Zhang Jiangchao, Liu Jinjia, Gao Fei, Chen Min, Jiang Yusuo, Zhao Huiting, Ma Weihua
College of Animal Science, Shanxi Agricultural University, Taigu 030801, China.
College of Life Sciences, Shanxi Agricultural University, Taigu 030801, China.
Insects. 2022 Oct 22;13(11):973. doi: 10.3390/insects13110973.
As important pollinators, honeybees and bumblebees present a pollination behavior that is influenced by flower volatiles through the olfactory system. In this study, volatile compounds from melon flowers were isolated and identified by headspace solid-phase microextraction (HS-SPME) and gas chromatography-mass spectrometry (GC-MS), and their effects on and were investigated by electroantennogram (EAG) and behavior tests (Y-tube olfactometer). The results showed that 77 volatile compounds were detected in melon flowers, among which the relative content of aldehydes was the highest (61.34%; 82.09%). showed a strong EAG response to e-2-hexenal, e-2-octenal, and 1-nonanal. showed a strong EAG response to e-2-hexenal, e-2-octenal, 2,5-dimethyl-benzaldehyde, benzaldehyde and benzenepropanal. In behavior tests, the volatiles with the highest attractive rate to were e-2-hexenal (200 μg/μL, 33.33%) and e-2-octenal (300 μg/μL, 33.33%), and those to were e-2-hexenal (10 μg/μL, 53.33%) and 2,5-dimethyl-benzaldehyde (100 μg/μL, 43.33%). E-2-hexenal and e-2-octenal were more attractive to than , respectively (10 μg/μL, 10 μg/μL, 200 μg/μL). In conclusion, the volatiles of melon flowers in facilities have certain effects on the electrophysiology and behavior of bees, which is expected to provide theoretical and technical support for the pollination of and in facilities.
作为重要的传粉者,蜜蜂和熊蜂呈现出一种受花朵挥发物通过嗅觉系统影响的授粉行为。在本研究中,采用顶空固相微萃取(HS-SPME)和气相色谱-质谱联用(GC-MS)技术分离并鉴定了甜瓜花中的挥发性化合物,并通过触角电位(EAG)和行为测试(Y型嗅觉仪)研究了它们对[未提及具体对象]和[未提及具体对象]的影响。结果表明,在甜瓜花中检测到77种挥发性化合物,其中醛类的相对含量最高(61.34%;82.09%)。[未提及具体对象]对反-2-己烯醛、反-2-辛烯醛和壬醛表现出强烈的EAG反应。[未提及具体对象]对反-2-己烯醛、反-2-辛烯醛、2,5-二甲基苯甲醛、苯甲醛和苯丙醛表现出强烈的EAG反应。在行为测试中,对[未提及具体对象]吸引力最高的挥发物是反-2-己烯醛(200μg/μL,33.33%)和反-2-辛烯醛(300μg/μL,33.33%),对[未提及具体对象]的是反-2-己烯醛(10μg/μL,53.33%)和2,5-二甲基苯甲醛(100μg/μL,43.33%)。反-2-己烯醛和反-2-辛烯醛分别对[未提及具体对象]比[未提及具体对象]更具吸引力(10μg/μL,10μg/μL,200μg/μL)。总之,设施内甜瓜花的挥发物对蜜蜂的电生理和行为有一定影响,有望为设施内[未提及具体对象]和[未提及具体对象]的授粉提供理论和技术支持。