Mitochondrial haplotypes influence metabolic traits across bovine inter- and intra-species cybrids

Abstract In bovine species, mitochondrial DNA polymorphisms and their correlation to productive or reproductive performances have been widely reported across breeds and individuals. However, experimental evidence of this correlation has never been provided. In order to identify differences among bov...

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Main Authors: Jikun Wang, Hai Xiang, Langqing Liu, Minghua Kong, Tao Yin, Xingbo Zhao
Format: Article
Language:English
Published: Nature Publishing Group 2017-06-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-04457-3
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spelling doaj-3a0f475c6146482187fc6aa0304726a62020-12-08T02:14:20ZengNature Publishing GroupScientific Reports2045-23222017-06-01711910.1038/s41598-017-04457-3Mitochondrial haplotypes influence metabolic traits across bovine inter- and intra-species cybridsJikun Wang0Hai Xiang1Langqing Liu2Minghua Kong3Tao Yin4Xingbo Zhao5National Engineering Laboratory for Animal Breeding; Key Laboratory of Animal Genetics, Breeding and Reproduction, Ministry of Agriculture; College of Animal Science and Technology, China Agricultural UniversityNational Engineering Laboratory for Animal Breeding; Key Laboratory of Animal Genetics, Breeding and Reproduction, Ministry of Agriculture; College of Animal Science and Technology, China Agricultural UniversityNational Engineering Laboratory for Animal Breeding; Key Laboratory of Animal Genetics, Breeding and Reproduction, Ministry of Agriculture; College of Animal Science and Technology, China Agricultural UniversityNational Engineering Laboratory for Animal Breeding; Key Laboratory of Animal Genetics, Breeding and Reproduction, Ministry of Agriculture; College of Animal Science and Technology, China Agricultural UniversityNational Engineering Laboratory for Animal Breeding; Key Laboratory of Animal Genetics, Breeding and Reproduction, Ministry of Agriculture; College of Animal Science and Technology, China Agricultural UniversityNational Engineering Laboratory for Animal Breeding; Key Laboratory of Animal Genetics, Breeding and Reproduction, Ministry of Agriculture; College of Animal Science and Technology, China Agricultural UniversityAbstract In bovine species, mitochondrial DNA polymorphisms and their correlation to productive or reproductive performances have been widely reported across breeds and individuals. However, experimental evidence of this correlation has never been provided. In order to identify differences among bovine mtDNA haplotypes, transmitochondrial cybrids were generated, with the nucleus from MAC-T cell line, derived from a Holstein dairy cow (Bos taurus) and mitochondria from either primary cell line derived from a domestic Chinese native beef Luxi cattle breed or central Asian domestic yak (Bos grunniens). Yak primary cells illustrated a stronger metabolic capacity than that of Luxi. However, all yak cybrid parameters illustrated a drop in relative yak mtDNA compared to Luxi mtDNA, in line with a mitonuclear imbalance in yak interspecies cybrid. Luxi has 250 divergent variations relative to the mitogenome of Holsteins. In cybrids there were generally higher rates of oxygen consumption (OCR) and extracellular acidification (ECAR), and lower mRNA expression levels of nuclear-encoded mitochondrial genes, potentially reflecting active energy metabolism and cellular stress resistance. The results demonstrate that functional differences exist between bovine cybrid cells. While cybrid viability was similar between Holstein and Luxi breeds, the mitonuclear mismatch caused a marked metabolic dysfunction in cattle:yak cybrid species.https://doi.org/10.1038/s41598-017-04457-3
collection DOAJ
language English
format Article
sources DOAJ
author Jikun Wang
Hai Xiang
Langqing Liu
Minghua Kong
Tao Yin
Xingbo Zhao
spellingShingle Jikun Wang
Hai Xiang
Langqing Liu
Minghua Kong
Tao Yin
Xingbo Zhao
Mitochondrial haplotypes influence metabolic traits across bovine inter- and intra-species cybrids
Scientific Reports
author_facet Jikun Wang
Hai Xiang
Langqing Liu
Minghua Kong
Tao Yin
Xingbo Zhao
author_sort Jikun Wang
title Mitochondrial haplotypes influence metabolic traits across bovine inter- and intra-species cybrids
title_short Mitochondrial haplotypes influence metabolic traits across bovine inter- and intra-species cybrids
title_full Mitochondrial haplotypes influence metabolic traits across bovine inter- and intra-species cybrids
title_fullStr Mitochondrial haplotypes influence metabolic traits across bovine inter- and intra-species cybrids
title_full_unstemmed Mitochondrial haplotypes influence metabolic traits across bovine inter- and intra-species cybrids
title_sort mitochondrial haplotypes influence metabolic traits across bovine inter- and intra-species cybrids
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-06-01
description Abstract In bovine species, mitochondrial DNA polymorphisms and their correlation to productive or reproductive performances have been widely reported across breeds and individuals. However, experimental evidence of this correlation has never been provided. In order to identify differences among bovine mtDNA haplotypes, transmitochondrial cybrids were generated, with the nucleus from MAC-T cell line, derived from a Holstein dairy cow (Bos taurus) and mitochondria from either primary cell line derived from a domestic Chinese native beef Luxi cattle breed or central Asian domestic yak (Bos grunniens). Yak primary cells illustrated a stronger metabolic capacity than that of Luxi. However, all yak cybrid parameters illustrated a drop in relative yak mtDNA compared to Luxi mtDNA, in line with a mitonuclear imbalance in yak interspecies cybrid. Luxi has 250 divergent variations relative to the mitogenome of Holsteins. In cybrids there were generally higher rates of oxygen consumption (OCR) and extracellular acidification (ECAR), and lower mRNA expression levels of nuclear-encoded mitochondrial genes, potentially reflecting active energy metabolism and cellular stress resistance. The results demonstrate that functional differences exist between bovine cybrid cells. While cybrid viability was similar between Holstein and Luxi breeds, the mitonuclear mismatch caused a marked metabolic dysfunction in cattle:yak cybrid species.
url https://doi.org/10.1038/s41598-017-04457-3
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