Karlsruhe Institute of Technology, Institute of Applied Biosciences, Department of Genetics, Hertzstrasse 16, 76187 Karlsruhe, Germany.
Curr Opin Microbiol. 2010 Dec;13(6):712-9. doi: 10.1016/j.mib.2010.09.003. Epub 2010 Sep 29.
Faithful inheritance of mitochondria is essential for growth and development. Uniparental inheritance of mitochondria is a common phenomenon in sexual eukaryotes and has been reported for numerous fungal species. Uniparental inheritance is a genetically regulated process, aimed to gain a homoplasmic state within cells, and this is often associated with selective elimination of one parental mitochondria population. This review will focus on recent developments in our understanding of common and specified regulatory circuits of selective mitochondrial inheritance during sexual development. It further refers to the influence of mitochondrial fusion on generation of recombinant mitochondrial DNA molecules. The latter aspect appears rather exciting in the context of intron homing and could bring a new twist to the debate on the significance of uniparental inheritance. The emergence of genome-wide studies offers new perspectives to address potential relationships between uniparental inheritance, vegetative inheritance and last but not least cellular scavenging systems to dispose of disintegrated organelles.
线粒体的忠实遗传对于生长和发育至关重要。单亲线粒体遗传是有性真核生物中的一种常见现象,已经在许多真菌物种中得到报道。单亲遗传是一个受基因调控的过程,旨在使细胞内达到同质状态,这通常与选择性消除一个亲本线粒体群体有关。本综述将重点介绍在有性发育过程中对选择性线粒体遗传的常见和特定调节回路的最新理解进展。它进一步提到了线粒体融合对重组线粒体 DNA 分子产生的影响。在后一方面,在内含子归巢的背景下,它似乎令人兴奋,并可能为单亲遗传的意义的争论带来新的转折。全基因组研究的出现提供了新的视角,可以解决单亲遗传、营养遗传以及最后但并非最不重要的细胞清除系统之间的潜在关系,以处理解体的细胞器。