Top Tweets for #FlowerDevelopment
#OPR
Transcriptome reveals 44 candidate genes in Fritillaria floral bud development, spanning hormones, circadian rhythm & TFs—key for breeding.
@MaximumAcademic @aBIOTECH5 #Fritillaria #FlowerDevelopment
Details: https://t.co/k2u1qFClf7

🌍 Why it matters: this research expands our understanding of how flower size evolves beyond classic model plants, offering insight into developmental innovation in one of the most unique plant families on Earth. (8/8)
👉 https://t.co/0NmWPbivlG
#Cactus #FlowerDevelopment
#FruitRes
Overexpression of grape gene VviSOC1a in tomato disrupts flower development, causing leafy sepals and sterility, revealing its role in floral organ identity.
@HortiPlant @sci_plant #SOC1 #FlowerDevelopment
Details: https://t.co/mGAf9hXDoK

#OPR
TCP transcription factors shape floral symmetry, color & structure. This review explores their role in breeding for ornamental traits.
@MaximumAcademic @PlantPhys #TCP #FlowerDevelopment
Details: https://t.co/MBQnbwv53V

#FruitRes
Multi-omics reveals a complex miRNA & phasiRNA network regulating pink strawberry flower color. Key genetic resources for breeding ornamental varieties.
@HortiPlant @NewPhyt #Strawberry #FlowerDevelopment
Details: https://t.co/DZoJB1NSeu

#FruitRes
Multi-omics reveals a complex miRNA & phasiRNA network regulating pink strawberry flower color. Key genetic resources for breeding ornamental varieties.
@MaximumAcademic @NewPhyt #Strawberry #FlowerDevelopment
Details: https://t.co/kKPWUkXxKR

#FruitRes
Overexpression of grape gene VviSOC1a in tomato disrupts flower development, causing leafy sepals and sterility, revealing its role in floral organ identity.
@MaximumAcademic @sci_plant #SOC1 #FlowerDevelopment
Details: https://t.co/zCJ41hwKrc

#OPR
TCP transcription factors regulate floral traits and pigmentation. Review explores their roles and interactions with other gene families. 🌿
@HortiPlant @Stressed_plants @AbioticStress #FlowerDevelopment #TCPGenes
Details: https://t.co/ELtnJQp33g
#FlowerDevelopment #TCPGenes

#OPR
Lily flower bud initiation varies by cultivar. RNA-seq identifies key genes like LtFCA, validated via VIGS. Study sheds light on flowering regulation. 🌹
@HortiPlant @Stressed_plants @AbioticStress #Lilies #FlowerDevelopment
Details: https://t.co/pSzhW1Lwz2

#OPR
Lily flower bud initiation varies by cultivar. RNA-seq identifies key genes like LtFCA, validated via VIGS. Study sheds light on flowering regulation. 🌹
@HortiPlant #Lilies #FlowerDevelopment
Details: https://t.co/pSzhW1M4oA

#OPR
TCP transcription factors regulate floral traits and pigmentation. Review explores their roles and interactions with other gene families. 🌿 #FlowerDevelopment #TCPGenes
@MaximumAcademic @Stressed_plants @AbioticStress @PlantCellEnvir
Details: https://t.co/MBQnbwv53V

#OPR
Lily flower bud initiation varies by cultivar. RNA-seq identifies key genes like LtFCA, validated via VIGS. Study sheds light on flowering regulation. 🌹
@HortiPlant #Lilies #FlowerDevelopment
Details: https://t.co/pSzhW1Lwz2

Though flowers like the Hibiscus and Sunflower are widely cultivated, Bangladesh lacks sufficient research and development to improve flower yields and resist pests and diseases. #AgriculturalResearch #FlowerDevelopment
To boost the flower industry, the Bangladesh government needs to provide more support in terms of financial incentives, research, and infrastructure improvements for flower farmers. #GovernmentSupport #FlowerDevelopment
#SeedBio
Typical flower has four organ whorls. In rice spikelets, MADS-box genes act, but FQM's role in non-reproductive organs is unclear.
@PlantSciRes #FlowerDevelopment #RiceSpikelets
Details: https://t.co/etW1vtpOOb

Peach flower bud transcriptome reveals cell-type genes, guiding Rosaceae fruit tree research! #SpatiotemporalGenomics #FlowerDevelopment @OxfordJournals
Details: https://t.co/uaG52gB3eB

#SeedBio
Typical flower has four organ whorls. In rice spikelets, MADS-box genes act, but FQM's role in non-reproductive organs is unclear.
@MaximumAcademic #FlowerDevelopment #RiceSpikelets @PlantCellEnvir
Details: https://t.co/inXXTnsf32

Tomato mutant reveals TM6's crucial role in flower development, misregulating MADS-box genes. #FlowerDevelopment @OxfordJournals
Details:https://t.co/5rbV6MXXCW

🌸 Exciting News! 🌼
Don't miss the chance to meet my boss, Stefan de Folter, at ICAR2024! 🌟 His talk on hormones and flower development promises to be fascinating and educational. 🌿✨
#ICAR2024 #FlowerDevelopment #HormoneResearch
Meet Planta editor-in-chief Stefan de Folter @defolter_lab at ICAR 2024 - UC San Diego @NAASC_NA_ICAR 🌱🌊
#ICAR2024 #Arabidopsis #PlantaJournal

Just a reminder to all participants in the workshop on Molecular mechanisms controlling flowering that our special issue is open. Multidisciplinary contributions in the field are more than wellcome!
#flowerdevelopment
In collaboration with the recent Workshop on Molecular Mechanisms Controlling Flowering 2024, our Research Topic on the innovation of next-gen flower development is open for submissions!🌼
📅 20 November 2024 for Submissions
#FrontiersInPlantScience #FlowerDevelopment #WMMCF24

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