<p><i>Diaspis echinocacti</i> (Bouché) (Hemiptera: Diaspididae) damages <i>Opuntia</i> spp. by feeding on the cladodes, reducing photosynthesis and causing economic losses. This study explored an integrated pest management approach to control <i>D. echinocacti</i>, using a combination of parasitoids species [ectoparasitoid <i>Aphytis debachi</i> Azim (Hymenoptera: Aphelinidae) and endoparasitoid <i>Plagiomerus diaspidis</i> Crawford (Hymenoptera: Encyrtidae)] and entomopathogenic microorganisms (<i>Alternaria murispora</i> Ariyawansa and Hyde, <i>Alternaria destruens</i> (Simmons), and three different <i>Streptomyces</i> species: <i>Streptomyces bellus</i> Margalith and Beretta [strains E23-2 and E25-12], <i>Streptomyces galilaeus</i> (Ettlinger et al.), and <i>Streptomyces africanus</i> (Meyers et al.). Laboratory trials showed that <i>A. murispora</i> and <i>A. destruens</i> at 10<sup>10</sup> conidia mL<sup>−1</sup> achieved the highest mortality rates (57.2% and 52.2%, respectively) after 14 days of application. <i>Streptomyces</i> species also proved effective, with <i>S. bellus</i>-E23-2 and <i>S. galilaeus</i> causing significant mortality (53.8% and 49.8%, respectively) at 10<sup>10</sup> CFU mL<sup>−1</sup>. Combining parasitoids with these entomopathogens yielded varied results, with a notable success in the pairing of <i>P. diaspidis</i> with <i>A. murispora</i> at 10<sup>10</sup> conidia mL<sup>−1</sup> (89.7% mortality) and <i>P. diaspidis</i> with <i>S. bellus</i>-E23-2 at 10<sup>10</sup> CFU mL<sup>−1</sup> (86.3%). These findings revealed a mix of antagonistic and additive interactions, emphasizing the complexity of combining these biological agents. Semi-field trials confirmed the laboratory results, with <i>P. diaspidis</i> + <i>A. murispora</i> at 10<sup>10</sup> conidia mL<sup>−1</sup> achieving 50.4% mortality and <i>P. diaspidis</i> + <i>A. destruens</i> at 10<sup>10</sup> conidia mL<sup>−1</sup> reaching 49.2% mortality after 14 days of application. Thus, the accurate mix of biological control agents can effectively contribute to <i>D. echinocacti</i> management, emphasizing the importance of considering their interactions.</p>

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Optimizing Opuntia spp. Protection: Parasitoids and Microorganisms Agents for Diaspis echinocacti Management

  • Mohamed El Aalaoui,
  • Said Rammali,
  • Abdelaziz Yasri,
  • Mohamed Sbaghi

摘要

Diaspis echinocacti (Bouché) (Hemiptera: Diaspididae) damages Opuntia spp. by feeding on the cladodes, reducing photosynthesis and causing economic losses. This study explored an integrated pest management approach to control D. echinocacti, using a combination of parasitoids species [ectoparasitoid Aphytis debachi Azim (Hymenoptera: Aphelinidae) and endoparasitoid Plagiomerus diaspidis Crawford (Hymenoptera: Encyrtidae)] and entomopathogenic microorganisms (Alternaria murispora Ariyawansa and Hyde, Alternaria destruens (Simmons), and three different Streptomyces species: Streptomyces bellus Margalith and Beretta [strains E23-2 and E25-12], Streptomyces galilaeus (Ettlinger et al.), and Streptomyces africanus (Meyers et al.). Laboratory trials showed that A. murispora and A. destruens at 1010 conidia mL−1 achieved the highest mortality rates (57.2% and 52.2%, respectively) after 14 days of application. Streptomyces species also proved effective, with S. bellus-E23-2 and S. galilaeus causing significant mortality (53.8% and 49.8%, respectively) at 1010 CFU mL−1. Combining parasitoids with these entomopathogens yielded varied results, with a notable success in the pairing of P. diaspidis with A. murispora at 1010 conidia mL−1 (89.7% mortality) and P. diaspidis with S. bellus-E23-2 at 1010 CFU mL−1 (86.3%). These findings revealed a mix of antagonistic and additive interactions, emphasizing the complexity of combining these biological agents. Semi-field trials confirmed the laboratory results, with P. diaspidis + A. murispora at 1010 conidia mL−1 achieving 50.4% mortality and P. diaspidis + A. destruens at 1010 conidia mL−1 reaching 49.2% mortality after 14 days of application. Thus, the accurate mix of biological control agents can effectively contribute to D. echinocacti management, emphasizing the importance of considering their interactions.