Your browser doesn't support javascript.
loading
Genetic complexity of miscanthus cell wall composition and biomass quality for biofuels.
van der Weijde, Tim; Kamei, Claire L Alvim; Severing, Edouard I; Torres, Andres F; Gomez, Leonardo D; Dolstra, Oene; Maliepaard, Chris A; McQueen-Mason, Simon J; Visser, Richard G F; Trindade, Luisa M.
  • van der Weijde T; Wageningen UR Plant Breeding, Wageningen University and Research, PO Box 386, 6700 AJ, Wageningen, Netherlands.
  • Kamei CLA; Graduate School Experimental Plant Sciences, Wageningen University, 6708 PB, Wageningen, Netherlands.
  • Severing EI; Present address: Research, Barenbrug Holland B.V, Duitsekampweg 60, 6748 ZB, Wolfheze, Netherlands.
  • Torres AF; Wageningen UR Plant Breeding, Wageningen University and Research, PO Box 386, 6700 AJ, Wageningen, Netherlands.
  • Gomez LD; Present address: Department of Comparative Development and Genetics, Max Planck Institute for Plant Breeding Research, Carl-von-Linné-Weg 10, 50829, Cologne, Germany.
  • Dolstra O; Wageningen UR Plant Breeding, Wageningen University and Research, PO Box 386, 6700 AJ, Wageningen, Netherlands.
  • Maliepaard CA; Present address: Department of Plant Developmental Biology, Max Planck Institute for Plant Breeding Research, Carl-von-Linné-Weg 10, 50829, Cologne, Germany.
  • McQueen-Mason SJ; Wageningen UR Plant Breeding, Wageningen University and Research, PO Box 386, 6700 AJ, Wageningen, Netherlands.
  • Visser RGF; Center for Novel Agricultural Products, University of York, YO10 5 DD, York, UK.
  • Trindade LM; Wageningen UR Plant Breeding, Wageningen University and Research, PO Box 386, 6700 AJ, Wageningen, Netherlands.
BMC Genomics ; 18(1): 406, 2017 05 25.
Article en En | MEDLINE | ID: mdl-28545405
ABSTRACT

BACKGROUND:

Miscanthus sinensis is a high yielding perennial grass species with great potential as a bioenergy feedstock. One of the challenges that currently impedes commercial cellulosic biofuel production is the technical difficulty to efficiently convert lignocellulosic biomass into biofuel. The development of feedstocks with better biomass quality will improve conversion efficiency and the sustainability of the value-chain. Progress in the genetic improvement of biomass quality may be substantially expedited by the development of genetic markers associated to quality traits, which can be used in a marker-assisted selection program.

RESULTS:

To this end, a mapping population was developed by crossing two parents of contrasting cell wall composition. The performance of 182 F1 offspring individuals along with the parents was evaluated in a field trial with a randomized block design with three replicates. Plants were phenotyped for cell wall composition and conversion efficiency characters in the second and third growth season after establishment. A new SNP-based genetic map for M. sinensis was built using a genotyping-by-sequencing (GBS) approach, which resulted in 464 short-sequence uniparental markers that formed 16 linkage groups in the male map and 17 linkage groups in the female map. A total of 86 QTLs for a variety of biomass quality characteristics were identified, 20 of which were detected in both growth seasons. Twenty QTLs were directly associated to different conversion efficiency characters. Marker sequences were aligned to the sorghum reference genome to facilitate cross-species comparisons. Analyses revealed that for some traits previously identified QTLs in sorghum occurred in homologous regions on the same chromosome.

CONCLUSION:

In this work we report for the first time the genetic mapping of cell wall composition and bioconversion traits in the bioenergy crop miscanthus. These results are a first step towards the development of marker-assisted selection programs in miscanthus to improve biomass quality and facilitate its use as feedstock for biofuel production.
Asunto(s)
Palabras clave

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Pared Celular / Biomasa / Biocombustibles / Poaceae Tipo de estudio: Clinical_trials / Prognostic_studies Idioma: En Año: 2017 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Pared Celular / Biomasa / Biocombustibles / Poaceae Tipo de estudio: Clinical_trials / Prognostic_studies Idioma: En Año: 2017 Tipo del documento: Article