I also sing and am very fond of my village.
We used SynBio to "simplify" the plant oxygen sensing pathway and implement it in yeast🍄.
We can now control yeast growth through oxygen!
But most importantly,
Here's a very short recap of what we understood thanks to it:
biorxiv.org/content/10.110…
Thanks so much to all organisers and sponsors for making this edition possible. It was truly amazing!
Next edition reveal by @djgibbs.bsky.social: #ISPLORE2028UK
Thanks so much to all organisers and sponsors for making this edition possible. It was truly amazing!
Next edition reveal by @djgibbs.bsky.social: #ISPLORE2028UK
www.biorxiv.org/content/10.1...
www.biorxiv.org/content/10.1...
www.biorxiv.org/content/10.1...
www.biorxiv.org/content/10.1...
We used SynBio to "simplify" the plant oxygen sensing pathway and implement it in yeast🍄.
We can now control yeast growth through oxygen!
But most importantly,
Here's a very short recap of what we understood thanks to it:
biorxiv.org/content/10.110…
We used SynBio to "simplify" the plant oxygen sensing pathway and implement it in yeast🍄.
We can now control yeast growth through oxygen!
But most importantly,
Here's a very short recap of what we understood thanks to it:
biorxiv.org/content/10.110…
#WeAreASPB
#WeAreASPB
This will let me explore one of the most fundamental questions of plant life: how roots breathe underground? @erc.europa.eu
This will let me explore one of the most fundamental questions of plant life: how roots breathe underground? @erc.europa.eu
With our new study, we engineered an orthogonal hypoxia-responsive system in plants inspired by mammalian HIF protein degradation. We demonstrated that this system could control protein stability and activity, enabling modulation of Oxygen sensing outputs. Here's how:
With our new study, we engineered an orthogonal hypoxia-responsive system in plants inspired by mammalian HIF protein degradation. We demonstrated that this system could control protein stability and activity, enabling modulation of Oxygen sensing outputs. Here's how:
With our new study, we engineered an orthogonal hypoxia-responsive system in plants inspired by mammalian HIF protein degradation. We demonstrated that this system could control protein stability and activity, enabling modulation of Oxygen sensing outputs. Here's how: