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Articles citing this paper

Factors affecting the hydrogen cyanide potential of forage sorghum.

JL Wheeler, C Mulcahy, JJ Walcott and GG Rapp
41(6) pp.1093 - 1100


31 articles found in Crossref database.

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Functional Plant Biology. 2006 33(5). p.487
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Aruna C., Shrotria P. K., Pahuja S. K., Umakanth A. V., Bhat B. Venkatesh, Devender A. Vishala, Patil J. V.
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Crop Science. 2013 53(3). p.1056
Forages (2020)
McAllister Tim A., Ribeiro Gabriel, Stanford Kim, Wang Yuxi
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Physiology and Biotechnology Integration for Plant Breeding (2004)
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O'Donnell Natalie H., Møller Birger Lindberg, Neale Alan D., Hamill John D., Blomstedt Cecilia K., Gleadow Roslyn M.
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OTEN Mehmet
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Funnell-Harris Deanna L., Sattler Scott E., O’Neill Patrick M., Toy John J., Bernhardson Lois F., Kilts Mark R., Khasin Maya
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Field Crops Research. 2016 185 p.97
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Pedersen Jeffery F., Rooney William L.
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Inducing variability in multi-cut forage sorghum through mutagenesis
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