遗传多样性的替代方案很重要。在这种情况下,PRDM9 基因特别有趣,因为它参与减数分裂重组事件,从而通过增加循环单倍型的数量来增加群体的遗传可变性。该基因的每个等位基因在不同的热点诱导重组。循环等位基因的数量越多,重组率越高,遗传多样性越大。

方法

本研究旨在表征信德牛的 PRDM9 基因等位基因。通过 PCR 扩增基因的锌指结构域,对 50 头信德牛进行基因分型和测序,以确定等位基因。

结果

鉴定出 3 个等位基因(A-牛 1、B-牛 14 和 C-牛 19)和 6 种基因型(AA、BB、CC、AB、AC 和 BC)。

结论

信德牛品种中 PRDM9 基因的等位基因变异可指导不同基因型/等位基因动物的交配,并在存在基因内变异时通过重组促进遗传多样性。

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