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Simultaneous Mapping and Quantitation of Ribonucleotides in Human Mitochondrial DNA
Published on: November 14, 2017
Estimating mitochondrial DNA content of chinook salmon spermatozoa using quantitative real-time polymerase chain
Jonci N Wolff1, Neil J Gemmell
1School of Biological Sciences, University of Canterbury, 8041 Christchurch, New Zealand. jonci.wolff@pg.canterbury.ac.nz
Abstract:
Animal mitochondrial DNA (mtDNA) is predominantly inherited maternally. Various mechanisms to avoid the transmission of paternal mtDNA to offspring have been proposed, including the dilution of paternal mtDNA by maternal mtDNA in the zygote. The effectiveness of dilution as a barrier will be determined by the number of mtDNA molecules contributed by each parental gamete, and is expected to be highly variable among different taxa due to interspecific differences in mating systems and gamete investment. Estimates of this ratio are currently limited to few mammalian species, and data from other taxa are therefore needed to better understand the mechanisms of mitochondrial inheritance. The present study estimates mtDNA content in salmon sperm, the first nonmammalian vertebrate to be examined. Although highly divergent, it appears that the mtDNA content may be conserved within vertebrate taxa, indicating that the reduction of mtDNA is a key factor of spermatogenesis to ensure mitochondrial functionality on the one hand, and to avoid paternal leakage at a significant or detectable level on the other hand. We employ quantitative real-time PCR (Q-PCR) and demonstrate the accuracy and high reproducibility of our experiments. Furthermore, we compare and evaluate two standard approaches used for the quantification of genes, Q-PCR and blotting methods, in regard to their utility in the accurate quantification of mitochondrial genes.
Insights
Salmon sperm have significantly reduced mitochondrial DNA (mtDNA) content, a key factor in preventing paternal mtDNA leakage and ensuring offspring inherit mtDNA maternally. This finding extends to nonmammalian vertebrates.
Area of Science:
- Evolutionary Biology
- Genetics
- Molecular Biology
Background:
- Animal mitochondrial DNA (mtDNA) is primarily maternally inherited.
- Mechanisms preventing paternal mtDNA transmission, like zygote dilution, are crucial.
- Data on paternal mtDNA content is scarce, especially in nonmammalian vertebrates.
Purpose of the Study:
- To quantify mitochondrial DNA (mtDNA) content in salmon sperm.
- To investigate the conservation of mtDNA content across vertebrate taxa.
- To compare quantitative PCR (Q-PCR) and blotting methods for gene quantification.
Main Methods:
- Quantitative real-time PCR (Q-PCR) was used to estimate mtDNA content in salmon sperm.
- Two standard gene quantification methods (Q-PCR and blotting) were evaluated.
- Experiments were designed for accuracy and high reproducibility.
Main Results:
- Salmon sperm exhibit significantly reduced mitochondrial DNA (mtDNA) content.
- This reduction appears conserved across vertebrate taxa, despite evolutionary divergence.
- Q-PCR proved accurate and reproducible for quantifying mitochondrial genes.
Conclusions:
- Reduced mtDNA content in sperm is a conserved vertebrate trait.
- This mechanism is vital for preventing paternal mtDNA leakage.
- Spermatogenesis involves mtDNA reduction to maintain functionality and prevent leakage.
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