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The mitochrondrial DNA of Ashkenazi Jewish women results in a greater likelihood of scamming people than having random human mitochondrial DNA that is European but neither Ashkenazi nor Sephardic Jewish

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@shortstories big disagree because that's not how mitochondrial dna works, at least to my knowledge (limited). if you remove mitochondial this jumps all the way up to slightly agree.

@HatkeshiatorTND

So mitochondrial DNA is transferred from mother to child and not from the father

Kikes claim that whether or not you are Jewish is based on your mother but not your father

Although Mitochondria is claimed only to effect energy production

Perhaps having a lower energy production per time might encourage a preference for scamming behavior as a means to survive rather than doing difficult physical or mental behavior that requires more energy per time to reduce fatigue

@shortstories @HatkeshiatorTND That's the most misconstrued notions on microbiology I've ever read...

@VIcFury @shortstories you're being mean for no reason. he's asking questions. how many questions have you asked, mr. king of microbiology?
@shortstories jews believe a lot of crazy kooky garbage. mitochondrial dna's functions are only beginning to be understood but i highly doubt it could have the kind of effect you describe.
mitochondria are responsible for energy production, yes
they have their own dna, yes
that dna is entirely derived from maternal mitochondria, with no contribution of paternal mitochondria, yes
but the mitochondrial dna's role in energy production is secondary at best. certainly the precise sequence is not super relevant.

@HatkeshiatorTND

If mitochondria produce energy then why wouldn't changes in mitochondrial DNA sequences effect energy production per time

what else would changing the mitochondrial DNA do in matters of metabolism?

What would changing the mitochondrial DNA do that does not effect metabolism if metabolism is the main thing mitochondria are known for doing by biologists?

@shortstories my understanding is that mitochrondial dna is largely vestigial in non-protists. the few coding regions code for proteins involved in the etc, but if i'm not mistaken most of those proteins are already synthesized in abundance by the cell itself.
so the answer to your question is nothing. unfertilized eggs without mtdna probably die quick, making it so viable embryos universally keep mtdna, even though onky one cell line in one half of the population will ever need it.
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