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Lignin, extractives and structural carbohydrate characteristics of Thinopyrum intermedium biomass reveal additional valorization opportunities for dual-crop utilization

  • Hannah Dräger
  • , Justin Mobley
  • , Poorya Kamali
  • , Masoumeh Dorrani
  • , Bert Lynn
  • , Lee DeHaan
  • , Rachel R. Schendel

Producción científica: Articlerevisión exhaustiva

2 Citas (Scopus)

Resumen

BACKGROUND: Thinopyrum intermedium (Host) Barkworth & D.R. Dewey, or intermediate wheat grass (IWG), is being developed as the first widely-available perennial grain candidate. However, because the crop is still in development, grain yields are lower than those of traditional cereals. Utilization of its non-grain biomass (e.g. for biofuel production and as a source of fine chemicals) would increase the economic value of its cultivation. The present study provides a structural characterization of the lignin and cell wall carbohydrates in IWG biomass and qualitative profiling of biomass extractives and compares them to those of annual wheat (Triticum aestivum) biomass grown in the same location and growing season. RESULTS: The monosaccharide composition and ester-linked phenolic acid contents of vegetative biomass material from annual wheat and IWG were similar. IWG vegetative biomass is rich in feruloylated arabinoxylans (AX) with a very low substitution rate, whereas the AX from IWG bran have a slightly higher substitution rate. The structure of IWG lignin was investigated using both the quantitative derivatization followed by reductive cleavage method and 2D-NMR analysis, revealing an H:G:S lignin that incorporates tricin and is acylated with coumaric acid and smaller amounts of ferulates. IWG and wheat extractives contained fatty acids, various free phenolic compounds (tricin, monolignols and phenolic acids), phenolic conjugates and phytosterols. CONCLUSION: The present study provides firm support for the further exploration of T. intermedium biomass as a carbohydrate feedstock (e.g, abundant in lightly substituted AX and cellulose polymers) for biofuel production and source of high-value fine chemicals, such as tricin.

Idioma originalEnglish
Páginas (desde-hasta)9451-9461
Número de páginas11
PublicaciónJournal of the Science of Food and Agriculture
Volumen104
N.º15
DOI
EstadoPublished - dic 2024

Nota bibliográfica

Publisher Copyright:
© 2024 Society of Chemical Industry.

Financiación

We thank Dr. Yen‐Chang Tseng and Glenna Joyce for their laboratory assistance. This work was financially supported by the National Institute of Food and Agriculture, US Department of Agriculture, Hatch Program project KY007112 under accession #1021937.

FinanciadoresNúmero del financiador
US Department of Agriculture National Institute of Food and Agriculture, Agriculture and Food Research Initiative
U.S. Department of AgricultureKY007112, 1021937
U.S. Department of Agriculture

    ASJC Scopus subject areas

    • Biotechnology
    • Food Science
    • Agronomy and Crop Science
    • Nutrition and Dietetics

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