Cultural management of microbial community structure to enhance growth of apple in replant soils

被引:34
作者
Mazzola, M
Granatstein, DM
Elfving, DC
Mullinix, K
Gu, YH
机构
[1] USDA ARS, Tree Fruit Res Lab, Wenatchee, WA 98801 USA
[2] Washington State Univ, Tree Fruit Res & Extens Ctr, Wenatchee, WA 98801 USA
关键词
D O I
10.1094/PHYTO.2002.92.12.1363
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Apple replant disease typically is managed through pre-plant application of broad-spectrum soil fumigants including methyl bromide. The impending loss or restricted use of soil fumigants and the needs of an expanding organic tree fruit industry necessitate the development of alternative control measures. The microbial community resident in a wheat field soil was shown to suppress components of the microbial complex that incites apple replant disease. Pseudomonas putida was the primary fluorescent pseudomonad recovered from suppressive soil, whereas Pseudomonas fluorescens bv. III was dominant in a conducive soil; the latter developed within 3 years of orchard establishment at the same site. In greenhouse studies, cultivation of wheat in replant orchard soils prior to planting apple suppressed disease development. Disease suppression was induced in a wheat cultivar-specific manner. Wheat cultivars that enhanced apple seedling growth altered the dominant fluorescent pseudomonad from Pseudomonas fluorescens bv. III to Pseudomonas putida. The microbial community resident in replant orchard soils after growing wheat also was suppressive to an introduced isolate of Rhizoctonia solani anastomosis group 5, which causes root rot of apple. Incorporation of high glucosinolate containing rapeseed ('Dwarf Essex') meal also enhanced growth of apple in replant soils through suppression of Rhizoctonia spp., Cylindrocarpon spp., and Pratylenchus penetrans. Integration of these methods will require knowledge of the impact of the biofumigant component on the wheat-induced disease-suppressive microbial community. Implementation of these control strategies for management of apple replant disease awaits confirmation from ongoing field validation trials.
引用
收藏
页码:1363 / 1366
页数:4
相关论文
共 28 条
[1]  
[Anonymous], 1966, SPECIFIC REPLANT DIS
[2]  
Biggs A. R., 1997, American Journal of Alternative Agriculture, V12, P162, DOI 10.1017/S0889189300007505
[3]   Winter wheat cover cropping, VA mycorrhizal fungi and maize growth and yield [J].
Boswell, EP ;
Koide, RT ;
Shumway, DL ;
Addy, HD .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 1998, 67 (01) :55-65
[4]  
Brown PD, 1997, ADV AGRON, V61, P167, DOI 10.1016/S0065-2113(08)60664-1
[5]   USING COVER CROPS TO MANAGE ARTHROPOD PESTS OF ORCHARDS - A REVIEW [J].
BUGG, RL ;
WADDINGTON, C .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 1994, 50 (01) :11-28
[6]  
COVEY RP, 1979, PHYTOPATHOLOGY, V69, P684, DOI 10.1094/Phyto-69-684
[7]  
GU YH, 2001, IN PRESS SOIL BIOL B
[8]   GROUND COVER INFLUENCE ON APPLE APHID, APHIS-POMI DEGEER (HOMOPTERA, APHIDIDAE), AND ITS PREDATORS IN A YOUNG APPLE ORCHARD [J].
HALEY, S ;
HOGUE, EJ .
CROP PROTECTION, 1990, 9 (03) :225-230
[9]  
HOESTRA H, 1968, THESIS MEDED LANDBOU
[10]  
JAFFEE BA, 1982, PHYTOPATHOLOGY, V72, P247, DOI 10.1094/Phyto-72-247