4.5 Article

Grain composition of Virginia winter barley and implications for use in feed, food, and biofuels production

Journal

JOURNAL OF CEREAL SCIENCE
Volume 51, Issue 1, Pages 41-49

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jcs.2009.09.004

Keywords

Barley; Hulless barley; Protein; Starch; Beta-glucan; Grain quality; Ethanol

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Grain compositional components impacting barley (Hordeum vulgare L) use in food, feed and fuel products, must be combined with improved agronomic traits to produce a commercially viable barley cultivar. Little current information is available on grain composition and variability among winter barley genotypes. This study was conducted to determine the variability among modern hulled and hulless winter barley genotypes in grain composition. Barley types varied significantly in grain and kernel weight, starch, beta-glucan, oil and ash content, but not in protein concentration. Hulless barley had significantly higher grain test weight and starch concentration than hulled and malting types, and significantly higher beta-glucan than malting barley. Hulless barley had significantly lower kernel weights, oil, and ash concentrations than hulled and malting types. Higher starch and lower fiber and ash in grain of hulless barley versus hulled feed or malting type barley are characteristics that increase hulless barley desirability. Selection for high starch concentration among all barley types is feasible and will facilitate development of barley cultivars better suited for use in feed, malt, and ethanol production. (c) 2009 Elsevier Ltd. All rights reserved.

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