OK, this news is very interesting, but it does not prove much about extraterrestrial life.
We know that organisms can adapt to their environment. Incorporating some fraction of arsenic into a cell's dna is an example of such adaptation.
The question that really matters is "has life originated more than once in the universe?" This experiment has no bearing on that: They took a standard terrestrial cell, with a carbon-based history, and simply subjected it to some new conditions. This is NOT a new life form that originated from a novel environment and using a different chemistry. However, NASA is getting awfully close to selling it as such in their press conference, which is misleading.
if you're watching the press conference, they're very adamant that it doesn't prove anything about extraterrestrial life and they aren't able to yet say if life evolved with the arsenic or if it adapted.
but they're pointing out that it does show that forms of life different from our current definitions can exist and therefore the possibility of extraterrestrial life in non-earthlike environments exist.
"but they're pointing out that it does show that forms of life different from our current definitions can exist"
Yes, but not meaningfully different from previous definitions. If this is simply an evolution of existing earth life, then it's just another in a long list of things that we were surprised evolved from conventional Earth life, but is, nevertheless, conventional Earth life. It's more indicative of a slight flaw in our definitions, not time for a radical reexamination of our assessment of the universe.
As I commented in a previous message, people have a history of getting far more excited about this sort of thing than they have scientific justification for. This sure looks like another one of those.
Now, if they could establish that this has to be the actual entirely new branch of life that can be provably not traced back to the same Earth ancestor as everything else, that would be a groundshaking discovery.
Those of us pondering the Great Questions were already not assuming that everything has to look exactly like known Earth life to work. There are numerous obvious different, incompatible mechanism that could exist (different RNA transcription tables, the other chirality for proteins) and an unknown and presumably vastly larger number of unobvious different mechanisms even just for basically Earth life before we really go out into new territory. We've already speculated endlessly about silicon life, ammonia life, mechanisms other than photosynthesis, etc. Don't get me wrong, this is legitimately interesting, and would on its own be worthy of HN, but I have to say the implications for the Great Questions are basically zip. Announcing proof that life can only exist in precisely Earthlike conditions with incredibly tight tolerances would be the surprise.
i think that it is meaningfully different from previous definitions.
perhaps all sparks of life would require the same stuff that it did on earth, that is unclear. but it shows that the continuation of life doesn't necessarily require that same stuff. it means that in searching for life, you don't necessarily have to limit it to the proverbial class M planets.
But how is that a change? We already knew that to the point that we're looking at non-Earthlike planets. We're already looking for life on Titan and Europa, already looking on Mars to see if it had life. We're already talking about life on that tidally-locked mega-Earth that came up a couple of months ago, with otherwise-respectable scientists saying it's 100% likely [1]. We're already not convinced that life has to start exactly as Earth does.
If it's "different", what's the actual difference? What actually changed?
no. we already theorized that, we didn't know. we didn't have proof. now we do; now we know. the actual tangible differences are likely going to be in funding, research direction, and scope of effort on the topic. who knows what future research will generate off of this?
no, the world hasn't changed. sorry. not yet, at least. but its kind of like watching the moon landing in '69 and scoffing at it because you knew it was coming, you've been reading about NASA working on it for years in the paper.
You're badly misunderstanding my point. I'm not saying this isn't interesting. I'm saying this isn't actually all that interesting when it comes to the Great Questions. It doesn't significantly expand where we already thought life could be. It has not yet established that it is anything other than another evolution of Earth life, which would be a big deal, and from the sounds of it that's still what it is, an adaptation.
This isn't some amazing announcement with profoundly unsettling implications for life in the Universe. It's another in a long series of announcements about how our understanding was limited about how far Earth life could travel. It's roughly similar to how we found non-photosynthetic life around the ocean vents [1], or the recent discoveries of strange life several miles underground [2], or the sky bacteria [3]. I think quite a few people here are not understanding just how many similar discoveries have already been made, we moved on from "all life in the universe will look just like the standard sun-powered ecosystem we live in" quite a while ago.
I guess you could say to the extent this is amazing, we've already been amazed this way. It's cool, but it's a discovery that fits quite comfortably with a number of other interesting discoveries. We're not going to be talking about this in another year. (Except possibly because once people start looking for more examples of this sort of thing I'd lay money they find them.)
Well, no. To know that we'd have to find it to act as proof. What this finding does is expand the bounds of the environments in which searching for life is viable. In other words, we can now consider other temperature ranges and chemical soups and compare them against a new baseline for viability.
I agree that this is remarkable, but I think it's valid to criticize publicizing the finding as an astrobiology discovery, which is exactly what NASA (or its public relations department, at any rate) is calling it--and which it is not, despite its implications for astrobiology.
