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云杉八齿小蠹的预蛹滞育和 IV 龄幼虫发育率(鞘翅目:象甲科,小蠹科)。

Prepupal diapause and instar IV developmental rates of the spruce beetle, Dendroctonus rufipennis (Coleoptera: Curculionidae, Scolytinae).

机构信息

Rocky Mountain Research Station, U.S. Forest Service, 860 North 1200 East, Logan, UT 84321, USA.

出版信息

J Insect Physiol. 2011 Oct;57(10):1347-57. doi: 10.1016/j.jinsphys.2011.06.011. Epub 2011 Jun 29.

Abstract

The spruce beetle, Dendroctonus rufipennis (Kirby), is an important mortality agent of native spruces throughout North America. The life-cycle duration of this species varies from 1 to 3 years depending temperature. The univoltine cycle (one generation per year) is thought to maximize outbreak risk and accelerate host mortality in established outbreaks. Prepupal diapause is associated with the semivoltine cycle (one generation per 2 years) and we investigated thermal conditions that result in diapause induction. Preliminary experiments used respirometry in an attempt to distinguish the diapause state of experimental insects but the technique was apparently confounded by low respiration before and during pupation, regardless of diapause status. Therefore, diapause induction was deduced using developmental delays. The observed developmental response was not a "switch", with developmental delay either present or absent, but instead varied continuously. We found that temperatures <15°C from instar III through mid-instar IV were associated with developmental delays beyond that expected from cool temperatures. Moreover, the duration of exposure to cool temperatures was important in determining the degree of developmental delay. Small, if any, delays were observed if the cumulative exposure to <15°C was <20 d whereas >40 d cumulative exposure was associated with distinct developmental suppression. Intermediate exposure to cool temperatures resulted in minor developmental delays. We used our results to parameterize a maximum likelihood estimation model of temperature-dependent instar IV developmental rates, including the effect of diapause. This model can be included as part of a spruce beetle phenology model for predicting population dynamics.

摘要

云杉八齿小蠹,Dendroctonus rufipennis(Kirby),是北美原生云杉的重要致死因子。该物种的生命周期持续时间因温度而异,从 1 年到 3 年不等。单世代周期(一年一代)被认为最大限度地增加了爆发风险,并在已建立的爆发中加速了宿主的死亡。预蛹滞育与半世代周期(每两年一代)有关,我们研究了导致滞育诱导的热条件。初步实验使用呼吸测量法试图区分实验昆虫的滞育状态,但该技术显然受到蛹化前和蛹化期间低呼吸的干扰,而与滞育状态无关。因此,通过发育延迟来推断滞育诱导。观察到的发育反应不是“开关”,即发育延迟要么存在要么不存在,而是连续变化的。我们发现,从三龄到中龄四的温度<15°C与预期低温之外的发育延迟有关。此外,暴露于低温的持续时间对于确定发育延迟的程度很重要。如果暴露于<15°C 的累积时间<20 天,则观察到很小的延迟,如果暴露于<15°C 的累积时间>40 天,则与明显的发育抑制有关。中间暴露于低温会导致轻微的发育延迟。我们利用我们的结果来参数化一个基于温度的四龄发育率最大似然估计模型,包括滞育的影响。该模型可以作为预测种群动态的云杉甲虫物候模型的一部分。

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