Explore tweets tagged as #plastids
Our latest paper is out in The Plant Cell! π @ThePlantCell.We identified BGH2, a suppressor of GLK transcription factors, as a key regulator of plastid homeostasis and light adaptation. Huge thanks to everyone who supported and contributed to this work!
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Integrating plastid and nuclear #DNA #phylogenies with expanded #taxon sampling, Xu et al. report major advancements in understanding the #fern genus Hymenasplenium, demonstrating polyphyly in island lineages, and more! @WileyEcolEvol #systematics #JSE
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Uncovering structural rearrangements in the plastid #genome: a visual overview. π by Cauz-Santos. @WileyPlantSci #PlantScience #angiosperms #geneloss #choroplast
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STAY-GREEN overexpression in dark-incubated leaves promotes the formation of transitional chromoplast-like plastids (Hui Zheng , Salvador Torres-Montilla , Xingqi Huang , Manuel RodrΓguez-ConcepciΓ³n , Shan Lu) @Hui_Zh2333 @NJU1902 @ManuelRocon @salvillas
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#aBIOTECH_Online_Firstπππ.Stable plastid transformation in kiwifruit (Actinidia chinensis).
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The Cpn20βmediated plastid integrity is essential for growth and female gametophyte development in Arabidopsis @NewPhyt.
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BAI1: A Plant Transcription Factor Governing Nuclear and Plastid Gene Expression #spotlight #MolecularPlant
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Plastids are important for photosynthesis and adaptation in algae. Tang et al. sequenced the plastid genome of Pyropia katadae and compared it with 12 others from the Bangiales. Discover what they learned about the evolution of these genomes in #RedAlgae:
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TCP10-GLK1 module integrates light and plastid retrograde signaling during Arabidopsis de-etiolation. Alem et al. @IAL_CONICET @Antonela_Alem @iviolarocch @ivana_viola_rocchiccioli. π
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