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  1. Article: A strategy for controlling Cercospora leaf spot, caused by Cercospora beticola, by combining induced host resistance and chemical pathogen control and its implications for sugar beet yield

    Morsy, Saad Z. / Shady, Mohamed F. / Gouda, Moustafa I. / Kamereldawla, Bahnasy A. / Abdelrazek, Mohamed A. S.

    Canadian journal of plant pathology. 2022 July 04, v. 44, no. 4

    2022  

    Abstract: Cercospora beticola populations resistant to methyl benzimidazole carbamate (MBC), quinone outside inhibitor (QoI), and demethylation inhibitor (DMI) fungicides have been reported in Egypt. This pathogen causes a difficult to control variant of ... ...

    Abstract Cercospora beticola populations resistant to methyl benzimidazole carbamate (MBC), quinone outside inhibitor (QoI), and demethylation inhibitor (DMI) fungicides have been reported in Egypt. This pathogen causes a difficult to control variant of Cercospora leaf spot (CLS) on sugar beet. We conducted field experiments over two years to investigate treatment efficacies on MBC- and QoI-resistant, but partially DMI-sensitive, C. beticola from a research farm in Sakha, Egypt. DMI fungicides showed moderate efficacy with half the maximal effective concentration (EC₅₀). Efficacy was 67.2–69.1% and 63.4–63.6% for epoxiconazole (EPO) and propiconazole (PRO), respectively. When each fungicide was mixed with salicylic acid (SA) at EC₅₀ (EPO + SA) and EC₅₀ (PRO +SA), efficacy was 77.5–79.1% and 77.0–78.2%, respectively. The QoI fungicide, azoxystrobin, showed lower efficacy (46.4–49.5%) when applied alone, but enhanced efficacy when combined with SA at EC₅₀/EC₅₀ (77.0–78.2%). Carbendazim alone was only 47.5–45.1% effective, but when mixed with SA, had a 67.1% co-toxicity factor in vitro, indicating antagonism between components. An Artemisia cina aqueous extract (WEA) combined with SA (WEA/SA) showed 76.0–78.2% efficacy, compared with 69.0–71.0% and 49.0–52.7% for WEA and SA, respectively. Single treatments were classified into five sensitivity classes from sensitive (<1) to resistant (>100) based on their EC₅₀ values. Significant increases in insensitivity were observed from 2015/16 to 2017/18. All treatments increased total yield, sucrose percentage, and recoverable white sugar compared with the untreated control. A combination of control strategies could allow for effective disease and fungicide resistance management.
    Keywords Artemisia ; Cercospora beticola ; antagonism ; azoxystrobin ; benzimidazole ; carbendazim ; demethylation ; epoxiconazole ; farms ; fungicide resistance ; leaf spot ; pathogens ; plant pathology ; propiconazole ; quinones ; resistance management ; salicylic acid ; sucrose ; sugar beet ; white sugar ; Egypt
    Language English
    Dates of publication 2022-0704
    Size p. 518-533.
    Publishing place Taylor & Francis
    Document type Article
    ZDB-ID 763044-x
    ISSN 0706-0661 ; 1715-2992
    ISSN 0706-0661 ; 1715-2992
    DOI 10.1080/07060661.2021.2024262
    Database NAL-Catalogue (AGRICOLA)

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  2. Article: Damping-off caused by Pythium aphanidermatum on sugar beet in Egypt

    Omar, Ayman Faisal / Mohamed, Ayman A. A. / Gouda, Moustafa I. / Emeran, Amero A.

    Australasian plant disease notes. 2021 Dec., v. 16, no. 1

    2021  

    Abstract: Damping-off, root rot and necrotic lesions were observed on sugar beet (Beta vulgaris) seedlings in the Kafrelsheikh Governorate, in the northern part of the Nile River delta, Egypt. Pythium aphanidermatum was identified as the causal agent using the ... ...

    Abstract Damping-off, root rot and necrotic lesions were observed on sugar beet (Beta vulgaris) seedlings in the Kafrelsheikh Governorate, in the northern part of the Nile River delta, Egypt. Pythium aphanidermatum was identified as the causal agent using the morphology of the asexual and sexual morphs and molecular studies. This is the first record of P. aphanidermatum on sugar beet in Egypt.
    Keywords Beta vulgaris ; Pythium aphanidermatum ; damping off ; river deltas ; root rot ; sugar beet ; Egypt ; Nile River
    Language English
    Dates of publication 2021-12
    Size p. 25.
    Publishing place Springer Netherlands
    Document type Article
    ZDB-ID 2250071-6
    ISSN 1833-928X
    ISSN 1833-928X
    DOI 10.1007/s13314-021-00438-8
    Database NAL-Catalogue (AGRICOLA)

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