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  • 1 University of Kaposvár, Forage Research Institute, Iregszemcse Hungary
  • | 2 University of Kaposvár, Forage Research Institute, Iregszemcse Hungary
  • | 3 Georgikon Faculty of Agricultural Sciences, University of Veszprém Keszthely, Hungary
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Diaporthe helianthi Munt. Cvet. et al. (anamorph: Phomopsis) is a dangerous pathogen of sunflower, causing important yield losses. No information is as yet available, however, on the changes taking place in the achene yield-forming process, which eventually lead to the reduction in yield. The basic assumption was that by tracing the growth of the achene yield - using the growth analysis method - it would be possible to determine how the pathogenic fungus Diaporthe (=D.) helianthi - affected the dry matter accumulation process. The achene dry matter mass per head (ADM) was recorded at nine sampling dates during the achene filling period in five sunflower hybrids, in plants inoculated with the pathogen or treated with fungicide. Simultaneously with sampling, scoring was carried out for symptom dynamics. The results proved that, as the result of inoculation with D. helianthi, considerable changes took place in the achene dry matter accumulation process. The estimated growth characteristics of a second-order polynomial fitted to the ADM mass data: maximum yield per head (YMAX), average of absolute growth rate (AGRAVG), maximum of absolute growth rate (AGRMAX), maximum point of the absolute growth rate (XAGRMAX) and average of relative growth rate (RGRAVG), were considerably smaller in the inoculated treatment than in the sprayed treatment.

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Jenő KONTSCHÁN 
(Centre for Agricultural Research, Plant Protection Institute)

Technical editor: Ágnes TURÓCI (Centre for Agricultural Research, Plant Protection Institute)

Editorial Board

  • Pál BENEDEK (Hungarian University of Agriculture and Life Sciences)
  • José Antonio Hernández CORTÉS (CEBAS – Spanish National Research Council)
  • Tibor ÉRSEK (Hungarian University of Agriculture and Life Sciences)
  • Wittko FRANCKE (University of Hamburg)
  • László HORNOK (Hungarian University of Agriculture and Life Sciences)
  • József HORVÁTH (University of Pannonia, Faculty of Georgikon)
  • Mehmet Bora KAYDAN (Cukurova University)
  • Zoltán KIRÁLY (Centre for Agricultural Research, Plant Protection Institute)
  • Levente KISS (University of Southern Queensland)
  • Karl-Heinz KOGEL (University of Giessen)
  • Jenő KONTSCHÁN (Centre for Agricultural Research, Plant Protection Institute)
  • Tamás KŐMÍVES (Centre for Agricultural Research, Plant Protection Institute)
  • László PALKOVICS (Hungarian University of Agriculture and Life Sciences)
  • Miklós POGÁNY (Centre for Agricultural Research, Plant Protection Institute)
  • James E. SCHOELZ (University of Missouri)
  • Stefan SCHULZ (Technical University of Braunschweig)
  • Andrzej SKOCZOWSKI (Pedagogical University of Kraków)
  • Gábor SZŐCS (Centre for Agricultural Research, Plant Protection Institute)
  • Miklós TÓTH (Centre for Agricultural Research, Plant Protection Institute)
  • Ferenc VIRÁNYI (Hungarian University of Agriculture and Life Sciences)
  • Pedro Díaz VIVANCOS (CEBAS – Spanish National Research Council)

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2020  
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Acta Phytopathologica et Entomologica Hungarica
Language English
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2020 Volume 55
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