Guard cell K+ channels of Kalanchoë follow the diel cycle of crassulacean acid metabolism. [PDF]
Lefoulon C, Blatt MR.
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Facultative crassulacean acid metabolism in a C3-C4 intermediate. [PDF]
Winter K +4 more
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Baur B, Fischer K, Winter K, Dietz K-J. cDNA sequence of a protein kinase from the inducible crassulacean acid metabolism plant Mesembryanthemum crystallinum L., encoding a SNF-1 homolog. Plant Physiol.
Dietz, Karl-Josef +3 more
core
Water-saving guard cell-mesophyll cell model captures temporally differential enzymatic and transporter activities during C3-crassulacean acid metabolism transition. [PDF]
Sarkar D, Kundu S.
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New perspectives on crassulacean acid metabolism biology. [PDF]
Hultine KR, Cushman JC, Williams DG.
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Phosphorolytic degradation of leaf starch via plastidic α-glucan phosphorylase leads to optimized plant growth and water use efficiency over the diel phases of Crassulacean acid metabolism. [PDF]
Ceusters N +10 more
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Engineering Crassulacean Acid Metabolism in C<sub>3</sub> and C<sub>4</sub> Plants. [PDF]
Yang X +4 more
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Light-responsive expression atlas reveals the effects of light quality and intensity in Kalanchoë fedtschenkoi, a plant with crassulacean acid metabolism. [PDF]
Zhang J +17 more
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Undervalued potential of crassulacean acid metabolism for current and future agricultural production. [PDF]
Davis SC +7 more
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CRISPR/Cas9-mediated targeted mutagenesis for functional genomics research of crassulacean acid metabolism plants. [PDF]
Liu D +8 more
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