Maize peroxidase Px5 has a highly conserved sequence in inbreds resistant to mycotoxin producing fungi which enhances fungal and insect resistance
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science
Link
http://link.springer.com/content/pdf/10.1007/s10265-015-0770-3.pdf
Reference32 articles.
1. Brewbaker JL, Nagai C, Liu EH (1985) Genetic polymorphisms of 13 maize peroxidases. J Hered 76:159–167
2. Chen Z-Y, Rajasekaran K, Brown RL, Sayler RJ, Bhatnagar D (2015) Discovery and confirmation of genes/proteins associated with maize aflatoxin resistance. World Mycotox J 8:211–224
3. Cleveland TE, Dowd P, Desjardins A, Bhatnagar D, Cotty P (2003) United States Department of Agriculture—Agricultural Research Service research on pre-harvest prevention of mycotoxins and mycotoxigenic fungi in US crops. Pest Manag Sci 59:629–642
4. Dowd PF (1994) Enhanced maize (Zea mays L.) pericarp browning: associations with insect resistance and involvement of oxidizing enzymes. J Chem Ecol 20:2777–2803
5. Dowd PF, Johnson ET (2005) Association of a specific cationic peroxidase isozyme with maize stress and disease resistance responses, genetic identification, and identification of a cDNA coding for the isozyme. J Agric Food Chem 53:4464–4470
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