Literature DB >> 29430656

Plant cell wall sugars: sweeteners for a bio-based economy.

Dorien Van de Wouwer1,2, Wout Boerjan1,2, Bartel Vanholme1,2.   

Abstract

Global warming and the consequent climate change is one of the major environmental challenges we are facing today. The driving force behind the rise in temperature is our fossil-based economy, which releases massive amounts of the greenhouse gas carbon dioxide into the atmosphere. In order to reduce greenhouse gas emission, we need to scale down our dependency on fossil resources, implying that we need other sources for energy and chemicals to feed our economy. Here, plants have an important role to play; by means of photosynthesis, plants capture solar energy to split water and fix carbon derived from atmospheric carbon dioxide. A significant fraction of the fixed carbon ends up as polysaccharides in the plant cell wall. Fermentable sugars derived from cell wall polysaccharides form an ideal carbon source for the production of bio-platform molecules. However, a major limiting factor in the use of plant biomass as feedstock for the bio-based economy is the complexity of the plant cell wall and its recalcitrance towards deconstruction. To facilitate the release of fermentable sugars during downstream biomass processing, the composition and structure of the cell wall can be engineered. Different strategies to reduce cell wall recalcitrance will be described in this review. The ultimate goal is to obtain a tailor-made biomass, derived from plants with a cell wall optimized for particular industrial or agricultural applications, without affecting plant growth and development.
© 2018 Scandinavian Plant Physiology Society.

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Year:  2018        PMID: 29430656     DOI: 10.1111/ppl.12705

Source DB:  PubMed          Journal:  Physiol Plant        ISSN: 0031-9317            Impact factor:   4.500


  2 in total

Review 1.  The Role of Mechanoperception in Plant Cell Wall Integrity Maintenance.

Authors:  Laura Bacete; Thorsten Hamann
Journal:  Plants (Basel)       Date:  2020-05-01

2.  CRISPR-Cas9 editing of CAFFEOYL SHIKIMATE ESTERASE 1 and 2 shows their importance and partial redundancy in lignification in Populus tremula × P. alba.

Authors:  Lisanne de Vries; Marlies Brouckaert; Alexandra Chanoca; Hoon Kim; Matthew R Regner; Vitaliy I Timokhin; Yi Sun; Barbara De Meester; Jan Van Doorsselaere; Geert Goeminne; Vincent L Chiang; Jack P Wang; John Ralph; Kris Morreel; Ruben Vanholme; Wout Boerjan
Journal:  Plant Biotechnol J       Date:  2021-08-06       Impact factor: 9.803

  2 in total

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