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牛的表型可能会掩盖它们的母系血统。

Cattle phenotypes can disguise their maternal ancestry.

作者信息

Srirattana Kanokwan, McCosker Kieren, Schatz Tim, St John Justin C

机构信息

Centre for Genetic Diseases, Hudson Institute of Medical Research, Clayton, VIC, 3168, Australia.

Department of Molecular and Translational Sciences, Monash University, Clayton, VIC, 3168, Australia.

出版信息

BMC Genet. 2017 Jun 26;18(1):59. doi: 10.1186/s12863-017-0523-5.

Abstract

BACKGROUND

Cattle are bred for, amongst other factors, specific traits, including parasite resistance and adaptation to climate. However, the influence and inheritance of mitochondrial DNA (mtDNA) are not usually considered in breeding programmes. In this study, we analysed the mtDNA profiles of cattle from Victoria (VIC), southern Australia, which is a temperate climate, and the Northern Territory (NT), the northern part of Australia, which has a tropical climate, to determine if the mtDNA profiles of these cattle are indicative of breed and phenotype, and whether these profiles are appropriate for their environments.

RESULTS

A phylogenetic tree of the full mtDNA sequences of different breeds of cattle, which were obtained from the NCBI database, showed that the mtDNA profiles of cattle do not always reflect their phenotype as some cattle with Bos taurus phenotypes had Bos indicus mtDNA, whilst some cattle with Bos indicus phenotypes had Bos taurus mtDNA. Using D-loop sequencing, we were able to contrast the phenotypes and mtDNA profiles from different species of cattle from the 2 distinct cattle breeding regions of Australia. We found that 67 of the 121 cattle with Bos indicus phenotypes from NT (55.4%) had Bos taurus mtDNA. In VIC, 92 of the 225 cattle with Bos taurus phenotypes (40.9%) possessed Bos indicus mtDNA. When focusing on oocytes from cattle with the Bos taurus phenotype in VIC, their respective oocytes with Bos indicus mtDNA had significantly lower levels of mtDNA copy number compared with oocytes possessing Bos taurus mtDNA (P < 0.01). However, embryos derived from oocytes with Bos indicus mtDNA had the same ability to develop to the blastocyst stage and the levels of mtDNA copy number in their blastocysts were similar to blastocysts derived from oocytes harbouring Bos taurus mtDNA. Nevertheless, oocytes originating from the Bos indicus phenotype exhibited lower developmental potential due to low mtDNA copy number when compared with oocytes from cattle with a Bos taurus phenotype.

CONCLUSIONS

The phenotype of cattle is not always related to their mtDNA profiles. MtDNA profiles should be considered for breeding programmes as they also influence phenotypic traits and reproductive capacity in terms of oocyte quality.

摘要

背景

牛的选育考虑多种因素,包括对寄生虫的抗性和对气候的适应性等特定性状。然而,线粒体DNA(mtDNA)的影响和遗传在育种计划中通常未被考虑。在本研究中,我们分析了来自澳大利亚南部温带气候的维多利亚州(VIC)和北部热带气候的北领地(NT)的牛的mtDNA图谱,以确定这些牛的mtDNA图谱是否能表明品种和表型,以及这些图谱是否适合它们的环境。

结果

从NCBI数据库获得的不同品种牛的完整mtDNA序列的系统发育树表明,牛的mtDNA图谱并不总是反映其表型,因为一些具有普通牛表型的牛具有印度瘤牛的mtDNA,而一些具有印度瘤牛表型的牛具有普通牛的mtDNA。使用D环测序,我们能够对比来自澳大利亚两个不同养牛地区的不同牛种的表型和mtDNA图谱。我们发现,北领地121头具有印度瘤牛表型的牛中有67头(55.4%)具有普通牛的mtDNA。在维多利亚州,225头具有普通牛表型的牛中有92头(40.9%)拥有印度瘤牛的mtDNA。当关注维多利亚州具有普通牛表型的牛的卵母细胞时,与拥有普通牛mtDNA的卵母细胞相比,其具有印度瘤牛mtDNA的相应卵母细胞的mtDNA拷贝数显著较低(P < 0.01)。然而,来自具有印度瘤牛mtDNA的卵母细胞的胚胎具有发育到囊胚阶段的相同能力,并且其囊胚中的mtDNA拷贝数水平与来自具有普通牛mtDNA的卵母细胞的囊胚相似。尽管如此,与具有普通牛表型的牛的卵母细胞相比,源自印度瘤牛表型的卵母细胞由于mtDNA拷贝数低而表现出较低的发育潜力。

结论

牛的表型并不总是与其mtDNA图谱相关。在育种计划中应考虑mtDNA图谱,因为它们在卵母细胞质量方面也会影响表型性状和繁殖能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff82/5485690/83e094ba8f32/12863_2017_523_Fig1_HTML.jpg

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