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2024 Will Be the Year of the 'New AI Normal': Researchers

2024 Will Be the Year of the 'New AI Normal': Researchers
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United States , Keith Strier , Bill Gates , Judy Slatyer , Kobi Leins , National Ai Centre , Industrial Research Organisation , National Artificial Intelligence Centre , Canadian Press Ryan Remiorz , Artificial Intelligence Centre , Commonwealth Scientific , Scale Think Take , Could Act , Ryan Remiorz ,

Frontiers | Masks Start to Drop: Suppressor of MAX2 1-Like Proteins Reveal Their Many Faces

Although the main players of the strigolactone (SL) signaling pathway have been characterized genetically, how they regulate plant development is still poorly understood. Of central importance are the SUPPRESSOR OF MAX2 1-LIKE (SMXL) proteins that belong to a family of eight members in the Arabidopsis thaliana genome, of which one subclade is involved in SL signaling and another one in the pathway of the chemically related karrikins. Through proteasomal degradation of these SMXLs, triggered by DWARF14 (D14) and KARRAKIN INSENSITIVE2 (KAI2), respectively, several physiological processes are controlled, such as, among others, shoot and root architecture, seed germination, and seedling photomorphogenesis. Yet another clade has been shown to control phloem development and anthocyanin production, independently of the D14 and KAI2 actions and not relying on proteasomal degradation. Despite their importance throughout plant development, the precise molecular mechanisms by which SMXLs regulate ....

France General , United States , Midi Pyrées , Le Caer , Van Buskirk , Virginie Puech Pag , Arabidopsis Ran , Arabidopsis Lu , Arabidopsis Stanga , Arabidopsis Smxls , Tournesol Communaut , Walkerb Gottesman , Idrs Oates , Physcomitrium Physcomitrella , Smxls Walker , Van Parys , Arabidopsis Walker , Arabidopsis Choi , Research Foundation , Parallel Signaling , Wide Variety , Independently From , Plant Specific Atypical , Interaction With , Transcriptional Regulators Through , Lissencephaly Homology ,