4Ntirnberger T. Signal perception in plant pathogen defense [J]. Cellular and Molecular Life Sciences, 1999, 55(2) : 167 - 182.
5Thordal Christensen H. Fresh insights into processes of non host resistance [J]. Current Opinion in Plant Biology, 2003, 6 (4) : 3S1 - 3S7.
6Chintamanani S, Hulbert S H, Johal G S, et al. Identification of a maize locus that modulates the hypersensitive defense re- sponse, using mutant assisted gene identification and charac- terization [J]. Genetics, 2010, 184: 813- 825.
7Nguyen H T, Leipner J, Stamp P, et al. Low temperature stress in maize (Zea mays L. ) induces genes involved in photo- synthesis and signal transduction as studied by suppression subtractive hybridization [J]. Plant Physiology and Biochemis- try, 2009, 47: 116-122.
8Wisser R J, Balint Kurti P J, Nelson R J. The genetic architec- ture of disease resistance in maize: a synthesis of published studies [J]. Phytopathology, 2006, 96: 120-129.
9Levine A, Tenhaken R, Dixon R, et al. H2O2 from the oxida- tive burst orchestrates the plant hypersensitive disease resist- ance response [J]. Cell, 1994, 79: 583.
10Rohrmeier T, Lehle L. WIP1, a wound-inducible gene from maize with homology to Bowman - Birk proteinase inhibitors [J]. Plant Molecular Biology, 1993, 22: 783- 792.