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Leonard Blaschek

Showing results (1-10 of 11) with videos related to

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Frontiers in Plant Science|October 18, 2021
Phenoloxidases in Plants-How Structural Diversity Enables Functional SpecificityLeonard Blaschek, Edouard Pesquet
Journal of Agricultural and Food Chemistry|June 4, 2024
Functional Complexity on a Cellular Scale: Why <i>In Situ</i> Analyses Are Indispensable for Our Understanding of Lignified TissuesLeonard Blaschek, Henrik Serk, Edouard Pesquet
Chemsuschem|July 22, 2020
Importance of Lignin Coniferaldehyde Residues for Plant Properties and Sustainable UsesMasanobu Yamamoto, Leonard Blaschek, Elena Subbotina, et al.
The Plant Cell|November 30, 2022
Different combinations of laccase paralogs nonredundantly control the amount and composition of lignin in specific cell types and cell wall layers in ArabidopsisLeonard Blaschek, Emiko Murozuka, Henrik Serk, et al.
The Journal of Biological Chemistry|July 23, 2025
Proximity labeling techniques for protein-protein interaction mapping in plantsBeyza Özmen, Leonard Blaschek, Michael Ogden, et al.
Molecular Plant|December 24, 2022
Cellulose synthesis in land plantsGustav B Pedersen, Leonard Blaschek, Kristian E H Frandsen, et al.
Frontiers in Plant Science|March 21, 2020
Cellular and Genetic Regulation of Coniferaldehyde Incorporation in Lignin of Herbaceous and Woody Plants by Quantitative Wiesner StainingLeonard Blaschek, Antoine Champagne, Charilaos Dimotakis, et al.
Methods in Molecular Biology (Clifton, N.J.)|October 28, 2023
Bulk and In Situ Quantification of Coniferaldehyde Residues in LigninEdouard Pesquet, Leonard Blaschek, Junko Takahashi, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|March 24, 2025
Pupylation-Based Proximity Labeling Unravels a Comprehensive Protein and Phosphoprotein Interactome of the Arabidopsis TOR ComplexShuai Zheng, Leonard Blaschek, Delphine Pottier, et al.
The Plant Cell|October 10, 2022
Plant biomechanics and resilience to environmental changes are controlled by specific lignin chemistries in each vascular cell type and morphotypeDelphine Ménard, Leonard Blaschek, Konstantin Kriechbaum, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Frontiers in Plant Science|October 18, 2021
Phenoloxidases in Plants-How Structural Diversity Enables Functional SpecificityLeonard Blaschek, Edouard Pesquet
Journal of Agricultural and Food Chemistry|June 4, 2024
Functional Complexity on a Cellular Scale: Why <i>In Situ</i> Analyses Are Indispensable for Our Understanding of Lignified TissuesLeonard Blaschek, Henrik Serk, Edouard Pesquet
Chemsuschem|July 22, 2020
Importance of Lignin Coniferaldehyde Residues for Plant Properties and Sustainable UsesMasanobu Yamamoto, Leonard Blaschek, Elena Subbotina, et al.
The Plant Cell|November 30, 2022
Different combinations of laccase paralogs nonredundantly control the amount and composition of lignin in specific cell types and cell wall layers in ArabidopsisLeonard Blaschek, Emiko Murozuka, Henrik Serk, et al.
The Journal of Biological Chemistry|July 23, 2025
Proximity labeling techniques for protein-protein interaction mapping in plantsBeyza Özmen, Leonard Blaschek, Michael Ogden, et al.
Molecular Plant|December 24, 2022
Cellulose synthesis in land plantsGustav B Pedersen, Leonard Blaschek, Kristian E H Frandsen, et al.
Frontiers in Plant Science|March 21, 2020
Cellular and Genetic Regulation of Coniferaldehyde Incorporation in Lignin of Herbaceous and Woody Plants by Quantitative Wiesner StainingLeonard Blaschek, Antoine Champagne, Charilaos Dimotakis, et al.
Methods in Molecular Biology (Clifton, N.J.)|October 28, 2023
Bulk and In Situ Quantification of Coniferaldehyde Residues in LigninEdouard Pesquet, Leonard Blaschek, Junko Takahashi, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|March 24, 2025
Pupylation-Based Proximity Labeling Unravels a Comprehensive Protein and Phosphoprotein Interactome of the Arabidopsis TOR ComplexShuai Zheng, Leonard Blaschek, Delphine Pottier, et al.
The Plant Cell|October 10, 2022
Plant biomechanics and resilience to environmental changes are controlled by specific lignin chemistries in each vascular cell type and morphotypeDelphine Ménard, Leonard Blaschek, Konstantin Kriechbaum, et al.
Pageof 2