#meristem — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #meristem, aggregated by home.social.
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#OpenAccess #PlantScience? Yes please!
Get a sneak peek at a highly efficient #soybean transformation system that uses GRF3-GIF1 chimeric #protein.
https://doi.org/10.1111/jipb.13767
@wileyplantsci
#PlantSci #plant #SAM #ShootApicalMeristem #meristem #CropSci #organogenesis #development #botany -
#OpenAccess #PlantScience? Yes please!
Get a sneak peek at a highly efficient #soybean transformation system that uses GRF3-GIF1 chimeric #protein.
https://doi.org/10.1111/jipb.13767
@wileyplantsci
#PlantSci #plant #SAM #ShootApicalMeristem #meristem #CropSci #organogenesis #development #botany -
#OpenAccess #PlantScience? Yes please!
Get a sneak peek at a highly efficient #soybean transformation system that uses GRF3-GIF1 chimeric #protein.
https://doi.org/10.1111/jipb.13767
@wileyplantsci
#PlantSci #plant #SAM #ShootApicalMeristem #meristem #CropSci #organogenesis #development #botany -
#OpenAccess #PlantScience? Yes please!
Get a sneak peek at a highly efficient #soybean transformation system that uses GRF3-GIF1 chimeric #protein.
https://doi.org/10.1111/jipb.13767
@wileyplantsci
#PlantSci #plant #SAM #ShootApicalMeristem #meristem #CropSci #organogenesis #development #botany -
Associate Editor, Mary Byrne, specialises in plant #development, #plant architecture, #leaf morphology, #meristem functionality, #transcription factors, and #genetics 🧬
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Associate Editor, Mary Byrne, specialises in plant #development, #plant architecture, #leaf morphology, #meristem functionality, #transcription factors, and #genetics 🧬
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Associate Editor, Mary Byrne, specialises in plant #development, #plant architecture, #leaf morphology, #meristem functionality, #transcription factors, and #genetics 🧬
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#Plant #roots mysteriously #pulsate and we don't know why—but finding out could change the way we grow things.
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#Plant #roots mysteriously #pulsate and we don't know why—but finding out could change the way we grow things.
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#Plant #roots mysteriously #pulsate and we don't know why—but finding out could change the way we grow things.
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#Plant #roots mysteriously #pulsate and we don't know why—but finding out could change the way we grow things.
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#Plant #roots mysteriously #pulsate and we don't know why—but finding out could change the way we grow things.
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Study reveals key #molecular mechanisms involved in #development of #tomato #plant.
#Solanum #microRNA #expressionomics #hormone #gibberellin #semiochemistry #meristem
https://phys.org/news/2024-01-reveals-key-molecular-mechanisms-involved.html
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Study reveals key #molecular mechanisms involved in #development of #tomato #plant.
#Solanum #microRNA #expressionomics #hormone #gibberellin #semiochemistry #meristem
https://phys.org/news/2024-01-reveals-key-molecular-mechanisms-involved.html
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⛓️🌸 Reproductive Arrest 🌸⛓️
Controlling the end of #flowering allows plants to optimise the size of their offspring and maximise resource allocation.
See this review for a beautifully illustrated update on this process in #monocarpic #plants
https://doi.org/10.1093/jxb/erad213
#APETALA2 #auxin #cytokinin #FRUITFULL #inflorescence #meristem #ProliferativeArrest
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⛓️🌸 Reproductive Arrest 🌸⛓️
Controlling the end of #flowering allows plants to optimise the size of their offspring and maximise resource allocation.
See this review for a beautifully illustrated update on this process in #monocarpic #plants
https://doi.org/10.1093/jxb/erad213
#APETALA2 #auxin #cytokinin #FRUITFULL #inflorescence #meristem #ProliferativeArrest
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#Arabidopsis receptor-like kinase GSO1 as a direct activator of the protective SOS2-SOS1 (salt overly sensitive) module that promotes cellular #sodium ion extrusion from the #meristem to maintain root growth
Jörg Kudla, Yan Guo and coworkers
https://www.embopress.org/doi/10.15252/embj.2022113004 -
#Arabidopsis receptor-like kinase GSO1 as a direct activator of the protective SOS2-SOS1 (salt overly sensitive) module that promotes cellular #sodium ion extrusion from the #meristem to maintain root growth
Jörg Kudla, Yan Guo and coworkers
https://www.embopress.org/doi/10.15252/embj.2022113004 -
#Arabidopsis receptor-like kinase GSO1 as a direct activator of the protective SOS2-SOS1 (salt overly sensitive) module that promotes cellular #sodium ion extrusion from the #meristem to maintain root growth
Jörg Kudla, Yan Guo and coworkers
https://www.embopress.org/doi/10.15252/embj.2022113004 -
#Arabidopsis receptor-like kinase GSO1 as a direct activator of the protective SOS2-SOS1 (salt overly sensitive) module that promotes cellular #sodium ion extrusion from the #meristem to maintain root growth
Jörg Kudla, Yan Guo and coworkers
https://www.embopress.org/doi/10.15252/embj.2022113004 -
Timing is everything: New insights into #floral #development unveil nature's perfect clock.
#transcriptome #regulation #meristem #AGAMOUS
https://phys.org/news/2023-05-insights-floral-unveil-nature-clock.html
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One root, two root, short root, long root! Root toot!
Ma et al. report that The F-box protein SHORT PRIMARY ROOT in #rice modulates primary #root #meristem activity by targeting SEUSS-LIKE protein for degradation.
https://doi.org/10.1111/jipb.13492
@wileyplantsci
#JIPB #PlantScience #DevBio #ubiquitin -
One root, two root, short root, long root! Root toot!
Ma et al. report that The F-box protein SHORT PRIMARY ROOT in #rice modulates primary #root #meristem activity by targeting SEUSS-LIKE protein for degradation.
https://doi.org/10.1111/jipb.13492
@wileyplantsci
#JIPB #PlantScience #DevBio #ubiquitin -
One root, two root, short root, long root! Root toot!
Ma et al. report that The F-box protein SHORT PRIMARY ROOT in #rice modulates primary #root #meristem activity by targeting SEUSS-LIKE protein for degradation.
https://doi.org/10.1111/jipb.13492
@wileyplantsci
#JIPB #PlantScience #DevBio #ubiquitin -
One root, two root, short root, long root! Root toot!
Ma et al. report that The F-box protein SHORT PRIMARY ROOT in #rice modulates primary #root #meristem activity by targeting SEUSS-LIKE protein for degradation.
https://doi.org/10.1111/jipb.13492
@wileyplantsci
#JIPB #PlantScience #DevBio #ubiquitin -
#Auxin-dependent regulation of cell division rates governs #Arabidopsis root #thermomorphogenesis
Marcel Quint and colleagues find a direct #temperature-sensing mechanism acting on cell proliferation in the apical #meristem to control #root growth
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#Auxin-dependent regulation of cell division rates governs #Arabidopsis root #thermomorphogenesis
Marcel Quint and colleagues find a direct #temperature-sensing mechanism acting on cell proliferation in the apical #meristem to control #root growth
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#Auxin-dependent regulation of cell division rates governs #Arabidopsis root #thermomorphogenesis
Marcel Quint and colleagues find a direct #temperature-sensing mechanism acting on cell proliferation in the apical #meristem to control #root growth
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#Auxin-dependent regulation of cell division rates governs #Arabidopsis root #thermomorphogenesis
Marcel Quint and colleagues find a direct #temperature-sensing mechanism acting on cell proliferation in the apical #meristem to control #root growth