No- or Low-Content Copper Compounds for Controlling Venturia oleaginea, the Causal Agent of Olive Leaf Spot Disease

Author:

Almadi Leen1ORCID,Jarrar Samer2,Sbaihat Layth3,Issa Tahreer4,Tucci Michele5,Moretti Chiaraluce1ORCID,Buonaurio Roberto1ORCID,Famiani Franco1ORCID

Affiliation:

1. Department of Agricultural, Food and Environmental Sciences, University of Perugia, Via Borgo XX Giugno 74, 06121 Perugia, Italy

2. Faculty of Agriculture and Natural Resources, Nablus University for Vocational and Technical Education (NU-VTE), Nablus P400, Palestine

3. Department of Biology and Biotechnology, Faculty of Science, The Arab American University (AAUP), Jenin P.O. Box 240, Palestine

4. Independent Researcher, Palestine

5. CIHEAM-Bari—Centre International de Hautes Etudes Agronomiques Méditerranéennes, 70010 Bari, Italy

Abstract

The efficacy of using a synthetic (azoxystrobin + difenoconazole), copper-based (copper oxychloride) and low-content copper compound (copper complexed with gluconate and lignosulphonate) fungicides for controlling Venturia oleaginea, the causal agent of olive spot disease, was evaluated in an olive (cv. Nabali) orchard located in the Kafr Qud area (Palestine) in 2017–2018. Treatments were applied at three different times (February, April, and August). In January 2017, at the beginning of the experiment, about 90% of the leaves grown in 2016 were infected. Defoliation was determined by counting the leaves on the labeled branches initially and then periodically. It increased gradually in both the control and treated trees, but those treated with azoxystrobin + difenoconazole or with copper complexed with gluconate and lignosulphonate showed a slower defoliation rate. During 2017, new shoots grew and new leaves developed. All treatments reduced the drop of new leaves with respect to the control, with positive effects on the reproductive activity (inflorescence growth and yield). Overall, all treatments significantly reduced the disease, thus indicating the possibility of greatly reducing infections if treatments are regularly applied each year, also with traditional (copper-based) fungicides. Due to their capability of penetrating inside the vegetative tissue, azoxystrobin + difenoconazole or copper complexed with gluconate and lignosulphonate reduced/slowed down the drop of infected leaves. The use of these fungicides is therefore particularly recommended when olive leaf spot disease is severe. The use of low-content copper compounds allows the amount of metallic copper used for the treatments against V. oleaginea to be greatly reduced.

Funder

PRIMA “Innovative farm strategies that integrate sustainable N fertilization, water management and pest control to reduce water and soil pollution and salinization in the Mediterranean- Safe-H2O-Farm”

Publisher

MDPI AG

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