A review on biomass production from C4 grasses: yield and quality for end-use.

Ashraf Tubeileh, Timothy J Rennie, Michael J Goss

Journal: Current opinion in plant biology 2017;31():172-80

PMID: 27258573

Abstract

With a dry biomass production exceeding 40Mgha(-1) in many environments, Miscanthus spp. is the most productive perennial C4 grass species thanks to five advantages over North American prairie tallgrasses. However, miscanthus has a slower nutrient remobilization system, resulting in higher nutrient concentrations at harvest. Perennial C4 grasses benefit from soil microbial associations, reducing their nutrient needs. For combustion purposes, grasses with low moisture content, high lignin and low nutrients are desired. For ethanol, preferred feedstock will have lower lignin, higher sugars, starch, or cellulose/hemicellulose depending on the conversion method. Species with high stem-to-leaf ratio provide better biofuel conversion efficiency and quality. Recently-developed transgenic switchgrass lines have much higher ethanol yields and lower transformation costs. Further selection and breeding are needed to optimize biomass quality and nutrient cycling.

Copyright © 2016 Elsevier Ltd. All rights reserved.

Address: Horticulture and Crop Science Department, California Polytechnic State University, San Luis Obispo, CA 93407, USA. Electronic address: [email protected].; Independent Research Consultant, 120 Walnut Court, #29, Ottawa, ON K1R 7W2, Canada.; School of Environmental Science, University of Guelph, Guelph, ON N1G 2W1, Canada.

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