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...
Hope you like it!
Hope you like it!
Several years in the making and a lot of people met, but finally out as a preprint!
Several years in the making and a lot of people met, but finally out as a preprint!
1] The Cys-NDP is responsible for these responses in plants happening in only 5-10min.
2] HRPE elements (in hypoxic promoters) compete for ERFVII TFs when these are limited. The more HRPEs, the faster the response!
1] The Cys-NDP is responsible for these responses in plants happening in only 5-10min.
2] HRPE elements (in hypoxic promoters) compete for ERFVII TFs when these are limited. The more HRPEs, the faster the response!
We took it.
Put it in yeast, where no such regulation exists.
And it still works! So the Cys-NDP is self-sufficient...
We took it.
Put it in yeast, where no such regulation exists.
And it still works! So the Cys-NDP is self-sufficient...
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: