首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Laboratory evaluation of the compatibility of a new attractant contaminant device containing Metarhizium anisopliae with Ceratitis capitata sterile males.
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Laboratory evaluation of the compatibility of a new attractant contaminant device containing Metarhizium anisopliae with Ceratitis capitata sterile males.

机译:实验室评估了一种新的引诱性污染物装置,该装置包含无形金属异形菌与不育雄性角膜炎的雄性。

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Laboratory experiments were conducted to evaluate the compatibility of using the entomopathogenic fungus Metarhizium anisopliae, to be dispensed in a new attractant contaminant device (ACD), jointly with sterilized Ceratitis capitata males, as an integrated approach to control this major pest. The exposure of sterile Vienna 8 (V8) strain and wild type (WT) males to the contaminating part (infective dish) of the ACD showed similar susceptibility levels to the fungal strain (LT50 value of 4.52 and 4.72 days, respectively). Sterile V8 males were significantly less attracted to the infective dish (18.4%) than WT males (28.5%). As the success of Sterile Insect Technique (SIT) heavily relies on the mating success of sterile males in the field, mating performance of infected males was assessed. Around 85% of the females were mated, independently of the male strain and treatment (fungus-treated or untreated males) indicating that mating performance was unaffected by the fungus under laboratory conditions. Females showed a greater tendency to remate if previously mated to fungus-treated males, either V8 or WT. Our data suggest that this M. anisopliae based-ACD does not impair the performance of C. capitata sterile males and, therefore, it could be used combined with area wide SIT-based programs, providing that these results are validated in field conditions. The implications of this combined strategy to control C. capitata are discussed.
机译:进行了实验室实验,以评估将病原性真菌变形杆菌(Metrahizium anisopliae)与一种无菌的头孢藜(Ceratitis capitata)雄性一起分配到一种新的引诱污染物设备(ACD)中作为控制这种主要有害生物的综合方法,以评估其相容性。无菌维也纳8(V8)菌株和野生型(WT)男性暴露于ACD的污染部位(感染皿)显示出与真菌菌株相似的敏感性水平(LT 50 值为4.52和分别为4.72天)。不育的V8雄性比WT雄性(28.5%)更少地吸引感染盘(18.4%)。由于不育昆虫技术(SIT)的成功在很大程度上依赖于无菌雄性在该领域的交配成功,因此评估了被感染雄性的交配性能。大约有85%的雌性进行了交配,而与雄性品系和处理方式(经真菌处理或未处理的雄性)无关,这表明在实验室条件下,交配性能不受真菌的影响。如果事先与经真菌处理的雄性V8或WT交配,雌性的交配趋势更大。我们的数据表明,这种基于M. anisopliae的ACD不会损害C. capitata雄性不育的性能,因此,可以将其与基于SIT的区域程序结合使用,前提是这些结果在现场条件下得到了验证。讨论了这种联合策略对控制衣原体的影响。

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