If we label mitochondria as alive, that would mean prison laborers must count as living, too.
Kek.
51–60 of 412 posts
If we label mitochondria as alive, that would mean prison laborers must count as living, too.
Kek.
The question posed is whether we consider mitochondria to be "alive". It's just a word, who cares. What do we do differently given this assumption?
a lot of focus on the definition of "alive" in the comments, but i think that the weight of this rests on it being a step toward confirming the endosymbiotic relationship theory which states that mitochondria were potentially part of another eukaryotic cells carrying what would become mitogchodria were engulfed by another cell. this affected cellular development by outsourcing energy production for the cell itself. a…
This assertion is made but not supported. I don't think I understand the importance of this distinction, assuming that everyone already agrees about the evolutionary and mechanical facts about mitochondria, but as far as I can tell, no one disagrees that mitochondria were originally free living cells, or that they have their own DNA, or any of the other relevant facts about their origins or how they work in the cell. It's merely an argument about what it means to be alive. Which is philosophically interesting, but practically unimportant for the practice of biology.
This seems like a purely semantic debate with no broader importance.
I don’t understand the headline (yes I skimmed the article). Why would mitochondria not be alive? What does that even mean?
"If we think of mitochondria as non-living organelles..." mitochondria were thought to just be a component of the cell. But they have their own DNA separate from that in the cell's nucleus. They replicate on their own like bacteria.
Earlier quoted context omitted.
That's a debatable statement and it doesn't explain the public appeal of mitochondria over ribosomes that predates recent research on the relationship between mitochondria and aging.
Why are you insisting on this comparison to ribosomes? They’re both interesting.
this is the first ive heard of mitochondria replicating separately and distinctly from the host cell, how fascinating! Are we saying that mitochondria have their own life cycle inside of a cell? living/dying/replicating in the span of the "life" of a single host cell? When a host cell reproduces, how does the mitochondria get produced in the new cell to get things started? Cant wait to research this later.
> Mitochondrial DNA mutates 100-1,000 times faster than the human genome This statement is very interesting for two reasons: 1) We not consider mitochondrial DNA as part of the human genome when it's clearly is and can be used to establish the maternal genetic lineage. 2) Traditionally, we always think of telomere reduction and genetic mutations as the root cause of aging but not mitochondrial genetic damages.
A lot of research is looking into the role of mitochondrial damage as causes for a number of conditions.