Elsevier

Developmental Biology

Volume 349, Issue 2, 15 January 2011, Pages 462-469
Developmental Biology

Germ-line mitochondria exhibit suppressed respiratory activity to support their accurate transmission to the next generation

https://doi.org/10.1016/j.ydbio.2010.11.021Get rights and content
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Abstract

Mitochondria are accurately transmitted to the next generation through a female germ cell in most animals. Mitochondria produce most ATP, accompanied by the generation of reactive oxygen species (ROS). A specialized mechanism should be necessary for inherited mitochondria to escape from impairments of mtDNA by ROS. Inherited mitochondria are named germ-line mitochondria, in contrast with somatic ones. We hypothesized that germ-line mitochondria are distinct from somatic ones. The protein profiles of germ-line and somatic mitochondria were compared, using oocytes at two different stages in Xenopus laevis. Some subunits of ATP synthase were at a low level in germ-line mitochondria, which was confirmed immunologically. Ultrastructural histochemistry using 3,3′-diaminobenzidine (DAB) showed that cytochrome c oxidase (COX) activity of germ-line mitochondria was also at a low level. Mitochondria in one oocyte were segregated into germ-line mitochondria and somatic mitochondria, during growth from stage I to VI oocytes. Respiratory activity represented by ATP synthase expression and COX activity was shown to be low during most of the long gametogenetic period. We propose that germ-line mitochondria that exhibit suppressed respiration alleviate production of ROS and enable transmission of accurate mtDNA from generation to generation.

Research Highlights

► Inherited mitochondria are named germ-line mitochondria (gl-M). ► The amount of ATP synthase was low at the protein level in gl-M. ► Cytochrome c oxidase activity of gl-M was also at a low level. ► Respiratory activity (RA) was at a low level during most gametogenetic period. ► The gl-M enable their accurate transmission to the next generation by the low RA.

Keywords

Mitochondria
Germ plasm
Oocyte
ATP synthase
Respiration

Cited by (0)

1

Present address: Center for Regenerative Therapies Dresden, University of Technology Dresden, Tatzberg 47/49, 01307 Dresden, Germany.

2

Present address: Graduate School of Life Science, Faculty of Science, Rikkyo University, 3-34-1 Nishi-Ikebukuro, Toshima-ku, Tokyo 171-8501, Japan.