Kobayashi D Y, Palumbo J D. Bacterial endophytes and their effects on plants and uses in agriculture[A]. In: Bacon C W, White J F. Microbial Endophytes[M]. New York: Jr. Marcel Dekker, Inc., 2000: 199-237
Angela S, Birgit R, Gabriele B. Endophytic bacterial communities of field-grown potato plants and their plant-growth-promoting and antagonistic abilities[J]. Microbiology, 2004, 50: 239-249.
Berg G, Krechel A, Ditz M, et al. Endophytic and ectophytic potato-associated bacterial communities differ in structure and antagonistic function against plant pathogenic fungi[J]. FEMS Microbiology Ecology, 2005, 51(2): 215-229.
[18]
黄贵修, Yuka T, Segenet K. 臂形草内生菌特异DNA片段的克隆及其分子鉴定[J]. 热带作物学报, 2002, 23(4): 58-61.
[19]
Ahlholm J U, Helander M, Henriksson J, et al. Environmental conditions and host genotype direct genetic diversity of venturia ditricha, a fungal endophyte of birch trees[J]. Evolution, 2002, 56(8): 1566-1573.
Sturz A V, Christie B R, Nowak J. Baterial endophytes: Potential role in developing sustainable systems of crop production[J]. Critical Reviews in Plant Sciences, 2000, 19(1): 1-30.
[22]
黄东益, 黄小龙, Segenet K. 旗草内生真菌与旗草抗病性研究[J]. 草业学报, 2009, 18(2): 39-45. 浏览
Siciliano S D, Germida J J. Taxonomic diversity of bacteria associated with the roots of field-grown transgenic Brassica napus cv. Quest, compared to the non-transgenic B. napus cv. Excel and B. rapus cv. Parkland[J]. FEMS Microbiology Ecology, 1999, 29(3): 263-272.
Clay K, Holah J. Fungal endophyte symbiosis and plant diversity in successional fields[J]. Science, 1999, 285: 1742-1745.
[27]
Peters S, Draeger S, Aust H J, et al. Interactions in dual cultures of endophytic fungi with host and nonhost plant calli[J]. Mycologia, 1998, 90: 360-367.
Riley M S, Cooper V S, Lenski R E, et al. Rapid phenotypic change and diversification of a soil bacterium during 1000 generations of experimental evolution[J]. Microbiology, 2001, 147: 995-1006.
[31]
Ozbek A, Aktas O. Identification of three strains of Mycobacterium species isolated from clinical samples using fatty acid methyl ester profiling[J]. The Journal of International Medical Research, 2003, 31(2): 133-140.
[32]
Muller K, Schmid E N, Kroppenstedt R M. Improved identification of mycobacteria by using the microbial identification system in combination with additional trimethylsulfonium hydroxide pyrolysis[J]. Journal of Clinic Microbiology, 1998, 36(9): 2477-2480.
[33]
Basile F, Voorhces K J, Hadtleld T L. Microorganism gram-type differentiation based on pyrolysis mass spectrometry of bacterial fatty acid methyl ester extracts[J]. Applied and Environmental Microbiology, 1995, 61(4): 1534-1539.
Cabral C M, Cherqui A, Pereira A, et al. Purification and characterization of two distinct metalloproteases secreted by the entomopathogenic bacterium photorhabdus sp. strain Az29[J]. Applied and Environmental Microbiology, 2004, 70: 3831-3838.
[39]
Mariёt J V D W, Henk J S, Jan A M B. Rhodococcus erythropolis DCL14 contains a novel degradation pathway for limonene[J]. Applied and Environmental Microbiology, 1999, 65(5): 2092-2102.
[40]
Bernardo V R, Jacquie M M, Robert A C, et al. Susceptibility of calves to challenge with Salmonella typhimurium 4/74 and derivatives harbouring mutations in htrA or purE[J]. Microbiology, 2000, 146(11): 2775-2783.
[41]
Wolf A, Fritze A, Hagemann M, et al. Stenotrophomonas rhizophila sp. nov., a novel plant-associated bacterium with antifungal properties[J]. International Journal of Systematic and Evolutionary Microbiology, 2002, 52: 1937-1944.
[42]
Fisher P J, Petrini O, Scott H M. The distribution of some fungal and bacterial endophytes in maize (Zea mays L.)[J]. New Phyto1ogist, 1992, 122: 299-305.