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视觉和嗅觉玉米叶线索在成虫(鳞翅目:夜蛾科)寄主寻找中的作用

The Utility of Visual and Olfactory Maize Leaf Cues in Host Finding by Adult (Lepidoptera: Noctuidae).

作者信息

Liu Jie, Tallat Mariam, Wang Gensong, Li Guoping, Zhang Haowen, Wu Xujin, Qiao Hongbo, Zhao Xincheng, Feng Hongqiang

机构信息

Henan Key Laboratory of Agricultural Pest Monitoring and Control, IPM Key Laboratory in Southern Part of North China for Ministry of Agriculture, International Joint Research Laboratory for Crop Protection of Henan, No. 0 Entomological Radar Field Scientific Observation and Research Station of Henan Province, Institute of Plant Protection, Henan Academy of Agricultural Sciences, Zhengzhou 450002, China.

College of Plant Protection, Henan Agricultural University, Zhengzhou 450046, China.

出版信息

Plants (Basel). 2024 Nov 25;13(23):3300. doi: 10.3390/plants13233300.

Abstract

The fall armyworm, (Lepidoptera: Noctuidae) (FAW), is an invasive and destructive polyphagous pest that poses a significant threat to global agricultural production. The FAW mainly damages maize, with a particular preference for V3-V5 (third to fifth leaf collar) plant stages in northern China. How the FAW moth precisely locates maize plants in the V3-V5 stage at night remains unclear. The aims of this study were to evaluate the visual and olfactory cues used by the FAW to identify its host plant, maize, in order to select attractants with better trapping efficacy. Hyperspectral analysis of maize plants at different growth stages using the ASD Fieldspec 4 spectrometer was performed using mimics (moths or maize leaves sealed with transparent plastic sheets) and black cloth-covered plants for single visual and single olfactory attraction experiments. Gas chromatography-mass spectrometry (GC-MS) was used to analyze volatiles emitted from V3-V5 stage maize leaves. Volatile organic chemicals (VOCs) were screened using electroantennography (EAG) and Y-tube. Attractor efficacy was validated using mimics + VOCs. Results showed very little variance in the spectral reflectance curve of the maize at different growth stages. Fifteen VOCs were identified in the V3-V5 stage leaves of three different maize varieties, of which -3-hexenyl acetate and myrcene were found in relatively high concentrations in these maize varieties. The frequency of visits attracted by single visual stimuli was significantly lower than that attracted by single olfactory or olfactory + visual cues. The attractiveness of foliar -3-hexenyl acetate increased as its concentration decreased. The combination of mimics + -3-hexenyl acetate (1 ng/μL) increased host detection efficiency and stimulated mating behavior. These results indicate that the nocturnal insect FAW primarily uses olfactory cues for host identification, with visual cues serving as a complementary modality. The synergistic effect of olfactory and visual cues increases the efficiency of host recognition. We found that -3-hexenol acetate at a concentration from maize leaves is a reliable olfactory signal for the FAW. When using host plant VOCs as attractants to control adult FAWs, the role of visual cues must be considered.

摘要

草地贪夜蛾(鳞翅目:夜蛾科)是一种具有入侵性和破坏性的多食性害虫,对全球农业生产构成重大威胁。草地贪夜蛾主要危害玉米,在中国北方尤其偏好V3-V5(第三至第五叶环)植株阶段。草地贪夜蛾成虫如何在夜间精确地定位处于V3-V5阶段的玉米植株仍不清楚。本研究的目的是评估草地贪夜蛾用于识别其寄主植物玉米的视觉和嗅觉线索,以便选择具有更好诱捕效果的引诱剂。使用ASD Fieldspec 4光谱仪对不同生长阶段的玉米植株进行高光谱分析,采用模拟物(用透明塑料片密封的蛾子或玉米叶片)和用黑布覆盖的植株进行单一视觉和单一嗅觉吸引实验。气相色谱-质谱联用仪(GC-MS)用于分析V3-V5阶段玉米叶片释放的挥发物。使用触角电位仪(EAG)和Y形管筛选挥发性有机化合物(VOCs)。使用模拟物+VOCs验证引诱剂的效果。结果表明,不同生长阶段玉米的光谱反射率曲线差异很小。在三个不同玉米品种的V3-V5阶段叶片中鉴定出15种VOCs,其中乙酸叶醇酯和月桂烯在这些玉米品种中的含量相对较高。单一视觉刺激吸引的访问频率显著低于单一嗅觉或嗅觉+视觉线索吸引的频率。叶面乙酸叶醇酯的吸引力随着其浓度降低而增加。模拟物+乙酸叶醇酯(1 ng/μL)的组合提高了寄主检测效率并刺激了交配行为。这些结果表明,夜间活动的昆虫草地贪夜蛾主要利用嗅觉线索进行寄主识别,视觉线索起辅助作用。嗅觉和视觉线索的协同作用提高了寄主识别效率。我们发现,来自玉米叶片的浓度为 的乙酸叶醇是草地贪夜蛾可靠的嗅觉信号。当使用寄主植物VOCs作为引诱剂来防治草地贪夜蛾成虫时,必须考虑视觉线索的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb80/11644742/48efd3f16479/plants-13-03300-g001.jpg

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