Effects of Soil Pre-Treatment with Basamid® Granules, Brassica juncea, Raphanus sativus, and Tagetes patula on Bacterial and Fungal Communities at Two Apple Replant Disease Sites
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Summary
The detection of bacterial and fungal genera that were significantly increased in relative abundance in response to the treatments and that were positively correlated with plant growth suggests that management of the soil microbial community could contribute to overcome the apple RD encountered at affected sites.
- Type
- article
- Published
- 2017-09-01
- Cited by
- 62
- References
- 97
- Access
- Open access
- OpenAlex
- https://openalex.org/W2753306968
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8541382
Keywords
Raphanus, Biology, Horticulture, Rootstock, Brassica
References
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- Elucidation of the microbial complex having a causal role in the development of apple replant disease in washington.
- Soil Bacterial Community Shifts after Chitin Enrichment: An Integrative Metagenomic Approach
- Role of dissimilatory fermentative iron-reducing bacteria in Fe uptake by common bean (Phaseolus vulgaris L.) plants grown in alkaline soil
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- Glucosinolate structures in evolution.
Cited by
- Conventional farming impairs Rhizoctonia solani disease suppression by disrupting soil food web
- Apple Replant Disease: Causes and Mitigation Strategies.
- Induction and diagnosis of apple replant disease (ARD): a matter of heterogeneous soil properties?
- Soil amendment alters soil physicochemical properties and bacterial community structure of a replanted apple orchard.
- Diagnosis of apple replant disease (ARD): Microscopic evidence of early symptoms in fine roots of different apple rootstock genotypes
- Plant-parasitic nematode management via biofumigation using brassica and non-brassica plants: Current status and future prospects
- Fungal Community Structural and Microbial Functional Pattern Changes After Soil Amendments by Oilseed Meals of Jatropha curcas and Camelina sativa: A Microcosm Study
- Evaluation of Malus genetic resources for tolerance to apple replant disease (ARD)
- Rhizosphere bacteria assembly derived from fumigation and organic amendment triggers the direct and indirect suppression of tomato bacterial wilt disease
- Effects of biofumigation on plant growth and microbial communities in replant disease soils
- Biofumigation for Fighting Replant Disease- A Review
- Chitosan-based Agronanofungicides as a Sustainable Alternative in the Basal Stem Rot Disease Management.
- Broad geographical and ecological diversity from similar genomic toolkits in the ascomycete genus Tetracladium
- Actinomycete diversity associated with cherry tree rhizospheres and their potential as microbial inoculants
- New Insights on the Role of Allyl Isothiocyanate in Controlling the Root Knot Nematode Meloidogyne hapla
- Effects of Soil Nutrients, Enzyme Activities and Microbial Composition in Vegetable-Polygonatum Odoratum Rotation Regimes
- Rhizosphere microbial communities associated to rose replant disease: links to plant growth and root metabolites
- Investigations on the occurrence of fungal root endophytes and an associated mycovirus in context with apple replant disease
- Identification and validation of early genetic biomarkers for apple replant disease
- Exploring microbial determinants of apple replant disease (ARD): A microhabitat approach under split-root design.
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