4.5 Article

A study on the feasibility of quantifying the population density of stored product insects in air-tight grain storage using CO2 concentration measurements

期刊

JOURNAL OF STORED PRODUCTS RESEARCH
卷 73, 期 -, 页码 21-29

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jspr.2017.05.005

关键词

CO2 concentration; Respiration rate; Stored product insect; Population density

资金

  1. Thailand Research Fund through the Royal Golden Jubilee Ph.D. Program [PHD/0056/2554]
  2. Kasetsart University Research and Development Institute (KURDI) (Project titled Improvement of paddy rice storage in silos by monitoring of temperature, relative humidity, and carbon dioxide concentration)

向作者/读者索取更多资源

This study was aimed at estimating the number of insects per 1 kg of paddy (IPK) in an air-tight mock-up silo by CO2 concentration monitoring. The first experiment was to determine the respiration rates of adult Sitophilus zeamais, Rhyzopertha dominica, and Tribolium castaneum. CO2 concentrations were recorded from groups of 50, 100 and 200 insects with and without 125 g of brown rice. The respiration rate was calculated from the slope of the CO2 concentration curve. A sample size of at least 100 insects was recommended. In 100-insect group, with the presence of food the respiration rates of S. zeamais, R. dominica, and T. castaneum were 9.57-14.13, 1.96-3.93 and 4.59-11.76 mu l(CO2)/insect-h, respectively. In the second experiment, S. zeamais populations at actual IPK = 2, 0.5, 0.25, 0.125 and 0.0625 in a 1.618 m(3) silo filled with paddy were quantitatively determined. Similarly, R. dominica and T. castaneum populations at actual IPK = 0.5, 0.25, 0.125 and 0.0625 in 0.064 m(3) silos were estimated in the third experiment. In each trial, small containers filled with a known number of adult insects along with brown rice were buried in the silo. Additionally, a control silo containing only disinfested paddy was set up in parallel. The insect population density was calculated from the difference in the slopes of the CO2 curves between the infested and control silos divided by the respiration rate of one insect. On average, for each species and each infestation level the estimated population density was not greater than twice of the actual ones. Although several assumptions (e.g., silos being completely sealed, only one species and one life stage of infesting insects) had to be made, monitoring CO2 concentrations could potentially be an effective tool for determining insect population density during grain storage. (C) 2017 Elsevier Ltd. All rights reserved.

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