首页> 外文期刊>Journal of Stored Products Research >Effects of temperature on development of the azuki bean weevil, Callosobruchus chinensis (Coleoptera: Bruchidae) on two leguminous seeds
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Effects of temperature on development of the azuki bean weevil, Callosobruchus chinensis (Coleoptera: Bruchidae) on two leguminous seeds

机译:温度对两种豆类种子的愈伤组织雌蕊(Calosobruchus Chinensis(Coleoptera:Bruchidae)的影响

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摘要

The azuki bean weevil, Callosobruchus chinensis L., is one of the most serious stored product pests in the world. The temperature driven stage-specific development of C. chinensis was examined at eight constant temperatures of 15.97,18.31, 22.09, 26.15, 30.50, 34.39, 38.00, and 40.00 degrees C on azuki bean (Vigna angularis [Wild.] Ohwi & Ohashi) and cowpea (Vigna unguiculata L) seeds. Parameters for stage-specific development such as threshold temperatures and thermal constants were determined by linear and nonlinear models. The total developmental time (egg - adult) decreased with increasing temperature from 14 to 38 degrees C on both seeds. However, total developmental time varied from 127.93 to 122.25 days at 15.97 degrees C to 19.31 and 19.17 days at 38.00 degrees C on azuki bean and cowpea seeds, respectively. The nonlinear Logan-6 and Performance models estimated optimal temperatures as 373, 37.0, 36.5 and 37.1 degrees C on azuki bean, and as 36.7, 36.4, 34.5 and 36.6 degrees C on cowpea for egg, larva, pupa and egg to adult, respectively. The linear model estimated the lower temperature thresholds (T-min) of egg, larva, pupa and egg to adult as 16.97, 10.47, 1.36, and 10.28 degrees C on azuki bean, respectively, and 16.84, 10.33, 10.92, and 9.83 degrees C on cowpea, respectively. The thermal constants (K) for each stage completion was 35.13, 255.21, 233.11, and 503.41 degrees days (DD) for egg, larva, pupa, and egg to adult on azuki bean, respectively and 32.45, 246.50, 107.04, and 490.02 DD for egg, larva, pupa, and egg to adult on cowpea, respectively. Temperature also influenced the adult longevity. These findings on thermal requirements and temperature thresholds can be used to predict the occurrence, number of generations and population dynamics of C chinensis. (C) 2017 Elsevier Ltd. All rights reserved.
机译:Azuki Bean Weevil,Callosobruchus chinensis L.是世界上最严重的储存产品之一。在八个恒定温度下,在八个恒定温度下,在氮杂豆上持续八个恒定温度,在八个恒定温度下进行C.Chinensis的特异性发育。 )和豇豆(Vigna Unguiculata l)种子。通过线性和非线性模型确定阶段特异性开发的参数,例如阈值温度和热常数。总发育时间(蛋 - 成人)随着两种种子的14至38℃的温度越来越低。然而,总发展时间从127.93〜122.25天在15.97摄氏度至19.31和19.17天,分别在38.00摄氏度下在氮杂豆类和豇豆种子上的38.00度。非线性Logan-6和性能模型估计Azuki Bean上的最佳温度为373,37.0,36.5和37.1摄氏度,以及鸡蛋,幼虫,蛹和鸡蛋的豇豆上的36.7,36.4,34.5和36.6摄氏度。线性模型估计鸡蛋,幼虫,蛹和鸡蛋的较低温度阈值(T-min),分别为Azuki Bean的16.97,1.47,1.36和10.28摄氏度,16.84,10.33,10.92和9.83度C在豇豆上。每个阶段完成的热常数(k)为35.13,255.21,233.11和503.41度(DD)用于鸡蛋,幼虫和鸡蛋,分别为Azuki Bean,32.45,246.50,107.04和490.02 DD对于鸡蛋,幼虫,蛹和鸡蛋分别对豇豆的成人。温度也影响了成人寿命。这些关于热需求和温度阈值的调查结果可用于预测C Chinensis的发生,几代人数和种群动态。 (c)2017 Elsevier Ltd.保留所有权利。

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