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Disrupting Flavone Synthase II Alters Lignin and Improves Biomass Digestibility1[OPEN]
- P. Lam, Y. Tobimatsu, Clive Lo
- Chemistry, MedicinePlant Physiology
- 6 April 2017
TLDR
Characterization of Jatropha curcas lignins
- M. Yamamura, K. Akashi, T. Umezawa
- Biology
- 25 June 2012
TLDR
Regulation of CONIFERALDEHYDE 5-HYDROXYLASE expression to modulate cell wall lignin structure in rice
- Yuri Takeda, Taichi Koshiba, T. Umezawa
- BiologyPlanta
- 18 April 2017
TLDR
Downregulation of p‐COUMAROYL ESTER 3‐HYDROXYLASE in rice leads to altered cell wall structures and improves biomass saccharification
- Yuri Takeda, Y. Tobimatsu, T. Umezawa
- BiologyThe Plant journal : for cell and molecular…
- 10 July 2018
TLDR
A comparative study of the biomass properties of Erianthus and sugarcane: lignocellulose structure, alkaline delignification rate, and enzymatic saccharification efficiency
- T. Miyamoto, M. Yamamura, T. Umezawa
- Medicine, ChemistryBioscience, biotechnology, and biochemistry
- 20 March 2018
TLDR
Comparative analysis of lignin chemical structures of sugarcane bagasse pretreated by alkaline, hydrothermal, and dilute sulfuric acid methods
- T. Miyamoto, Asako Mihashi, T. Umezawa
- ChemistryIndustrial Crops and Products
- 1 October 2018
Lignin Metabolic Engineering in Grasses for Primary Lignin Valorization
Lignocellulose biomass is indispensable for establishing sustainable societies. Trees and large-sized grasses are the major sources of lignocellulose biomass. Moreover, large-sized grasses greatly…
NMR studies on lignocellulose deconstructions in the digestive system of the lower termite Coptotermes formosanus Shiraki
- D. Tarmadi, Y. Tobimatsu, T. Yoshimura
- ChemistryScientific Reports
- 22 January 2018
TLDR
Comparative evaluations of lignocellulose reactivity and usability in transgenic rice plants with altered lignin composition
- Yuri Takeda, Y. Tobimatsu, M. Yamamura, T. Takano, M. Sakamoto, T. Umezawa
- ChemistryJournal of Wood Science
- 13 February 2019
The aromatic composition of lignins is considered an important trait that affects the physico-chemical properties of lignocellulosic biomass. However, our knowledge of the relationship between lignin…
OsCAldOMT1 is a bifunctional O-methyltransferase involved in the biosynthesis of tricin-lignins in rice cell walls
- P. Lam, Y. Tobimatsu, T. Umezawa
- BiologyScientific Reports
- 12 August 2019
TLDR
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