Concomitant biocontrol of pepper Phytophthora blight by soil indigenous arbuscular mycorrhizal fungi via upfront film-mulching with reductive fertilizer and tobacco waste
Purpose Both reductive disinfestation and germicide can suppress Phytophthora blight, while soil arbuscular mycorrhizal (AM) fungi also have biocontrol effects on soilborne diseases. However, the combined effects of reductive disinfestation and botanical germicide [e.g., tobacco ( Nicotiana tabacum...
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Veröffentlicht in: | Journal of soils and sediments 2020, Vol.20 (1), p.452-460 |
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Sprache: | eng |
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Zusammenfassung: | Purpose
Both reductive disinfestation and germicide can suppress
Phytophthora
blight, while soil arbuscular mycorrhizal (AM) fungi also have biocontrol effects on soilborne diseases. However, the combined effects of reductive disinfestation and botanical germicide [e.g., tobacco (
Nicotiana tabacum
L.) waste] on pepper (
Capsicum annuum
L.)
Phytophthora
blight and soil AM fungi are at present unclear. The purposes of this work were to develop application strategy for dealing with pepper
Phytophthora
blight, and to explore the concomitant contribution from soil indigenous AM fungi.
Materials and methods
A field experiment with four treatments was carried out in a pepper continuous planting field, including normal film-mulching with common fertilizer (control), normal film-mulching with reductive fertilizer (RF), upfront film-mulching with reductive fertilizer (UM+RF), and upfront film-mulching with reductive fertilizer and tobacco waste (UM+RF+TW).
Phytophthora
blight severity index, root mycorrhizal colonization rate, and the biomass and nutrient (N, P, and K) concentrations of shoots, roots, and fruits of pepper were measured. Soil pH, organic C, mineral N, available P, available K, acid phosphatase activity, and AM fungal abundance were also tested. The Pearson correlation analysis was carried out among plant and soil parameters.
Results and discussion
RF tended to increase pepper fruit yield compared with control, and UM+RF tended to decrease
Phytophthora
blight severity in relative to RF, while UM+RF+TW tended to decrease blight severity and increase fruit yield compared with UM+RF, and had a significantly (
P
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ISSN: | 1439-0108 1614-7480 |
DOI: | 10.1007/s11368-019-02393-5 |