نتایج جستجو برای: lignins

تعداد نتایج: 729  

Journal: :Chemical communications 2014
Yuki Tobimatsu Dorien Van de Wouwer Eric Allen Robert Kumpf Bartel Vanholme Wout Boerjan John Ralph

Bioorthogonal click chemistry was commissioned to visualize the plant cell wall lignification process in vivo. This approach uses chemical reporter-tagged monolignol mimics that can be metabolically incorporated into lignins and subsequently derivatized via copper-assisted or copper-free click reactions.

2018
Qingquan Liu Le Luo Luqing Zheng

Lignin is one of the main components of plant cell wall and it is a natural phenolic polymer with high molecular weight, complex composition and structure. Lignin biosynthesis extensively contributes to plant growth, tissue/organ development, lodging resistance and the responses to a variety of biotic and abiotic stresses. In the present review, we systematically introduce the biosynthesis of l...

2014
Fenfen Guo Wenjing Shi Wan Sun Xuezhi Li Feifei Wang Jian Zhao Yinbo Qu

BACKGROUND Non-productive cellulase adsorption onto lignin has always been deemed to negatively affect the enzymatic hydrolysis of lignocellulosic feedstocks. Therefore, understanding enzyme-lignin interactions is essential for the development of enzyme mixtures, the processes of lignocellulose hydrolysis, and the genetic modification of lignocellulosic biomass and enzymes. In this work, we exa...

2014
Elena Fernández-Fueyo Francisco J Ruiz-Dueñas Angel T Martínez

BACKGROUND Ligninolytic peroxidases are divided into three families: manganese peroxidases (MnPs), lignin peroxidases (LiPs), and versatile peroxidases (VPs). The latter two are able to degrade intact lignins, as shown using nonphenolic lignin model compounds, with VP oxidizing the widest range of recalcitrant substrates. One of the main limiting issues for the use of these two enzymes in ligno...

2012
Muyang Li Cliff Foster Shantanu Kelkar Yunqiao Pu Daniel Holmes Arthur Ragauskas Christopher M Saffron David B Hodge

BACKGROUND For cellulosic biofuels processes, suitable characterization of the lignin remaining within the cell wall and correlation of quantified properties of lignin to cell wall polysaccharide enzymatic deconstruction is underrepresented in the literature. This is particularly true for grasses which represent a number of promising bioenergy feedstocks where quantification of grass lignins is...

Journal: :Canadian Journal of Chemistry 1954

Journal: :Nordic Pulp & Paper Research Journal 1989

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