A Quote by George M. Church

What I really wanted was for everybody to have their genome and, ideally, everybody to share their genome, and for that, we needed to bring the price way down. — © George M. Church
What I really wanted was for everybody to have their genome and, ideally, everybody to share their genome, and for that, we needed to bring the price way down.
The question is, are there useful things that we can do with the results of a genome sequence that would bring benefit? And the answer is, today, should the majority of people go and have their genome sequenced? Probably not. But are there particular circumstances in which genome sequencing is really helpful? Yes, there are.
One of the big challenges now is to figure out just how many viruses there really are in the human genome. So far the estimate is 8.3% of our genome is virus, but it actually could be a lot higher.
The mouse genome is an invaluable tool to interpret the human genome.
Why do people believe that there are dangerous implications of the idea that the mind is a product of the brain, that the brain is organized in part by the genome, and that the genome was shaped by natural selection?
If you know the mother's genome and the father's genome, and you see that the children have some genes that neither parent has, then you know that difference is either a mutation or a processing error.
Since my own genome was sequenced, my software has been broadcast into space in the form of electromagnetic waves, carrying my genetic information far beyond Earth. Whether there is any creature out there capable of making sense of the instructions in my genome, well, that's another question.
Genome-based treatment, based on wider and cheaper availability of genome data, will provide new ways to customize the therapeutic protocol and enhance our control over diseases and medical treatment.
I think I've achieved some good things; doing the first genome in history - my team on that was phenomenal and all the things they pulled together; writing the first genome with a synthetic cell; my teams at the Venter Institute, Human Longevity, and before that Celera.
But 'Cuban Linx' was a project that really needed to come, and I really wanted to get it off my chest because I know that the fans were really skeptical about it, like 'is this really gonna be what it's supposed to be?' So once everybody caught it for what it was and everybody was happy, that's mission accomplished for me.
Everybody hangs out with everybody, which is very strange for a cast this large and this young. We're all cool and down to earth and not caught up in this maniacal business at all... . Everybody really, really likes everybody else.
Everybody hangs out with everybody, which is very strange for a cast this large and this young. We're all cool and down to earth and not caught up in this maniacal business at all.... Everybody really, really likes everybody else.
There's always a question when you invest. Are you too early, are you too late, or are you just right? And there was a lot of hype about life sciences, around the sequencing of the human genome and a lot of people concluded that's not really there. But by the way, there was a lot of hype around the digital revolution just about the time of 2000 and the human genome, and it turns out that some of the world's biggest, most powerful companies are the survivors post that crash.
I think something very simple that everybody can do is they can participate in medical research as subjects. Personal genome project, for example, will take on as many subjects as we can find.
As a Christian, but also as a scientist responsible for overseeing the Human Genome Project, one of my concerns has been the limits on applications of our understanding of the genome. Should there be limits? I think there should. I think the public has expressed their concern about ways this information might be misused.
The thing is, everybody wants to be famous. Everybody wants to be successful. Everybody wants to be that dude, but not everybody wants to do the work for it. And I think that's probably one of the reasons why there's so many juniors and only a couple that make it. Because I really wanted it. I wanted it real bad.
The first thing you have to do is to sequence the Neanderthal genome, and that has actually been done. The next step would be to chop this genome up into, say, 10,000 chunks and then... assemble all the chunks in a human stem cell, which would enable you to finally create a Neanderthal clone.
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