首页> 外文期刊>Journal of Heredity >Tracking mtDNA Heteroplasmy through Multiple Generations in the North Atlantic Right Whale (Eubalaena glacialis)
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Tracking mtDNA Heteroplasmy through Multiple Generations in the North Atlantic Right Whale (Eubalaena glacialis)

机译:在北大西洋露脊鲸(Eubalaena glacialis)中通过多代跟踪mtDNA异质性

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摘要

Mitochondrial heteroplasmy has been identified in a variety of species and can result from either paternal leakage, whereby sperm mitochondria enter the ova during fertilization, or more commonly by the “survival” and proliferation of mutant variants within an organism. From an evolutionary perspective, this process represents the generation of new mitochondrial diversity within a species. Although this has been documented in some mammalian species, it has been reported from relatively few wild mammalian populations and in no wild nonhuman population has the transfer and segregation of mitochondrial heteroplasmy been tracked through multiple generations. We report on the first case of the identification and tracking of mitochondrial control region heteroplasmy through 3 generations in the North Atlantic right whale, Eubalaena glacialis. We also identify the full segregation to the mutant variant within a single generation and thus the development of a new haplotype (haplotype G) in a maternal lineage of this endangered species. Witnessed here is the generation of mitochondrial diversity in a genetically depauperate species.
机译:线粒体异质性已在多种物种中发现,可能是由于父系泄漏,即受精过程中精子线粒体进入卵子引起的,或更常见的是由于生物体内突变体变体的“存活”和增殖。从进化的角度来看,该过程代表了物种内新的线粒体多样性的产生。尽管已在某些哺乳动物物种中对此进行了记录,但已从相对较少的野生哺乳动物种群中进行了报道,而且在野生非人类种群中,都没有多代追踪到线粒体异质性的转移和分离。我们报告了通过北大西洋右鲸Eubalaena glacialis的3代鉴定和跟踪线粒体控制区异质性的第一种情况。我们还确定了单代内突变体的完全隔离,并因此在该濒危物种的母系中开发了新的单倍型(单倍型G)。在这里见证的是遗传缺陷的物种中线粒体多样性的产生。

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