AI Article Synopsis

  • PCR techniques revealed Mycosphaerella graminicola infections in wheat crops three weeks before symptoms appeared, allowing differentiation between curative and preventative treatments.
  • Azoxystrobin, when applied curatively after infection onset, showed intermediate effectiveness compared to chlorothalonil (low effect) and epoxiconazole (higher effectiveness), with no fungicide able to completely prevent leaf infections.
  • Both treatment types increased the time between initial infection detection and visible leaf damage, but azoxystrobin only slightly slowed the progression of necrosis compared to epoxiconazole, indicating its primary role in delaying visible damage rather than preventing infection.

Article Abstract

Quantitative PCR and visual monitoring of Mycosphaerella graminicola epidemics were performed to investigate the effect of curative and preventative applications of azoxystrobin in wheat field crops. A non-systemic protectant and a systemic curative fungicide, chlorothalonil and epoxiconazole, respectively, were used as references. PCR diagnosis detected leaf infection by M graminicola 3 weeks before symptom appearance, thereby allowing a clear distinction between curative and preventative treatments. When applied 1 week after the beginning of infection, azoxystrobin curative activity was intermediate between chlorothalonil (low effect) and epoxiconazole. When applied preventatively, none of the fungicides completely prevented leaf infection. There was some indication that azoxystrobin preventative treatments may delay fungal DNA increase more than epoxiconazole at the beginning of leaf infection. Both curative and preventative treatments increased the time lapse between the earliest PCR detection and the measurement of a 10% necrotic leaf area. Azoxystrobin only slightly decreased the speed of necrotic area increase compared with epoxiconazole. Hence, azoxystrobin activity toward M graminicola mainly resides in lengthening the time lapse between the earliest PCR detection and the measurement of a 10% necrotic leaf area. Information generated in this way is useful for optimal positioning of azoxystrobin treatments on M graminicola.

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http://dx.doi.org/10.1002/ps.431DOI Listing

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