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Development and life table parameters of Tetranychus turkestani (Acarina: Tetranychidae) at different constant temperatures

机译:在不同的恒温条件下,Tetranychus turkestani(A螨:Tetranychidae)的发育和生命表参数

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Selected life history characteristics of the strawberry spider mite (Tetranychus turkestani Ugarov and Nikolski, Acarina: Tetranychidae) were studied at four constant temperatures (15, 20, 25 and 30 °C). Egg-to-adult developmental time of females ranged from 50.11 +/- 0.79 days at 15 °C to 7.73 +/- 0.14 days at 30 °C. An average of 140.33 +/- 5.49 degree-days was required to complete development above the lower thermal threshold (11.89 °C). Preimaginal mortality was 62.92, 16.67, 41.82 and 42.31% at 15, 20, 25 and 30 °C, respectively. Mean longevity of female T. turkestani ranged from 30.22 +/- 2.88 days at 15 °C to 5.78 +/- 0.10 days at 30 °C. Mean total fecundity ranged from 23.11 +/- 3.14 to 49.95 +/- 5.54 eggs / female. The sex ratio (% females) ranged from 69.00 +/- 0.04 to 83.01 +/- 0.02%. The intrinsic rate of population increase (rm) ranged from 0.272 +/- 0.010 at 30 °C to 0.033 +/- 0.002 (female per female per day) at 15 °C. The population doubled most quickly at 30 °C (2.54 +/- 0.09 d) and most slowly at 15 °C (20.46 +/- 1.59 d). Based on these results, we can predict the presence of the different stages of the strawberry spider mite on cucumber over time. This information will therefore enable us to determine more precisely the best time to control this pest.
机译:在四个恒定温度(15、20、25和30°C)下研究了草莓螨(Tetranychus turkestani Ugarov和Nikolski,Acarina:Tetranychidae)的选定生活史特征。雌性卵到成人的发育时间在15°C时为50.11 +/- 0.79天,在30°C时为7.73 +/- 0.14天。要完成高于较低热阈值(11.89°C)的显影,平均需要140.33 +/- 5.49度-天。 15、20、25和30°C时的假想死亡率分别为62.92%,16.67%,41.82%和42.31%。雌性T. turkestani的平均寿命在15°C时为30.22 +/- 2.88天,在30°C时为5.78 +/- 0.10天。平均总繁殖力范围从23.11 +/- 3.14到49.95 +/- 5.54个鸡蛋/雌性。性别比(女性百分比)从69.00 +/- 0.04到83.01 +/- 0.02%。人口的内在增长率(rm)在30°C时为0.272 +/- 0.010,在15°C时为0.033 +/- 0.002(每名女性每天女性)。人口在30°C(2.54 +/- 0.09 d)时翻倍最快,而在15°C(20.46 +/- 1.59 d)时最慢翻倍。根据这些结果,我们可以预测黄瓜上随着时间推移草莓螨的不同阶段的存在。因此,这些信息将使我们能够更精确地确定防治该害虫的最佳时间。

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