Kilian M, Steiner U, [JP3]Krebs B, et al. FZB24 Bacillus subtilis-[JP]mode of action of a microbial agent enhancing plant vitality. Pflanzenschutz-Nachrichten Bayer, 2000, 53 (1): 72-93
[3]
Watanabe T, Tsukamoto T, Shirata A. Potential of an antagonistic bacterium isolate obtained from Lentinus lepideus basidiospores as a biocontrol agent. Mycoscience, 2000, 41: 79-82
[4]
陈策. 苹果树腐烂病发生规律和防治研究.北京:中国农业科学技术出版社,2009:9-17
[5]
陈策,李美娜,史秀琴,等. 苹果树腐烂病(Valsa mali Miyabe [CM(25*3]et Yamada)侵染时期研究.植物病理学报,1987,17(2):[CM)]65-68
Abe K, Kotoda N, Kato H, et al. Resistance sources to Valsa canker (Valsa ceratosperma) in a germplasm collection of diverse Malus species. Plant Breeding, 2007, 126(4): 449-453
[9]
Abe K, Kotoda N, Kato H, et al. Genetic studies on resistance to Valsa canker in apple: genetic variance and breeding values estimated from intra- and inter-specific hybrid progeny populations. Tree Genetics and Genomes, 2011, 7(2): 363-372
Chen L, Chen W L. Genome shuffling enhanced antagonistic activity against Fusarium oxysporum f.sp.melonis and tolerance to chemical fungicides in Bacillus subtilis BS14. Journal of Food, Agriculture & Environment, 2009, 7(2): 856-860
Dwivedi S, Singh B R, Al-Khedhairy A A, et al. Isolation and characterization of butachlor-catabolizing bacterial strain Stenotrophomonas acidaminiphila JS-1 from soil and assessment of its biodegradation potential. Letters in Applied Microbiology, 2010, 51(1): 54-60