1.
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Papers
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Contributions of lignification, tissue arrangement patterns, and cross sectional area to whole stem mechanical properties in Arabidopsis thaliana
(Collaboration)
2024/09
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2.
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Papers
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Mechanical regulation in inflorescence stem development
(Single)
2024/03
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3.
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Papers
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Contribution of vasculature to stem integrity in Arabidopsis thaliana.
(Collaboration)
2023/02
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4.
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Papers
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Tissue-targeted inorganic pyrophosphate hydrolysis in a fugu5 mutant reveals that excess inorganic pyrophosphate triggers developmental defects in a cell-autonomous manner
(Collaboration)
2022/08
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5.
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Papers
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An auxin signaling network translates low-sugar-state input into compensated cell enlargement in the fugu5 cotyledon.
(Collaboration)
2021/08
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6.
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Papers
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How Mechanical Forces Shape Plant Organs.
(Collaboration)
2021/02
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7.
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Papers
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Stem integrity in Arabidopsis thaliana requires a load-bearing epidermis.
(Collaboration)
2021/02
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8.
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Papers
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Excess Pyrophosphate within Guard Cells Delays Stomatal Closure.
(Collaboration)
2019/04
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9.
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Papers
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Pyrophosphate inhibits gluconeogenesis by restricting UDP-glucose formation in vivo.
(Collaboration)
2018/10
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10.
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Papers
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Biochemical, Structural and Physiological Characteristics of Vacuolar H+-Pyrophosphatase.
(Collaboration)
2018/07
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11.
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Papers
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Compensated Cell Enlargement in fugu5 is Specifically Triggered by Lowered Sucrose Production from Seed Storage Lipids.
(Collaboration)
2017/04
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12.
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Papers
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Contribution of PPi-Hydrolyzing Function of Vacuolar H(+)-Pyrophosphatase in Vegetative Growth of Arabidopsis: Evidenced by Expression of Uncoupling Mutated Enzymes.
(Collaboration)
2016
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13.
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Papers
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Lack of H(+)-pyrophosphatase Prompts Developmental Damage in Arabidopsis Leaves on Ammonia-Free Culture Medium.
(Collaboration)
2016
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14.
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Papers
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Identification of the critical residues for the function of vacuolar H⁺-pyrophosphatase by mutational analysis based on the 3D structure.
(Collaboration)
2014/12
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15.
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Papers
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Dynamics of vacuoles and H+-pyrophosphatase visualized by monomeric green fluorescent protein in Arabidopsis: artifactual bulbs and native intravacuolar spherical structures.
(Collaboration)
2014/08
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16.
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Papers
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Enhanced cell expansion in a KRP2 overexpressor is mediated by increased V-ATPase activity.
(Collaboration)
2013/12
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17.
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Papers
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Class III compensation, represented by KRP2 overexpression, depends on V-ATPase activity in proliferative cells.
(Collaboration)
2013/11
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5 display
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All display(17)
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