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Sporadic short temperature events cannot be neglected in predicting impacts of climate change on small insects

机译:在预测气候变化对小昆虫的影响时,零星的短温事件不能忽视

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摘要

Climate warming is characterized by increase in extreme heat events (EHEs). EHEs and mild temperature periods alternate with each other and form complex climate scenarios. Among these scenarios, low-frequency and short-duration extreme heat events during long mild periods (sporadic short EHEs) and low-frequency and short-duration mild periods during long extreme heat events (sporadic short mild periods) commonly occur in nature. The biological effects of these two types of temperature events have not been thoroughly elucidated to date. To clarify the biological effects of these temperature events on organisms, we selected the English grain aphid, a globally important cereal pest, as our model system. We exposed aphids to simulated 24-h diurnal fluctuating temperatures, inserted these events during the wheat growing season and then investigated development, adult longevity, fecundity, survival, and demographic parameters. We found that sporadic short mild periods during a long EHE could improve their life history traits. Increasing the duration of mild periods from 1 day to 2 days did not significantly change their demographic performance. Sporadic short EHEs during a long mild period did not significantly affect vital rates, while increasing the duration of EHEs from 1 day to 2 days worsened the aphids' performance. We found that short mild episodes in the hot season may benefit small insects to buffer long duration heatwaves. We discussed how sporadic short mild periods during a long EHE supplied aphids a chance to recover from heat stress. Thus, we suggest that sporadic temperature events should be considered in population prediction of small insects under climate change and should be integrated into pest management.
机译:气候变暖的特点是极端热事件(ZEHS)的增加。锥形和温和的温度周期彼此交替,形成复杂的气候情景。在这些场景中,在长期温和时段(零星短嘴)(零星短嘴)和低频和短持续时间温和期间的低频和短持续时间的极端热量常见于自然界中通常发生。迄今为止,这两种温度事件的生物学效应尚未彻底阐明。为了阐明这些温度事件对生物体的生物学效应,我们选择了英国谷物蚜虫,是全球重要的谷物害虫,作为我们的模型系统。我们暴露于模拟24-H昼夜波动温度的蚜虫,在小麦生长季节插入这些事件,然后调查了发展,成人寿命,繁殖力,生存和人口统计参数。我们发现,在长期以来,零星的短期温和时期可以改善他们的生命历史特征。从1天到2天的温和时期的持续时间没有显着改变其人口表现。零星的短嘴长时间的温和时期没有显着影响重要率,同时增加了1天至2天的嘴的春眠时间恶化了蚜虫的性能。我们发现炎热季节的短暂发作可能使小昆虫受益以缓冲长期散热。我们讨论了长期潮流的蚜虫期间散发性的短态度如何有机会从热应激中恢复。因此,我们建议在气候变化下的小昆虫的人口预测中考虑零星的温度事件,并应融入害虫管理。

著录项

  • 来源
    《Journal of Insect Physiology》 |2019年第2019期|共9页
  • 作者

    Zhu Liang; Wang Lin; Ma Chun-Sen;

  • 作者单位

    Chinese Acad Agr Sci Climate Change Biol Res Grp State Key Lab Biol Plant Dis &

    Insect Pests Inst Plant Protect 2 Yuanmingyuan West Rd CN-100193 Beijing Peoples R China;

    Chinese Acad Agr Sci Climate Change Biol Res Grp State Key Lab Biol Plant Dis &

    Insect Pests Inst Plant Protect 2 Yuanmingyuan West Rd CN-100193 Beijing Peoples R China;

    Chinese Acad Agr Sci Climate Change Biol Res Grp State Key Lab Biol Plant Dis &

    Insect Pests Inst Plant Protect 2 Yuanmingyuan West Rd CN-100193 Beijing Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 昆虫生理学;
  • 关键词

    Sitobion avenae; Extreme climate event; Heat recovery; Fluctuating temperature; Heat wave; Mild temperature;

    机译:Sitobion Avenae;极端气候事件;热回收;波动温度;热浪;温度温度;

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