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Effects of Environmental Temperature onCapnodis tenebrionisAdult Phenology

机译:环境温度对蓝鳍小夜蛾成虫的影响

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The phenology ofCapnodis tenebrionisadults was presented with reference to two different climate conditions. In a temperate moderate-warm climate, adult density showed two separate peaks during the year: one in early summer of the overwintering generation and one with beetles emerging in the late summer. In a warmer semiarid climate, the overwintering adults and the new generation overlapped during summer with a continuous increase of adult density. The difference in the average annual temperature between areas during the study period was almost3∘C, and, in the warmer area, the new generation ofC. tenebrionisemerged at least one month earlier. To make a prediction of adult presence, a model utilizing degree-days was developed from data collected over a five-year period. Models obtained from equations (Logistic 4-parameter,y(x)=yo+a/(1+(x/xo)b)) of each year were developed to describe the relationship between degree-day accumulation (with a minimal threshold activity temperature of14.21∘Ccalculated in the laboratory) and the cumulative percentage of adult presence. According to the overall model, the 50% of overwintering beetles occurred at 726 degree-days (Biofix: 1st March) and the emerging beetles occurred at 801 degree-days (Biofix: 1st July). The results show that a change in temperature is an important aspect that highlights the adaptability of this species.
机译:参照两种不同的气候条件,介绍了Capnodis tenebrionisadults的物候。在温带中度温暖的气候下,一年中的成虫密度出现两个单独的峰值:一个在越冬一代的初夏,另一个在夏末出现甲虫。在温暖的半干旱气候下,越冬的成年人和新生代在夏季重叠,成年人密度不断增加。在研究期间,各地区之间的年平均温度差几乎为3∘C,而在较暖的地区,则为新一代C。 tenebrionise至少在一个月前合并。为了预测成年人的存在,从五年期间收集的数据中开发了利用学位日数的模型。建立了从每年的方程式(Logistic 4参数,y(x)= yo + a /(1+(x / xo)b))获得的模型来描述度日累积之间的关系(具有最小阈值活动)实验室计算得出的最高温度为14.21摄氏度)和成人存在的累积百分比。根据总体模型,越冬甲虫的50%发生在726度日(Biofix:3月1日),而新兴甲虫发生在801度日(Biofix:7月1日)。结果表明,温度变化是突出该物种适应性的重要方面。

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