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  4. Inorganic Fungicides (Phosphites) Instead of Organic Fungicides in Winter Wheat—Consequences for Nitrogen Fertilizer Productivity
 
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Inorganic Fungicides (Phosphites) Instead of Organic Fungicides in Winter Wheat—Consequences for Nitrogen Fertilizer Productivity

Type
Journal article
Language
English
Date issued
2023
Author
Grzebisz, Witold 
Łączny, Szymon
Szczepaniak, Witold 
Potarzycki, Jarosław 
Faculty
Wydział Rolnictwa, Ogrodnictwa i Biotechnologii
Journal
Agronomy
ISSN
2073-4395
DOI
10.3390/agronomy13030627
Web address
https://www.mdpi.com/2073-4395/13/3/627
Volume
13
Number
3
Pages from-to
art. 627
Abstract (EN)
Substitution of organic with inorganic fungicides (phosphites, Phi) does not change the efficiency of fertilizer nitrogen (Nf) in winter wheat. This hypothesis was tested in the 2016/2017 and 2017/2018 growing seasons. A two-factorial experiment with three phosphite variants (Cu–Phi, Mg–Phi, and Cu/Mg) and six plant protection methods (fungicides + Phi ⟶ reduced fungicide frequency + phosphite ⟶ phosphite). Grain yield decreased with increasing frequency of phosphites instead of fungicides. The decrease in yields was 3.6 t ha−1 in the favorable 2016/2017 and 1.1 t ha−1 in the dry 2017/2018. The primary reason for yield decrease in a given growing season was increased wheat infestation by pathogens. The direct cause was disturbances in the nitrogen status of wheat after flowering on treatments with a predominance of phosphites. The thousand grain weight (TGW) responded negatively to reduced fungicide application frequency. The critical stage in the assessment of pathogen pressure on wheat was the medium milk phase (BBCH 75). At this stage, indices of SPAD and leaf greenness together with indices of wheat infestation with pathogens allowed for a reliable prediction of both TGW and grain yield. It can be concluded that phosphites do not substitute organic fungicides in limiting pathogen pressure in winter wheat. Moreover, increased pressure of pathogens significantly reduces Nf productivity.
Keywords (EN)
  • pathogens

  • yield gap

  • SPAD index

  • leaf greenness

  • nitrogen accumulation

  • nitrogen productivity

  • nitrogen gap

License
cc-bycc-by CC-BY - Attribution
Open access date
February 22, 2023
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