Bennett JW. An overview of the genus Aspergillus[M]//. Machida M, Gomi K. Aspergillus:Molecular Biology and Genomics. Norfolk:Caiser Academic Press, 2010:1-17.
[2]
Hu X, Xia QW, Zhao YY, et al. Speradines F-H, Three new oxindole alkaloids from the marine-derived fungus Aspergillus oryzae[J]. Chemical and Pharmaceutical Bulletin, 2014, 62(9):942-946.
[3]
Felix G, Regenass M, Boller T. Specific perception of subnanomolar concentrations of chitin fragments by tomato cells:induction of extracellular alkalinization, changes in protein phosphorylation, and establishment of a refractory state[J]. The Plant Journal, 1993, 4(2):307-316.
[4]
Apel K, Hirt H. REACTIVE OXYGEN SPECIES:metabolism, oxidative stress, and signal transduction[J]. Annual Review of Plant Biology, 2004, 55(1):373-399.
[5]
Grant M, Lamb C. Systemic immunity[J]. Current Opinion in Plant Biology, 2006, 9(4):414-420.
[6]
Hammond-Kosack K, Jones JD. Plant Environment and Agriculture:Responses to plant pathogens[M]//. Buchanan B, Gruissem W, Jones RL. Biochemistry and Molecular Biology of Plants. Jonh Wiley & Sons, 2000:1102-1156.
Christensen M. A synoptic key and evaluation of species in the Aspergillus flavus group[J]. Mycologia, 1981, 73(6):1056-1084.
[9]
Machida M, Asai K, Sano M, et al. Genome sequencing and analysis of Aspergillus oryzae[J]. Nature, 2005, 438(7071):1157-1161.
[10]
Chang PK, Ehrlich KC. What does genetic diversity of Aspergillus flavus tell us about Aspergillus oryzae?[J]. International Journal of Food Microbiology, 2010, 138(3):189-199.
[11]
Chen Z, Agnew JL, Cohen JD, et al. Pseudomonas syringae type III effector AvrRpt2 alters Arabidopsis thaliana auxin physiology[J]. Proceedings of the National Academy of Sciences, 2007, 104(50):20131-20136.
[12]
Navarro L, Dunoyer P, Jay F, et al. A plant miRNA contributes to antibacterial resistance by repressing auxin signaling[J]. Science, 2006, 312(5772):436-439.
[13]
Samson R. Current Systematics of the Genus Aspergillus[M]//. Powell, KA, Renwick A, Peberdy JF. The Genus Aspergillus from taxonomy and genetics to industrial application. New York:Plenum Press, 1994:261-276.
[14]
Pfefferle W, Anke H, Bross M, et al. Asperfuran, a novel antifungal metabolite from Aspergillus oryzae[J]. The Journal of antibiotics, 1990, 43(6):648-654.
[15]
Camejo D, Martí MC, Jiménez A, et al. Effect of oligogalacturonides on root length, extracellular alkalinization and O2--accumulation in alfalfa[J]. Journal of Plant Physiology, 2011, 168(6):566-575.
[16]
O''Brien JA, Daudi A, Butt VS, et al. Reactive oxygen species and their role in plant defence and cell wall metabolism[J]. Planta, 2012, 236(3):765-779.
[17]
Fobert PR, Despres C. Redox control of systemic acquired resistance[J]. Curr Opin Plant Biol, 2005, 8(4):378-382.
[18]
Chen X, Mou Y, Ling J, et al. Cyclic dipeptides produced by fungus Eupenicillium brefeldianum HMP-F96 induced extracellular alkalinization and H2O2 production in tobacco cell suspensions[J]. World Journal of Microbiology and Biotechnology, 31(1):247-253.
[19]
Gerber I, Dubery I. Fluorescence microplate assay for the detection of oxidative burst products in tobacco cell suspensions using 2'', 7''-dichlorofluorescein[J]. Methods in Cell Science, 2004, 25(3-4):115-122.
[20]
Murakami H. Classification of the Koji Mold[J]. The Journal of General and Applied Microbiology, 1971, 17(4):281-309.
[21]
Kurtzman CP, Smiley MJ, Robnett CJ, et al. DNA Relatedness among wild and domesticated species in the Aspergillus flavus group[J]. Mycologia, 1986, 78(6):955-959.
[22]
Amaike S, Keller NP. Aspergillus flavus[J]. Annual Review of Phytopathology, 2011, 49(1):107-133.
[23]
Geiser DM, Pitt JI, Taylor JW. Cryptic speciation and recombination in the aflatoxin-producing fungus Aspergillus flavus[J]. Proceedings of the National Academy of Sciences, 1998, 95(1):388-393.
[24]
J?rgensen TR. Identification and toxigenic potential of the industr-ially important fungi, Aspergillus oryzae and Aspergillus sojae[J]. Journal of Food Protection, 2007, 70(12):2916-2934.