Pathogen aggressiveness and postharvest biocontrol efficiency in Pantoea agglomerans

被引:43
作者
Francés, J
Bonaterra, A
Moreno, MC
Cabrefiga, J
Badosa, E
Montesinos, E
机构
[1] Univ Girona, Inst Food & Agr Technol, Plant Pathol Unit, Girona 17071, Spain
[2] Univ Girona, CeRTA CIDSAV, Girona 17071, Spain
关键词
Rhizopus stolonifer; Botrytis cinerea; Penicillium spp; Monilinia laxa; fruit rot; median effective dose;
D O I
10.1016/j.postharvbio.2005.11.002
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Pathogen aggressiveness on the host was studied as one of the influencing factors in the variability of the efficiency of biocontrol by Pantoea agglomerans. The effect of the relative dose of the pathogen and biocontrol agent (BCA) on efficacy of biocontrol was analyzed in six postharvest pathogens (Rhizopus stolonofer, Botrytis cinerea, Penicillium expansum, Monilinia laxa, Penicillium digitatum and Penicillium italicum), five fruit types (apple, pear, nectarine, strawberry, orange) and two strains of P. agglomerans. Median effective dose (ED50) of the pathogens and of the BCAs was estimated by fitting data to a hyperbolic saturation model. The raw data required were either obtained front the literature or generated by the appropriate experiments. The ED50 of the pathogens covered a range from 1 to 475 spores/wound and of the BCA strains ranged from 207 to 30,000 cfu/wound. The efficiency of the P. agglomerans strains was estimated as the ratio between the ED50 for the BCA and the pathogen, and ranged froin 7 to 25,000 cfu/spore. Low values indicate high efficiencies. A significant inverse relationship was observed between the efficiency of biocontrol and the ED50 of the pathogen on the corresponding host, indicating that the higher the agressiveness of the pathogen the lower the efficiency of the BCA. It is expected that this relationship can be extended to other postharvest biocontrol-pathogen systems. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:299 / 307
页数:9
相关论文
共 36 条
[2]   Biological control of Monilinia laxa and Rhizopus stolonifer in postharvest of stone fruit by Pantoea agglomerans EPS125 and putative mechanisms of antagonism [J].
Bonaterra, A ;
Mari, M ;
Casalini, L ;
Montesinos, E .
INTERNATIONAL JOURNAL OF FOOD MICROBIOLOGY, 2003, 84 (01) :93-104
[3]   Aureobasidium pullulans (LS-30) an antagonist of postharvest pathogens of fruits:: study on its modes of action [J].
Castoria, R ;
De Curtis, F ;
Lima, G ;
Caputo, L ;
Pacifico, S ;
De Cicco, V .
POSTHARVEST BIOLOGY AND TECHNOLOGY, 2001, 22 (01) :7-17
[4]   Control of postharvest pear diseases using natural saprophytic yeast colonists and their combination with a low dosage of thiabendazole [J].
ChandGoyal, T ;
Spotts, RA .
POSTHARVEST BIOLOGY AND TECHNOLOGY, 1996, 7 (1-2) :51-64
[5]   Postharvest biological control of blue mold of apple and brown rot of sweet cherry by natural saprophytic yeasts alone or in combination with low doses of fungicides [J].
ChandGoyal, T ;
Spotts, RA .
BIOLOGICAL CONTROL, 1996, 6 (02) :253-259
[6]   Strategy for combining heat treatment, calcium infiltration, and biological control to reduce postharvest decay of 'Gala' apples [J].
Conway, WS ;
Janisiewicz, WJ ;
Klein, JD ;
Sams, CE .
HORTSCIENCE, 1999, 34 (04) :700-704
[7]   THE CHEMICAL CONTROL OF POSTHARVEST DISEASES - DECIDUOUS FRUITS, BERRIES, VEGETABLES AND ROOT TUBER CROPS [J].
ECKERT, JW ;
OGAWA, JM .
ANNUAL REVIEW OF PHYTOPATHOLOGY, 1988, 26 :433-469
[8]   Nisin enhancement of biocontrol of postharvest diseases of apple with Candida oleophila [J].
ElNeshawy, SM ;
Wilson, CL .
POSTHARVEST BIOLOGY AND TECHNOLOGY, 1997, 10 (01) :9-14
[9]  
GULLINO ML, 1994, ANNU REV PHYTOPATHOL, V32, P559, DOI 10.1146/annurev.py.32.090194.003015
[10]   Effects of wounding, inoculum density, and biological control agents on postharvest brown rot of stone fruits [J].
Hong, CX ;
Michailides, TJ ;
Holtz, BA .
PLANT DISEASE, 1998, 82 (11) :1210-1216