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云南元江芒果园桔小实蝇成虫日活动规律及空间分布格局
引用本文:叶文丰,李林,孙来亮,肖春,董文霞.云南元江芒果园桔小实蝇成虫日活动规律及空间分布格局[J].生态学报,2012,32(16):5199-5207.
作者姓名:叶文丰  李林  孙来亮  肖春  董文霞
作者单位:云南农业大学植物保护学院,昆明,650201
基金项目:公益性行业(农业)科研专项经费项目(200903047)
摘    要:利用甲基丁香酚引诱剂和黄板对桔小实蝇Bactrocera dorsalis成虫日活动规律及飞行高度进行了研究,同时根据多种聚集度指标对桔小实蝇成虫的空间分布格局进行了分析。结果表明:元江县挂果期芒果园内桔小实蝇日活动量高峰出现在10:00、16:00左右,活动量低谷出现在8:00、14:00和19:00左右,日间温湿度与其日活动量之间无线性相关关系;成虫飞行高度随时间变化,受降雨影响,雌雄成虫飞行高度存在差异。上午、中午成虫多近地飞行,午后多在1.5 m以上高度飞行,降雨导致成虫飞行活动量大幅减退,多分布于1.5 m以上枝叶附近。株高8 m的3a芒果树4 m高度处黄板捕获虫量最大,其次是2 m高处,6m以上虫量较少。雄性成虫在芒果园中呈聚集分布,原因之一是其自身的聚集行为;雌虫空间分布不均,主要呈聚集分布,少数部分为均匀分布,其聚集由环境因素造成。

关 键 词:桔小实蝇  芒果  日活动规律  空间分布
收稿时间:2012/1/17 0:00:00
修稿时间:2012/5/29 0:00:00

Daily activity and spatial distribution pattern of the oriental fruit fly, Bactrocera dorsalis (Diptera:Tephritidae) in mango orchard,Yuanjiang,Yunnan
YE Wenfeng,LI Lin,SUN Lailiang,XIAO Chun and DONG Wenxia.Daily activity and spatial distribution pattern of the oriental fruit fly, Bactrocera dorsalis (Diptera:Tephritidae) in mango orchard,Yuanjiang,Yunnan[J].Acta Ecologica Sinica,2012,32(16):5199-5207.
Authors:YE Wenfeng  LI Lin  SUN Lailiang  XIAO Chun and DONG Wenxia
Institution:Plant Protection Institute, Yunnan Agricultural University, Yunnan, Kunming 650201, China;Plant Protection Institute, Yunnan Agricultural University, Yunnan, Kunming 650201, China;Plant Protection Institute, Yunnan Agricultural University, Yunnan, Kunming 650201, China;Plant Protection Institute, Yunnan Agricultural University, Yunnan, Kunming 650201, China;Plant Protection Institute, Yunnan Agricultural University, Yunnan, Kunming 650201, China
Abstract:The oriental fruit fly, Bactrocera dorsalis (Hendel) (Diptera:Tephritidae), is an imortant worldwide quarantine pest. Yunnan province, with its diverse climates and rich diversity of plants, suffers heavily from the oriental fruit fly and, has the worst fly damage in China. While highly effective traps and insecticide spray are applied to suppress field population density of the fly, the indetermination of the density of trapping devices as well as the height and time of spot spray results uncertain control efficiency. Excessive application of pesticides also leads to a number of problems such as pesticide residues and resistance of the fly. The study was conducted to serve as a reference for standardizing the management practice of the pest.Daily activities and spatial distribution patterns of the oriental fruit fly, were studied in two mango orchards in Yuanjiang,Yunnan, from early June to early July, 2011. The fruit flies were hourly observed with methyl eugenol-baited traps and yellow sticky traps from 8:00 to 19:00, respectively. Population data were collected and their spatial distribution patterns were analyzed by some distribution parameters. The results showed that the dynamic model of the number of males captured was a two-peak curve with two peaks recorded at 10:00 and 16:00, and three troughs at 8:00, 14:00 and 19:00. There is no linear relationship between daily activity of the fly and atmospheric temperature and relative humidity. The flight altitudes varied with time in a day and were influenced by rainfall. The catches near the ground (below 0.5 m) were greater than those near the branches (above 1.5m) in the morning and noon on the sunny days. Rainfall played negative role on the flight activity and resulted a sharp decrease of captured number of the flies. Most flies preferred staying on the back of leaves above 1.5 m rather than near the ground on the rainy days. The maximum number captured by yellow traps was on 4 meter height of eight-meter-tall mango trees and significantly fewer flies had been found above 6 meter from the ground. The spatial distribution pattern of males in mango orchard was aggregation type, which was partly due to their aggregation behaviors. While a few represent a pattern of partly uniform, most females tend to aggregated distribution, which was due to the environment factors.
Keywords:Bactrocera dorsalis  mango  daily activity  spatial distribution pattern
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