Heumann-Kiesler Clara, Sommerfeld Vera, Iffland Hanna, Bennewitz Jörn, Rodehutscord Markus, Hasselmann Martin
Department of Livestock Population Genomics, Institute of Animal Science, University of Hohenheim, 70599 Stuttgart, Germany.
Department of Animal Nutrition, Institute of Animal Science, University of Hohenheim, 70599 Stuttgart, Germany.
Animals (Basel). 2021 Mar 15;11(3):825. doi: 10.3390/ani11030825.
Mitochondria are essential components of eukaryotes as they are involved in several organismic key processes such as energy production, apoptosis and cell growth. Despite their importance for the metabolism and physiology of all eukaryotic organisms, the impact of mitochondrial haplotype variation has only been studied for very few species. In this study we sequenced the mitochondrial genome of 180 individuals from two different strains of laying hens. The resulting haplotypes were combined with performance data such as body weight, feed intake and phosphorus utilization to assess their influence on the hens in five different life stages. After detecting a surprisingly low level of genetic diversity, we investigated the nuclear genetic background to estimate whether the low mitochondrial diversity is representative for the whole genetic background of the strains. Our results highlight the need for more in-depth investigation of the genetic compositions and mito-nuclear interaction in individuals to elucidate the basis of phenotypic performance differences. In addition, we raise the question of how the lack of mitochondrial variation developed, since the mitochondrial genome represents genetic information usually not considered in breeding approaches.
线粒体是真核生物的重要组成部分,因为它们参与了多个生物体关键过程,如能量产生、细胞凋亡和细胞生长。尽管线粒体对所有真核生物的代谢和生理功能至关重要,但线粒体单倍型变异的影响仅在极少数物种中得到研究。在本研究中,我们对来自两个不同品系蛋鸡的180个个体的线粒体基因组进行了测序。将所得的单倍型与体重、采食量和磷利用率等生产性能数据相结合,以评估它们在五个不同生命阶段对母鸡的影响。在检测到令人惊讶的低水平遗传多样性后,我们研究了核遗传背景,以估计低线粒体多样性是否代表这些品系的整个遗传背景。我们的结果凸显了有必要对个体的遗传组成和线粒体-核相互作用进行更深入的研究,以阐明表型性能差异的基础。此外,我们提出了一个问题,即线粒体变异的缺乏是如何形成的,因为线粒体基因组代表了通常在育种方法中未被考虑的遗传信息。