Literature DB >> 21444820

Lignin content in natural Populus variants affects sugar release.

Michael H Studer1, Jaclyn D DeMartini, Mark F Davis, Robert W Sykes, Brian Davison, Martin Keller, Gerald A Tuskan, Charles E Wyman.   

Abstract

The primary obstacle to producing renewable fuels from lignocellulosic biomass is a plant's recalcitrance to releasing sugars bound in the cell wall. From a sample set of wood cores representing 1,100 individual undomesticated Populus trichocarpa trees, 47 extreme phenotypes were selected across measured lignin content and ratio of syringyl and guaiacyl units (S/G ratio). This subset was tested for total sugar release through enzymatic hydrolysis alone as well as through combined hot-water pretreatment and enzymatic hydrolysis using a high-throughput screening method. The total amount of glucan and xylan released varied widely among samples, with total sugar yields of up to 92% of the theoretical maximum. A strong negative correlation between sugar release and lignin content was only found for pretreated samples with an S/G ratio < 2.0. For higher S/G ratios, sugar release was generally higher, and the negative influence of lignin was less pronounced. When examined separately, only glucose release was correlated with lignin content and S/G ratio in this manner, whereas xylose release depended on the S/G ratio alone. For enzymatic hydrolysis without pretreatment, sugar release increased significantly with decreasing lignin content below 20%, irrespective of the S/G ratio. Furthermore, certain samples featuring average lignin content and S/G ratios exhibited exceptional sugar release. These facts suggest that factors beyond lignin and S/G ratio influence recalcitrance to sugar release and point to a critical need for deeper understanding of cell-wall structure before plants can be rationally engineered for reduced recalcitrance and efficient biofuels production.

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Year:  2011        PMID: 21444820      PMCID: PMC3076829          DOI: 10.1073/pnas.1009252108

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  29 in total

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Authors:  Brian H Davison; Sadie R Drescher; Gerald A Tuskan; Mark F Davis; Nhuan P Nghiem
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6.  Differential detection of genetic Loci underlying stem and root lignin content in Populus.

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Review 8.  Lignin biosynthesis.

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5.  Microbiology: Break down the walls.

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Review 7.  Redesigning plant cell walls for the biomass-based bioeconomy.

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8.  High-throughput Screening of Recalcitrance Variations in Lignocellulosic Biomass: Total Lignin, Lignin Monomers, and Enzymatic Sugar Release.

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