Another #auxin mystery solved: @OffringaRemko@OmidDilan & colleagues reveal why the synthetic auxin 2,4-D is much better at triggering regeneration than endogenous auxins: it's a bad substrate for auxin efflux!
➡️https://t.co/c9WOjpu9aZ
@wileyplantsci @SEBiology
What if to substitute some positions in the 2,4-D (synthetic analogue of #auxin) to obtain more compounds with auxinic activity?
Take a look in @ThePlantJournal
👉https://t.co/qDBz3agJZR
Congratulations to @OmidDilan, @glycoaa, @WennekesLab, @OffringaRemko and to all involved!
'Making babies: how auxin regulates somatic embryogenesis in Arabidopsis tissue culture'
Grady Pierroz's latest Research Highlight 💡 is here, featuring Karami et al's paper on endogenous IAA biosynthesis and its relation to embryonic cell identity
🔗https://t.co/VeBJUgRtW3
We're thrilled to announce that our new paper "uncovering a novel pathway driving cambium development" has just been published in @Current Biology. https://t.co/2z5at84IWm
An important advance in plant cell totipotency acquisition and a novel method for chromosome doubling for production of polyploid crops in our recent paper
https://t.co/O5DvBN4D4I