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Natural Variation in Potassium Deficiency Responses Among Arabidopsis thaliana Accessions
Nana Sugimura and others
Plant and Cell Physiology, pcaf041, https://doi.org/10.1093/pcp/pcaf041
Published: 25 April 2025
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Mitochondrial Proteases and Their Roles in Mitophagy in Plants, Animals, and Yeast: Mitochondrial Proteases and Mitophagy
Kacper Ludwig and Małgorzata Heidorn-Czarna
Plant and Cell Physiology, pcaf038, https://doi.org/10.1093/pcp/pcaf038
Published: 23 April 2025
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Global Identification of AGO3–RNA Interactions Reveals Targets of Small RNA–mediated Gene Regulation in Chlamydomonas reinhardtii
Suzuna Murakami and others
Plant and Cell Physiology, pcaf040, https://doi.org/10.1093/pcp/pcaf040
Published: 17 April 2025
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Editing multiple genes in Physalis pubescens provides valuable lessons and implications for creating new germplasm and varieties of Physalis crops
Qianqian Liu and others
Plant and Cell Physiology, pcaf036, https://doi.org/10.1093/pcp/pcaf036
Published: 03 April 2025
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Canonical sterol synthesis pathway in vertebrates and plants. Upstream reac...
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Published: 03 April 2025
Figure 1.
Canonical sterol synthesis pathway in vertebrates and plants. Upstream reactions are highly conserved in both pathways. Isoprenoid precursors are produced by the mevalonate (MVA) pathway. Additionally, the methylerythritol phosphate (MEP) contributes to the isoprenoid precursor pool in photosyntheti
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Ecology and evolution: genetic and molecular dynamics of plants in nature
Takashi Tsuchimatsu and others
Plant and Cell Physiology, pcaf035, https://doi.org/10.1093/pcp/pcaf035
Published: 03 April 2025
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The Evolutionary Journey of Sterol Synthesis Pathways in Eukaryotes
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Mar Ferreira-Guerra and others
Plant and Cell Physiology, pcaf016, https://doi.org/10.1093/pcp/pcaf016
Published: 03 April 2025
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Phylogenetic analysis of C24R sterol enzymes. Phylogenetic tree for C24R en...
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Published: 03 April 2025
Figure 2.
Phylogenetic analysis of C24R sterol enzymes. Phylogenetic tree for C24R enzymes. Sequences were aligned with Muscle in MEGA 11 ( Tamura et al. 2021 ) ( Supplementary Fig S5 ). C24R alignment was manually inspected and trimmed to eliminate gaps. Phylogenetic analysis was performed using the maximum
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To Be Prominent: Epigenetic Regulation of Awn Development in Barley
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Xiujuan Yang
Plant and Cell Physiology, pcaf037, https://doi.org/10.1093/pcp/pcaf037
Published: 03 April 2025
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Phylogenetic analysis of C22D sterol enzymes. Phylogenetic tree for C22D en...
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Published: 03 April 2025
Figure 3.
Phylogenetic analysis of C22D sterol enzymes. Phylogenetic tree for C22D enzymes. Sequences were aligned with Muscle in MEGA 11 ( Tamura et al. 2021 ) ( Supplementary Fig S6 ). Phylogenetic analysis was performed using the maximum likelihood method, LG + I + G4 model with 1000 replicates for the boo
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Divergent control of seed germination by cytokinins in weedy broomrapes and witchweeds
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Guillaume Brun and others
Plant and Cell Physiology, pcaf032, https://doi.org/10.1093/pcp/pcaf032
Published: 24 March 2025
Journal Article
Extracellular pH, cell length and cell differentiation do not firmly correlate across Arabidopsis root tissues
H. Nicholay Diaz-Ardila and Christian S Hardtke
Plant and Cell Physiology, pcaf031, https://doi.org/10.1093/pcp/pcaf031
Published: 24 March 2025
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Simultaneous assessment of pHe, cell elongation, and cell differ...
Published: 24 March 2025
Figure 1.
Simultaneous assessment of pH e , cell elongation, and cell differentiation in different tissues of Arabidopsis root tips. (a) Confocal live imaging of PM-Apo-acidin4 and IYO-GFP in the double-reporter line 35S::PM-Apo-acidin4 × 35S::IYO-GFP in Col-0, 7-day-old seedlings. (b–d) Cross-sectional v
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Salt-mediated inhibition of hypocotyl elongation is less pronounced in the ...
Published: 19 March 2025
Figure 1.
Salt-mediated inhibition of hypocotyl elongation is less pronounced in the phyB mutant. (a) Seedling phenotypes of the Col-0 WT and the phyB-69 mutant grown in 1/2 MS medium with varying concentrations of salt in the dark for 4 days. Bars, 2 mm. (b) Hypocotyl length of the seedlings shown in (a)
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PIF3 acts downstream of phyB. (a) Seedling phenotypes of Col-0, pif3, p...
Published: 19 March 2025
Figure 3.
PIF3 acts downstream of phyB. (a) Seedling phenotypes of Col-0, pif3, phyB-9 , and pif3 phyB-9 under 150 mM NaCl treatment in the dark for 4 days. Bars, 2 mm. (b) Hypocotyl length of the seedlings shown in (a). (c) Seedling phenotypes with 150 mM NaCl treatment under low-intensity red light (10 μ
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NaCl regulates phyB accumulation in a SOS2-dependent manner. (a) Seedling p...
Published: 19 March 2025
Figure 4.
NaCl regulates phyB accumulation in a SOS2-dependent manner. (a) Seedling phenotypes of Col-0, sos2-2, phyB-69 , and sos2-2 phyB-69 with 150 mM NaCl treatment in the dark for 4 days. Bars, 2 mm. (b) Relative hypocotyl length of the seedlings as shown in (A). Letters indicate significant differenc
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Phosphorylation modification of phyB in response to salt stress. (a) Seedli...
Published: 19 March 2025
Figure 6.
Phosphorylation modification of phyB in response to salt stress. (a) Seedling phenotypes of Col-0, WT ( 35S:phyB-GFP/phyB-9 ), S86A ( 35S:phyB S86A -YFP/phyB-9 ), and S86D ( 35S:phyB S86D -YFP/phyB-9 ) with 150 mM NaCl treatment in the dark or under low-intensity red light (10 μmol m –2 s –1 ) for
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NaCl promotes phyB NB formation in the dark. (a) GFP fluorescence of phyB-G...
Published: 19 March 2025
Figure 5.
NaCl promotes phyB NB formation in the dark. (a) GFP fluorescence of phyB-GFP. The 35S:phyB-GFP/phyB-9 seedlings were grown in darkness for 4 days and subsequently treated with 150 mM NaCl in darkness or/and exposed to red light (30 μmol m –2 s –1 ) for 3 h. Representative pictures are shown. Bar
Journal Article
The phytochrome B signaling regulates salt-mediated seedling growth in the dark
Peipei Qi and others
Plant and Cell Physiology, pcaf029, https://doi.org/10.1093/pcp/pcaf029
Published: 19 March 2025
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Overexpressing PIF3 reduces salt-mediated inhibition of hypocotyl ...
Published: 19 March 2025
Figure 2.
Overexpressing PIF3 reduces salt-mediated inhibition of hypocotyl elongation. (a) Seedling phenotypes of the Col-0 WT and the 35S:PIF1-GFP, 35S:PIF3-GFP, 35S:PIF4-GFP , and 35S:PIF5-GFP transgenic lines grown in 1/2 MS medium with 150 mM NaCl in the dark for 4 days. Bars, 2 mm. (b) Hypocotyl le
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