孙函函,牛富帅,李彩萍,努尔曼古丽·尼牙孜,李 超,2024,氮量胁迫马铃薯对马铃薯甲虫发育和生殖的影响[J].环境昆虫学报,(6):1495-1504
氮量胁迫马铃薯对马铃薯甲虫发育和生殖的影响
Effects of nitrogen-stressed potato plants on the development and reproduction of Leptinotarsa decemlineata
  
DOI:
中文关键词:  马铃薯甲虫  氮素胁迫  发育历期  两性生命表
英文关键词:Leptinotarsa decemlineata  nitrogen-stressed  developmental durations  two-sex life table
基金项目:国家重点研发计划项目(2021YFD1400200);国家自然科学基金(31660545);农业农村部西北荒漠绿洲作物有害生物综合治理重点实验室开放基金(KFJJ201905);新疆维吾尔自治区天山英才计划资助
作者单位
孙函函,牛富帅,李彩萍,努尔曼古丽·尼牙孜,李 超 1. 新疆农业大学农学院农业农村部西北荒漠绿洲农林外来入侵生物防控重点实验室乌鲁木齐 8300522. 中国农业科学院西部农业研究中心新疆昌吉 831100 
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中文摘要:
      马铃薯甲虫Leptinotarsa decemlineata是世界性检疫害虫,是影响我国马铃薯生产最严重的害虫之一。通过4种不同的施氮量(Nck=0 kg/hm2、N低=80 kg/hm2、N中=120 kg/hm2和N高=240 kg/hm2)调查马铃薯甲虫的生长发育和成虫繁殖情况。结果表明不同施氮量下马铃薯甲虫均能完成一个世代。总体而言,数据趋势一致表明NCK和N高处理(种植时总施氮量)的幼虫、成虫、卵数以及种群动态预测结果均高于N低、N中处理。各处理间种群参数内禀增长率(r)、周限增长率(λ)和净增殖率(R0)差异均不显著;而Nck、N低、N中和N高处理在总生殖率(GRR)和平均世代时间(T)中存在显著差异,且N高显著高于其他。本文通过设置不同施氮量对马铃薯甲虫发育及种群增殖的影响,了解氮肥的施用量对马铃薯甲虫的生长发育存在的影响,为寻找减少碳排放和发展可持续的防治方法控制害虫为害。
英文摘要:
      Leptinotarsa decemlineata, a worldwide quarantine pest, is known to be one of the most serious pests that significantly impact potato production in China. The growth and development and adult reproduction of Colorado potato beetles were investigated by four different amounts of nitrogen (Nck = 0 kg/hm2, Nlow = 80 kg/hm2, Nmiddle = 160 kg/hm2, Nhigh = 240 kg/hm2). The results showed that all Colorado potato beetles could complete one generation under different nitrogen application levels. The data trends indicated that the number of larvae, adults, eggs, and population dynamics of the NCK and Nhigh treatments (total nitrogen applied at planting) were higher compared to the Nlow and Nmiddle treatments. There were no significant differences in population parameters such as intrinsic growth rate (r), weekly growth rate (λ), and net proliferation rate (R0). However, NCK, Nlow, Nmiddle, and Nhigh treatments differed significantly in total reproductive rate (GRR) and mean generation time (T), with Nhigh being significantly higher than the others. This paper explores the effects of different nitrogen-stressed levels on the development of Colorado potato beetles and population proliferation. Studying the impact of nitrogen fertilizer application on the growth and development of Colorado potato beetles not only helps in reducing carbon emissions but also aids in the development of sustainable control methods to control pests.
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