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跨代光周期经历对斑衣蜡蝉卵寄生蜂繁殖和发育的影响

Effects of transgenerational photoperiod experience on the reproduction and development of , an egg parasitoid of the spotted lanternfly.

作者信息

Bao Ke-Xin, Wang Xiao-Yi, Cao Liang-Ming, Xin Bei, Broadley Hannah J, Gould Juli R

机构信息

Key Laboratory of Forest Protection of National Forestry and Grassland Administration, Ecology and Nature Conservation Institute, Chinese Academy of Forestry, Beijing, China.

College of Forestry and Landscape Architecture, Xinjiang Agricultural University, Urumqi, China.

出版信息

Front Insect Sci. 2023 May 17;3:1153723. doi: 10.3389/finsc.2023.1153723. eCollection 2023.

Abstract

Transgenerational experience can affect a range of natural enemies' life-history traits and can be involved in the control of developmental plasticity. As a major egg parasitoid of the spotted lanternfly, (Hemiptera: Fulgoridae), the wasp (Hymenoptera: Eupelmidae) is effective at suppressing its host populations. The reproductive and developmental traits of is known to depend on photoperiod conditions, but transgenerational photoperiodic effects have yet to be evaluated. To evaluate the transgenerational photoperiodic effects on , we assessed wasp adult longevity, female fecundity, sex ratio, and diapause rate over three consecutive generations under different experimental photoperiods (L16:D8, L12:D12, and L8:D16), using (Lepidoptera: Saturniidae) eggs as hosts. The results suggest that transgenerational experience significantly impacts several biological parameters of progeny. All parasitoids entered a diapause under the long photoperiod condition (i.e., L16:D8), after which the number of female parasitoids and fecundity of the 2nd and 3rd generations increased significantly as compared to the 1st generation. With the long photoperiod conditions, the female ratio rose from 68.1% (1st generation) to 86.0% (3rd generation) and the progeny per females increased from 35.8 to 75.7. However, adult longevity of females and males were shortened significantly. With the intermediate photoperiod (L12:D12) conditions, fecundity and sex ratio of the 2nd and 3rd generations increased significantly as compared to the 1st generation. With the short photoperiod (L8:D16) conditions, there were no significant differences in fecundity among three generations, but sex ratio of the 2nd and 3rd generations increased significantly as compared to the 1st generation. These results on transgenerational photoperiodic effects can be applied to improve laboratory rearing efficiency of parasitoids and to better understand population dynamics in the field across a latitudinal gradient.

摘要

代际经历会影响一系列天敌的生活史特征,并可能参与发育可塑性的调控。作为斑衣蜡蝉(半翅目:蜡蝉科)的主要卵寄生蜂,李氏长棒四节蚜小蜂(膜翅目:四节蚜小蜂科)能有效抑制其寄主种群数量。已知李氏长棒四节蚜小蜂的生殖和发育特征取决于光周期条件,但代际光周期效应尚未得到评估。为了评估代际光周期对李氏长棒四节蚜小蜂的影响,我们在不同的实验光周期(L16:D8、L12:D12和L8:D16)下,以柞蚕(鳞翅目:大蚕蛾科)卵为寄主,连续评估了三代寄生蜂的成虫寿命、雌虫繁殖力、性别比和滞育率。结果表明,代际经历显著影响子代的几个生物学参数。所有寄生蜂在长光周期条件下(即L16:D8)进入滞育,之后第二代和第三代雌寄生蜂的数量和繁殖力相比第一代显著增加。在长光周期条件下,雌性比例从68.1%(第一代)上升到86.0%(第三代),每只雌虫的子代数量从35.8增加到75.7。然而,雌虫和雄虫的成虫寿命显著缩短。在中间光周期(L12:D12)条件下,第二代和第三代的繁殖力和性别比相比第一代显著增加。在短光周期(L8:D16)条件下,三代之间的繁殖力没有显著差异,但第二代和第三代的性别比相比第一代显著增加。这些关于代际光周期效应的结果可用于提高寄生蜂的实验室饲养效率,并更好地理解不同纬度梯度下田间的种群动态。

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