Amarasekare Kaushalya G, Shearer Peter W
Department of Agricultural and Environmental Sciences, College of Agriculture, Tennessee State University, 3500 John A. Merritt Blvd., Nashville, TN 37209, USA.
Tree Fruit Research and Extension Center, Washington State University, 1100 N. Western Ave., Wenatchee, WA 98801, USA.
Insects. 2017 Sep 30;8(4):105. doi: 10.3390/insects8040105.
This study focused on conservation biological control of pear psylla, , in the Pacific Northwest, USA. We hypothesized that insecticides applied against the primary insect pest, codling moth , negatively impact natural enemies of pear psylla, thus causing outbreaks of this secondary pest. Hence, the objective of this study was to understand how codling moth management influences the abundance of pear psylla and its natural enemy complex in pear orchards managed under long-term codling moth mating disruption programs. We conducted this study within a pear orchard that had previously been under seasonal mating disruption for codling moth for eight years. We replicated two treatments, "natural enemy disrupt" (application of two combination sprays of spinetoram plus chlorantraniliprole timed against first-generation codling moth) and "natural enemy non-disrupt" four times in the orchard. Field sampling of psylla and natural enemies (i.e., lacewings, coccinellids, spiders, , syrphid flies, earwigs) revealed that pear psylla populations remained well below treatment thresholds all season despite the reduced abundance of key pear psylla natural enemies in the natural enemy disrupt plots compared with the non-disrupt treatment. We speculate that pear psylla are difficult to disrupt when pear orchards are under long-term codling moth disruption.
本研究聚焦于美国太平洋西北地区梨木虱的保护生物防治。我们假设,针对主要害虫苹果蠹蛾施用杀虫剂会对梨木虱的天敌产生负面影响,从而导致这种次要害虫的爆发。因此,本研究的目的是了解在长期实施苹果蠹蛾交配干扰计划管理的梨园中,苹果蠹蛾的防治措施如何影响梨木虱及其天敌群落的数量。我们在一个此前已进行了八年季节性苹果蠹蛾交配干扰的梨园中开展了这项研究。我们在果园中对“天敌干扰”(针对第一代苹果蠹蛾施用两种多杀霉素与氯虫苯甲酰胺的混合喷雾剂)和“天敌无干扰”这两种处理进行了四次重复试验。对木虱及其天敌(即草蛉、瓢虫、蜘蛛、食蚜蝇、蠼螋)的田间采样显示,尽管与无干扰处理相比,天敌干扰地块中梨木虱的关键天敌数量有所减少,但整个季节梨木虱的种群数量仍远低于处理阈值。我们推测,当梨园长期处于苹果蠹蛾干扰状态时,梨木虱很难被干扰。