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Sampling and interpretation of psyllid nymph counts in potatoes
Authors:Xavier Martini  Shawn Seibert  Sean M Prager  Christian Nansen
Institution:1. Department of Entomology, Texas AgriLife Research, Texas A&M University, 1102 E FM 1294, Lubbock, TX 79403, USA;2. Department of Plant and Soil Science, Texas Tech University, Campus Box 42122, Lubbock, TX 79409, USA;3. The Institute of Agriculture, School of Animal Biology, The University of Western Australia, 35 Stirling Highway, Crawley, Perth, WA 6009, Australia
Abstract:Development of effective management practices for insect pests relies heavily on sampling methods to accurately detect and quantify emerging populations. Herein we describe a novel method to extract and count nymphs of potato psyllid, Bactericera cockerelli (?ulc) (Hemiptera: Triozidae), from leaves in commercial fields of potato, Solanum tuberosum L. (Solanaceae). The proposed sampling method (referred to as the leaf washing method, LWM) consists of: (1) immersing samples of infested leaves in cold water to remove dust and sand; (2) immersing leaves in >85 °C water for 5 s; (3) extracting psyllid nymphs from heated water by passing it through a sampling unit composed of a funnel with a fine mesh‐organza fabric inside and attached to a vacuum pump; and (4) removing organza fabric and count psyllid nymphs under a stereoscope. With five sampling units operating simultaneously, one person is able to process and count immatures from about 400 leaf samples in two normal work days. As examples of applications, the LWM was used to characterize: (1) the vertical distribution of potato psyllid nymphs in the potato canopy; and (2) the spatio‐temporal distribution of potato psyllid nymphs in three potato varieties. Using LWM, we showed that psyllid nymphs were most predominant in the middle portion of the canopy and that spatio‐temporal distributions of nymphs varied among potato varieties.
Keywords:direct sampling  row crops  IPM  Bactericera cockerelli  Hemiptera  Triozidae  Solanum tuberosum  leaf washing
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