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南部高丛蓝莓和兔眼蓝莓种植园中花蓟马的水平和垂直分布,以及关于蓝莓花内蓟马新采样方法的说明

Horizontal and vertical distribution of flower thrips in southern highbush and rabbiteye blueberry plantings, with notes on a new sampling method for thrips inside blueberry flowers.

作者信息

Arévalo H A, Liburd O E

机构信息

Department of Entomology and Nematology, University of Florida, Gainesville, FL 32611, USA.

出版信息

J Econ Entomol. 2007 Oct;100(5):1622-32. doi: 10.1603/0022-0493(2007)100[1622:havdof]2.0.co;2.

DOI:10.1603/0022-0493(2007)100[1622:havdof]2.0.co;2
PMID:17972640
Abstract

The dispersal behavior of flower thrips was studied during two field seasons within blueberry (Vaccinium spp.) plantings in Florida and southern Georgia. A "shake and rinse" technique used to extract thrips from inside the blueberry flowers was not significantly different from the conventional dissecting technique, but the time taken to complete the extraction of thrips was significantly shorter. Overall, the highest concentration of thrips was captured inside the canopy of blueberry bushes. Using a grid of traps to monitor the dispersal of thrips during the blueberry flowering season, we analyzed their dispersion with graphical and analytical methods to determine and describe their distribution within blueberry plantings. Thrips began to form "hot-spots" 5-7 d after bloom initiation. A hot-spot is defined as a large number of thrips concentrated in a small area of the field, whereas the rest of the field has a low population. The behavior of the population inside these hot-spots fit a Gaussian tendency and a regression was conducted to describe this tendency. Green's and Standardized Morisita's indices were used to determine thrips level of aggregation. Results showed significantly aggregated populations of thrips in both years. Formation of hot-spots in blueberry plantings seemed to be random. However, the formation of hot-spots was higher in places where more than seven thrips per day were captured on sticky traps, 5 to 7 d after the bloom begins. With these results, producers will be able to monitor thrips populations and locate and manage hot-spots before they become a more serious a problem on blueberry farms.

摘要

在佛罗里达州和佐治亚州南部的蓝莓(越橘属)种植园内,连续两个田间季节对花蓟马的扩散行为进行了研究。用于从蓝莓花内提取蓟马的“摇晃冲洗”技术与传统解剖技术相比,差异不显著,但完成蓟马提取所需的时间显著更短。总体而言,蓝莓灌木丛冠层内捕获的蓟马浓度最高。在蓝莓开花季节,使用陷阱网格监测蓟马的扩散情况,我们用图形和分析方法分析它们的扩散,以确定并描述它们在蓝莓种植园内的分布。蓟马在开花开始后5 - 7天开始形成“热点”。热点定义为大量蓟马集中在田间的一个小区域,而田间其他区域的种群数量较低。这些热点内种群的行为符合高斯趋势,并进行了回归分析以描述这种趋势。使用格林指数和标准化森下指数来确定蓟马的聚集程度。结果表明,这两年蓟马种群均显著聚集。蓝莓种植园中热点的形成似乎是随机的。然而,在开花开始5至7天后,粘性诱捕器每天捕获超过7只蓟马的地方,热点的形成更为频繁。有了这些结果,生产者将能够监测蓟马种群,并在热点在蓝莓农场成为更严重问题之前对其进行定位和管理。

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