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Phylogeny in defining model plants for lignocellulosic ethanol production: a comparative study of Brachypodium distachyon, wheat, maize, and Miscanthus × giganteus leaf and stem biomass

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논문

Phylogeny in defining model plants for lignocellulosic ethanol production: a comparative study of Brachypodium distachyon, wheat, maize, and Miscanthus × giganteus leaf and stem biomass

학술지

PloS one

저자명

Meineke, Till; Manisseri, Chithra; Voigt, Christian A.

초록

<P>The production of ethanol from pretreated plant biomass during fermentation is a strategy to mitigate climate change by substituting fossil fuels. However, biomass conversion is mainly limited by the recalcitrant nature of the plant cell wall. To overcome recalcitrance, the optimization of the plant cell wall for subsequent processing is a promising approach. Based on their phylogenetic proximity to existing and emerging energy crops, model plants have been proposed to study bioenergy-related cell wall biochemistry. One example is <I>Brachypodium distachyon</I>, which has been considered as a general model plant for cell wall analysis in grasses. To test whether relative phylogenetic proximity would be sufficient to qualify as a model plant not only for cell wall composition but also for the complete process leading to bioethanol production, we compared the processing of leaf and stem biomass from the C<SUB>3</SUB> grasses <I>B. distachyon</I> and <I>Triticum aestivum</I> (wheat) with the C<SUB>4</SUB> grasses <I>Zea mays</I> (maize) and <I>Miscanthus</I> x <I>giganteus</I>, a perennial energy crop. Lambda scanning with a confocal laser-scanning microscope allowed a rapid qualitative analysis of biomass saccharification. A maximum of 108&#x2013;117 mg ethanol·g<SUP>&#x2212;1</SUP> dry biomass was yielded from thermo-chemically and enzymatically pretreated stem biomass of the tested plant species. Principal component analysis revealed that a relatively strong correlation between similarities in lignocellulosic ethanol production and phylogenetic relation was only given for stem and leaf biomass of the two tested C<SUB>4</SUB> grasses. Our results suggest that suitability of <I>B. distachyon</I> as a model plant for biomass conversion of energy crops has to be specifically tested based on applied processing parameters and biomass tissue type.</P>

발행연도

2014

발행기관

Public Library of Science

ISSN

1932-6203

9

8

페이지

pp.e103580

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논문; 2014-12-31

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