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Using automated monitoring systems to uncover pest population dynamics in agricultural fields.

机译:使用自动化监控系统来发现农业领域的有害生物种群动态。

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Understanding pest population dynamics is an essential part of pest management programs, but the examination of field pest populations faces many logistical difficulties. Consequently, potentially useful characteristics of pest ecology that can be utilized in the development of pest control strategies are yet to be discovered. In this study, we used an automated pest monitoring system to study a population of the oriental fruit fly and revealed its intriguing population dynamics in the field. The system automatically counts the number of flies captured by traps, and the real-time data are accessible anywhere using the Internet. Data from two time periods (May-June and July-August) were analyzed. Autocorrelation analysis indicated that there was a statistically significant population cycle in May and June, but the population was stationary in July and August. Partial rate correlation analysis and an associated functional analysis revealed the existence of delayed density-dependence that differed between the two periods. These results suggest that the mechanism of population dynamics may change possibly within a short time frame. These patterns were revealed because of the detailed data that were made available by the monitoring system and were unknown prior to the study. The automated monitoring system will be highly valuable for the advancement of pest monitoring and pest management programs.Digital Object Identifier http://dx.doi.org/10.1016/j.agsy.2011.06.008
机译:了解有害生物种群动态是有害生物管理计划的重要组成部分,但是对实地有害生物种群的检查面临许多后勤方面的困难。因此,尚未发现可用于制定有害生物控制策略的有害生物生态学的潜在有用特性。在这项研究中,我们使用了自动化的虫害监测系统来研究东方果蝇的种群,并揭示了其在田间的有趣种群动态。该系统会自动计算陷阱捕获的苍蝇数量,并且可以使用Internet在任何地方访问实时数据。分析了两个时间段(5月至6月和7月至8月)的数据。自相关分析表明,5月和6月存在统计学上显着的种群周期,但7月和8月种群处于稳定状态。偏速率相关分析和相关的功能分析表明,存在延迟密度依赖性,这两个时期之间存在差异。这些结果表明,人口动态机制可能会在短时间内改变。由于监视系统已提供了详细数据,因此在研究之前尚不知道,因此揭示了这些模式。该自动化监测系统对于推进有害生物监测和有害生物管理计划将具有很高的价值。数字对象标识符http://dx.doi.org/10.1016/j.agsy.2011.06.008

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