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Does Thermal Variability Experienced at the Egg Stage Influence Life History Traits across Life Cycle Stages in a Small Invertebrate?

机译:卵期经历的热变异性会影响小型无脊椎动物整个生命周期阶段的生命史特征吗?

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摘要

Although effects of thermal stability on eggs have often been considered in vertebrates, there is little data thermal stability in insect eggs even though these eggs are often exposed in nature to widely fluctuating ambient conditions. The modularity of development in invertebrates might lead to compensation across life cycle stages but this remains to be tested particularly within the context of realistic temperature fluctuations encountered in nature. We simulated natural temperate fluctuations on eggs of the worldwide cruciferous insect pest, the diamondback moth (DBM), Plutella xylostella (L.), while maintaining the same mean temperature (25°C±0°C, 25±4°C, 25±6°C, 25±8°C, 25±10°C, 25±12°C) and assessed egg development, survival and life history traits across developmental stages. Moderate fluctuations (25±4°C, 25±6°C) did not influence performance compared to the constant temperature treatment, and none of the treatments influenced egg survival. However the wide fluctuating temperatures (25±10°C, 25±12°C) slowed development time and led to an increase in pre-pupal mass, although these changes did not translate into any effects on longevity or fecundity at the adult stage. These findings indicate that environmental effects can extend across developmental stages despite the modularity of moth development but also highlight that there are few fitness consequences of the most variable thermal conditions likely to be experienced by Plutella xylostella.
机译:尽管通常在脊椎动物中考虑过热稳定性对卵的影响,但是昆虫卵中的热稳定性数据很少,即使这些卵通常在自然界中暴露于剧烈波动的环境条件下也是如此。无脊椎动物发育的模块性可能导致整个生命周期阶段的补偿,但这仍有待检验,尤其是在自然界遇到的现实温度波动的情况下。我们模拟了全球十字花科害虫,小菜蛾(DBM),小菜蛾(Plutella xylostella)(L.)的卵的自然温度波动,同时保持相同的平均温度(25°C±0°C,25±4°C,25 ±6°C,25±8°C,25±10°C,25±12°C)并评估了卵在整个发育阶段的发育,生存和生活史特征。与恒温处理相比,适度的波动(25±4°C,25±6°C)不影响生产性能,并且所有处理均不影响蛋的存活率。然而,宽广的温度波动(25±10°C,25±12°C)减慢了发育时间并导致了pre前质量的增加,尽管这些变化并未对成年期的寿命或生育能力产生任何影响。这些发现表明,尽管蛾的发育模块化,但环境影响仍可跨越整个发育阶段,但也突出表明,小菜蛾可能遇到的最可变的热条件对健康的影响很小。

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  • 期刊名称 other
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  • 年(卷),期 -1(9),6
  • 年度 -1
  • 页码 e99500
  • 总页数 8
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