氟硝胺对玫瑰粒蚜生物学性状的亚致死效应和代际效应。

Xinan Li, Chengze Song, Wen Zhang, Xiaoya Zhang, Fengfan Wang, Ruiyang Qin, Ganyu Zhu, Xun Zhu, Yunhui Zhang
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引用次数: 0

摘要

玫瑰粒蚜虫(Metopolophium dirhodum, Walker)是小麦农业生态系统中的优势蚜虫。氟虫胺是一种新型的吡啶酰胺类昆虫生长调节剂,对多种吸液害虫具有良好的防治效果。我们利用生命表分析研究氟硝胺对大鼠的亚致死效应和代际效应。结果表明氟硝胺对大鼠有一定的急性毒性。暴露于亚致死浓度的氟硝胺(LC15和LC35)显著降低了第0代稻蠹蛾的成虫寿命、繁殖期和繁殖力。此外,这些亚致死浓度对F1代产生不利影响,降低了繁殖力,改变了关键的生命表参数,包括成虫寿命、总寿命、生殖期、成虫前生殖期、每只雌虫若虫产量、年龄阶段特异性存活率(sxj)、内在增长率(r)、净繁殖率(R0)和有限增长率(λ)。种群预测进一步表明,与对照相比,暴露在亚致死氟硝胺下的大鼠总种群规模显著下降。这些研究结果表明,氟硝昔胺对迪氏单胞菌产生不利的亚致死效应和代际效应,最终抑制其种群增长。研究结果为评价氟虫胺的整体杀虫潜力和完善小麦蚜虫综合防治方案提供了有价值的依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sublethal and intergenerational effects of flonicamid on biological traits in the rose-grain aphid, Metopolophium dirhodum.

The rose-grain aphid, Metopolophium dirhodum (Walker), has been identified as a predominant aphid species in wheat agroecosystems. Flonicamid, a novel pyridinamide insect growth regulator, has demonstrated high efficacy against various sap-sucking pests. We investigated the sublethal and intergenerational effects of flonicamid on M. dirhodum using life table analysis. We found that flonicamid had a certain degree of acute toxicity to M. dirhodum. Exposure to sublethal concentrations of flonicamid (LC15 and LC35) significantly reduced adult longevity, reproductive duration, and fecundity in the F0 generation of M. dirhodum. Moreover, these sublethal concentrations adversely affected the F1 generation, decreasing fecundity and altering key life table parameters, including adult longevity, total longevity, reproductive period, adult pre-reproductive period, nymph production per female, age-stage-specific survival rate (sxj), intrinsic rate of increase (r), net reproductive rate (R0), and finite rate of increase (λ). Population projections further demonstrated a significant decline in the total population size of M. dirhodum under sublethal flonicamid exposure compared to the control. These findings demonstrate that flonicamid exerts adverse sublethal and intergenerational effects on M. dirhodum, ultimately suppressing its population growth. The study outcomes provide valuable evidence for evaluating flonicamid's overall pesticidal potential and enhancing integrated pest management protocols for wheat aphid control.

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