Literature DB >> 1328129

Effect of alkaline hydrogen peroxide treatment on cell wall composition and digestion kinetics of sugarcane residues and wheat straw.

M Amjed1, H G Jung, J D Donker.   

Abstract

Our objective was to characterize changes in cell wall composition and digestibility of sugarcane bagasse, pith from bagasse, and wheat straw after treatment with alkaline hydrogen peroxide (AHP). The AHP treatment solution contained 1% H2O2 (wt/vol) maintained at pH 11.5 with NaOH. The H2O2 in solution amounted to 25% of the quantity of substrate treated. After treatment, residues were washed and dried. Detergent fiber composition, total fiber components (neutral sugars, uronic acids, Klason lignin, and noncore lignin phenolic acids), IVDMD, in vitro digestion kinetics of NDF, and monosaccharide digestibilities (24 and 120 h) were determined. Total fiber (TF) and NDF concentrations of all treatment residues were increased (P less than .05) over control substrates by AHP because of greater losses of cell solubles than of cell wall constituents. Hemicellulose:cellulose ratio in NDF of treatment residues was decreased (P less than .05) by AHP for all substrates, but the neutral sugar composition of TF did not agree with this preferential loss of hemicellulose components. Klason lignin, ADL, and esterified noncore lignin, especially ferulic acid, were reduced (P less than .05) by AHP, whereas etherified noncore lignin composition was unchanged. Treatment increased (P less than .05) IVDMD, extent of NDF digestion, and monosaccharide digestibilities of all crop residues. The rate of NDF digestion was increased (P less than .05) for the sugarcane residues but not for wheat straw. Alkaline hydrogen peroxide improved crop residue digestibility, probably as a result of the removal of core and noncore lignin fractions.

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Year:  1992        PMID: 1328129     DOI: 10.2527/1992.7092877x

Source DB:  PubMed          Journal:  J Anim Sci        ISSN: 0021-8812            Impact factor:   3.159


  3 in total

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Authors:  Juvenal Kanani; Dirk Philipp; Kenneth P Coffey; Elizabeth B Kegley; Charles P West; Shane Gadberry; John Jennings; Ashley N Young; Robert T Rhein
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Authors:  Germán D Mendoza; Octavio Loera-Corral; Fernando X Plata-Pérez; Pedro A Hernández-García; Mónica Ramírez-Mella
Journal:  ScientificWorldJournal       Date:  2014-10-14

3.  Lignocellulose binding of a Cel5A-RtCBM11 chimera with enhanced β-glucanase activity monitored by electron paramagnetic resonance.

Authors:  Raquel Fonseca-Maldonado; Luana P Meleiro; Luís F S Mendes; Luana F Alves; Sibeli Carli; Lucas D Morero; Luis G M Basso; Antonio J Costa-Filho; Richard J Ward
Journal:  Biotechnol Biofuels       Date:  2017-11-14       Impact factor: 6.040

  3 in total

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