Poplar genetic engineering: promoting desirable wood characteristics and pest resistance

2013 | journal article. A publication with affiliation to the University of Göttingen.

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​Poplar genetic engineering: promoting desirable wood characteristics and pest resistance​
Polle, A. ; Janz, D. ; Teichmann, T.   & Lipka, V. ​ (2013) 
Applied Microbiology and Biotechnology97(13) pp. 5669​-5679​.​ DOI: https://doi.org/10.1007/s00253-013-4940-8 

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Authors
Polle, Andrea ; Janz, Dennis ; Teichmann, Thomas ; Lipka, Volker 
Abstract
Worldwide biomass demand for industrial applications, especially for production of biofuels, is increasing. Extended cultivation of fast growing trees such as poplars may contribute to satisfy the need for renewable resources. However, lignin, which constitutes about 20–30 % of woody biomass, renders poplar wood recalcitrant to saccharification. Genetic engineering of the enzymes of the lignification pathway has resulted in drastic decreases in lignin and greatly improved the carbohydrate yield for ethanol fermentation. While uncovering key enzymes for lignification facilitated rapid biotechnological progress, knowledge on field performance of low-lignin poplars is still lagging behind. The major biotic damage is caused by poplar rust fungi (Melampsora larici-populina), whose defense responses involve lignification and production of phenolic compounds. Therefore, manipulation of the phenylpropanoid pathway may be critical and should be tightly linked with new strategies for improved poplar rust tolerance. Emerging novel concepts for wood improvement are discussed.
Issue Date
2013
Journal
Applied Microbiology and Biotechnology 
Organization
Fakultät für Forstwissenschaften und Waldökologie ; Büsgen-Institut ; Abteilung Forstbotanik und Baumphysiologie 
ISSN
0175-7598
Language
English

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