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首页> 外文期刊>Bulletin of Entomological Research >Biological characteristics of Anticarsia gemmatalis (Lepidoptera: Noctuidae) for three consecutive generations under different temperatures: understanding the possible impact of global warming on a soybean pest
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Biological characteristics of Anticarsia gemmatalis (Lepidoptera: Noctuidae) for three consecutive generations under different temperatures: understanding the possible impact of global warming on a soybean pest

机译:连续三个世代在不同温度下抗生虫(鳞翅目:夜蛾科)的生物学特性:了解全球变暖对大豆害虫的可能影响

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Climate changes can affect the distribution and intensity of insect infestations through direct effects on their life cycles. Experiments were carried out during three consecutive generations to evaluate the effect of different temperatures (25 degrees C, 28 degrees C, 31 degrees C, 34 degrees C and 37+/-1 degrees C) on biological traits of the velvetbean caterpillar Anticarsia gemmatalis Hubner, 1818 (Lepidoptera: Noctuidae). The insects were fed on artificial diet and reared in environmental chambers set at 14h photophase. The developmental cycle slowed with the increase in the temperature, within the 25 degrees C to 34 degrees C range. Male and female longevities were reduced with an increase in temperature from 25 degrees C to 28 degrees C. Egg viability was highest at 25 degrees C, and the sex ratio was not influenced by temperature, in the three generations. There was no interactive effect between development time and temperature on pupal weight. The results suggested that the increase in the temperature negatively impacted A. gemmatalis development inside the studied temperature range, indicating a possible future reduction of its occurrence on soybean crops, as a consequence of global warming, mainly considering its impact on tropical countries where this plant is cropped. A. gemmatalis was not able to adapt to higher temperatures in a three-generation interval for the studied temperature range. However, a gradual increase and a longer adaptation period may favor insect selection and consequently adaptation, and must be considered in future studies in this area. Moreover, it is important to consider that global warming might turn cold areas more suitable to A. gemmatalis outbreaks. Therefore, more than a future reduction of A. gemmatalis occurrence due to global warming, we might expect changes regarding its area of occurrence on a global perspective.
机译:气候变化可通过直接影响其生命周期来影响昆虫侵染的分布和强度。在连续三个世代中进行了实验,以评估不同温度(25摄氏度,28摄氏度,31摄氏度,34摄氏度和37 +/- 1摄氏度)对绒毛虫毛虫抗gem虫的生物学特性的影响,1818年(鳞翅目:夜蛾科)。以人工饮食喂养昆虫,并在设置为14h光相的环境室内饲养。在25摄氏度至34摄氏度的范围内,随着温度的升高,发育周期变慢。随着温度从25摄氏度增加到28摄氏度,男性和女性的寿命降低。在三代中,卵的生存力在25摄氏度时最高,性别比例不受温度的影响。发育时间和温度对p体重没有交互作用。结果表明,温度升高对所研究温度范围内的双歧杆菌的生长有负面影响,这表明由于全球变暖,其在大豆作物上的发生可能未来减少,主要考虑到其对该植物在热带国家的影响被裁剪。在所研究的温度范围内,双歧曲霉不能在三代间隔内适应更高的温度。然而,逐渐增加和更长的适应期可能有利于昆虫的选择和适应,因此在该领域的未来研究中必须加以考虑。此外,重要的是要考虑到全球变暖可能会使寒冷地区更适合双歧杆菌的爆发。因此,除了全球变暖导致的双歧杆菌发生的未来减少以外,我们可以期望从全球角度来看其发生区域的变化。

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