Gershoni Moran, Templeton Alan R, Mishmar Dan
Department of Life Sciences and National Institute of Biotechnology (NIBN), Ben-Gurion University of the Negev, Beer-Sheva, Israel.
Bioessays. 2009 Jun;31(6):642-50. doi: 10.1002/bies.200800139.
Mitochondrial bioenergetics plays a key role in multiple basic cellular processes, such as energy production, nucleotide biosynthesis, and iron metabolism. It is an essential system for animals' life and death (apoptosis) and it is required for embryo development. This, in conjunction with its being subjected to adaptive processes in multiple species and its gene products being involved in the formation of reproductive barriers in animals, raises the possibility that mitochondrial bioenergetics could be a candidate genetic mechanism of speciation. Here, we discuss genetic and biochemical evidence for the possible involvement of this unique system, encoded by two genomes (the mitochondrial and nuclear genomes), that differ by an order of magnitude in their mutation rates in processes leading to speciation events.
线粒体生物能量学在多个基本细胞过程中起着关键作用,如能量产生、核苷酸生物合成和铁代谢。它是动物生死(凋亡)的重要系统,也是胚胎发育所必需的。这一点,再加上它在多个物种中经历适应性过程,以及其基因产物参与动物生殖屏障的形成,增加了线粒体生物能量学可能是物种形成的候选遗传机制的可能性。在这里,我们讨论了遗传和生化证据,表明这个由两个基因组(线粒体基因组和核基因组)编码的独特系统可能参与了物种形成事件,这两个基因组的突变率相差一个数量级。