叶龄对生物防治剂褐花姬蜂的蛹重和发育时间有影响,但对滞育诱导没有影响。

IF 1.8 3区 农林科学 Q2 ENTOMOLOGY Environmental Entomology Pub Date : 2025-02-19 DOI:10.1093/ee/nvae095
M Lukas Seehausen, Ian M Jones, Sandy M Smith, Robert S Bourchier
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引用次数: 0

摘要

兼性滞育是一种生活史特征,它允许昆虫在条件有利时进行持续发育,在条件不利时进入滞育。昆虫嗜毒会对杂草生物防治剂的成功产生影响,因为额外的世代会增加药剂数量的增长,并减少目标杂草的后期恢复。引起滞育的最常见因素是光周期和温度;然而,营养的作用越来越被认识到。采用室内实验方法,研究了光照周期和叶龄对北美入侵燕窝草生物防治剂Hypena opulenta (Christoph)滞育诱导、蛹重和蛹发育时间的影响。采用析因试验设计,在长(16:8 h光照:暗)和短(12:12 h)光照周期的条件下,在燕窝草(Vincetoxicum rosicum Kleopow)幼叶和老叶Barbar上饲养h . opulenta。(夹竹桃科)。光周期是唯一影响黄杨滞育诱导的因素。叶龄不影响滞育诱导,但影响蛹重和蛹发育时间,叶龄越老,蛹重越低,蛹期越长。在野外条件下,这些影响可能通过减少冬季准备和增加暴露于捕食者而影响蛹死亡率。这些结果支持了基于光周期的黄杨选择性模型,并表明圈养黄杨在2或3代后进入滞育的趋势,即使没有较短的光周期,也不是叶龄变化的结果。
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Foliage age affects pupal weight and development time, but not diapause induction in the biological control agent Hypena opulenta (Lepidoptera: Erebidae).

Facultative diapause is a life history trait that allows insects to undergo continuous development when conditions are favorable or to enter diapause when they are not. Insect voltinism can have an impact on the success of a weed-biological control agent because additional generations can increase agent population growth and reduce late-season recovery in the target weed. The most common factors that cue diapause are photoperiod and temperature; however, the role of nutrition is increasingly being recognized. We conducted a laboratory experiment to examine the effects of photoperiod and foliage age on diapause induction, pupal weight, and pupal development time in Hypena opulenta (Christoph) (Lepidoptera: Erebidae), a biological control agent for invasive swallow-worts in North America. A factorial experimental design was employed whereby H. opulenta was reared at long (16:8 h light:dark) and short (12:12 h) photoperiods on young and old swallow-wort foliage (Vincetoxicum rossicum Kleopow) Barbar. (Apocynaceae). Photoperiod was the only factor that affected diapause induction in H. opulenta. While foliage age did not affect diapause induction, it did affect pupal weight and pupal development time, with older foliage resulting in lower pupal weight and extended pupal phase. In field conditions, these impacts could affect pupal mortality through reduced winter preparedness and increased exposure to predators. These results support H. opulenta voltinism models based on photoperiods and indicate that the tendency of captive-reared H. opulenta to enter diapause after 2 or 3 generations, even in the absence of short photoperiods, is not a result of changing foliage age.

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来源期刊
Environmental Entomology
Environmental Entomology 生物-昆虫学
CiteScore
3.90
自引率
5.90%
发文量
97
审稿时长
3-8 weeks
期刊介绍: Environmental Entomology is published bimonthly in February, April, June, August, October, and December. The journal publishes reports on the interaction of insects with the biological, chemical, and physical aspects of their environment. In addition to research papers, Environmental Entomology publishes Reviews, interpretive articles in a Forum section, and Letters to the Editor.
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