If we care about engaging the public, we should be concerned about sensationalism that detracts from the solid work of the scientists. If you cause people to think you're going to show them extraterrestrial life, fairly or not, you run the risk of them tuning out when the reality is less flashy, even if it's groundbreaking.
I'm surprised by the strong objection. I understand that the lead scientist is with the NASA Astrobiology Institute, but I still think that despite the important implications for astrobiology, calling it astrobiology is questionable. If neither NASA nor any astrobiologists had been involved, exactly the same results could have been obtained, and the astrobiology connection (though it might be played up because it is an interesting angle) would more clearly be incidental. In other words, I don't think you lose any accuracy or diminish the finding by referring to it as biological rather than astrobiological.
That said, I'm not sure I really want to get caught up on "biology" versus "astrobiology" as terms. I think the greater point (or at least the point I was trying to make) is about communicating clearly and managing expectations. When you say astrobiology or exobiology, invariably some people are going to cry, "What, no aliens? You tricked me!" If that indignance prevents them from trying to understand the importance of the story, should we even bother trying to cater to them? I don't have a good answer for that. Without raising the idea of extraterrestrial life, they might not have been engaged at all. It's just something for those involved in public outreach to be aware of.
I guess I tend towards thinking of astrobiology as the subset of biology dealing with life beyond Earth--a convenient and arbitrary definition, perhaps. In any case, under this definition, with no validated extraterrestrial life, astrobiology would be a largely theoretical science or a line of philosophical inquiry. But if that's too narrow an interpretation, maybe this indeed is an example of experimental astrobiology. Hence, I may have overstated my position when I said this is not astrobiology.
At this point, however, I fear I'm drawn towards philosophical digression. It seems the motivation of the scientist comes into play because she could end up with the same results whether she is a) looking for insight into how life could exist elsewhere in the universe or b) studying life in extreme conditions on Earth. The impetus and interpretation become the categorizers (in practice, I don't think it's too cynical to link this to funding source). On the broader question, I should perhaps defer to the epistemologists--does the nature of knowledge change depending on why it was sought or what is made of it?
Back to the question, what would I consider astrobiology? Well, if life or its precursors were found on Mars or a comet, that might work for me. But what happens when it falls to Earth? I don't know; I've never been particularly comfortable with the blurry divisions between disciplines anyway, so if I consider the dividing line between, for example, psychology and sociology to be tenuous, how am I supposed to feel in this instance? The thing is, knowing what to call it doesn't really affect our ability to understand or use it, it just changes the way we talk about it--which may be important, I grant. But this brings me back to the communication aspect. And as far as that goes, I feel like I've gone through a lot of words without saying much. Therefore, let me summarize like so: I understand why they call this astrobiology; I probably wouldn't call it that myself; most importantly, I think many people will be expecting something else.
So, exactly where in the paper did they show that there was DNA that had an arsenic backbone? They just showed that there was arsenic in the sample that they think is DNA, and not very much phosphorus. That could be contaminants. But also, how do they know that sample is the "DNA sample"?
That's fair, they didn't prove an "arsenic backbone," but here's a couple of key lines...
"...the purified DNA extracted from +As/-P cells contained As. Our NanoSIMS analyses, combined with the evidence for intracellular arsenic by ICP-MS and our radiolabeled AsO4-
experiments demonstrated that intracellular AsO4 was incorporated into key biomolecules, specifically DNA."
and
"...the level of PO4 impurities in the medium was insufficient to elicit growth in the control (-As/-P)"
I agree. Note that the cells are not phosphorus-free. The paper states that the cells grown without phosphorus contained 0.02% phosphorus, presumably due to impurities in the reagents. Based on the numbers in the paper, it seems like this is enough phosphorus for one copy of the DNA genome.
My hunch is that the bacteria are able to use this low level of phosphorus, rather than replacing phosphorus with arsenic wholesale. It seems unlikely to me that the bacteria have evolved to use arsenic in place of phosphorus in the DNA, in ATP, in phospholipids, and in everything else. It seems even more unlikely that they can dynamically switch between arsenic and phosphorus for all their purposes, since all the enzymes would need to work with two different substrates. (In other words, changing an enzyme to work with As instead of P seems hard; changing an enzyme to work with As or P as needed seems much harder.)
That said, I think this is a cool discovery, and it will be interesting to see just how much of the biochemistry is actually using arsenic, since it seems that at least some is.
..based on their MS measurements. They can't accurately calculate for impurities that might be in the source medium, there's no negative control on that.
We know that organisms can adapt to their environment. Incorporating some fraction of arsenic into a cell's dna is an example of such adaptation.
The question that really matters is "has life originated more than once in the universe?" This experiment has no bearing on that: They took a standard terrestrial cell, with a carbon-based history, and simply subjected it to some new conditions. This is NOT a new life form that originated from a novel environment and using a different chemistry. However, NASA is getting awfully close to selling it as such in their press conference, which is misleading.