Zhang Jiangchao, Ma Weihua, Zhang Yue, Lu Surong, Zhang Chaoying, Zhao Huiting, Jiang Yusuo
College of Animal Science, Shanxi Agricultural University, Jinzhong 030600, China.
College of Horticulture, Shanxi Agricultural University, Taiyuan 030000, China.
Int J Mol Sci. 2025 Mar 29;26(7):3176. doi: 10.3390/ijms26073176.
Honeybee olfaction can influence foraging behavior and affect crop pollination. Odor-binding proteins play a vital role in honeybee olfactory perception. A previous study based on the antennal transcriptome of in melon and tomato greenhouses revealed that is highly expressed. Therefore, we aimed to further investigate the olfactory recognition mechanism of honeybees by detecting the expression levels and binding ability of AmelOBP2 to floral volatiles of melon and tomato flowers. The results show that mRNA was highly expressed in the antennae of honeybees, and its protein expression was highest in the antennae at 20 days of age and was higher in the melon greenhouse. The binding ability of AmelOBP2 to floral volatiles of melon was stronger than that of tomato. AmelOBP2 had a stronger binding ability with aldehydes in melon floral volatiles and with terpenes and benzenes in tomato floral volatiles. After feeding with siRNA, the electroantennogram response of honeybees to E-2-hexenal, E-2-octenal, and 1-nonanal decreased markedly, confirming the role of AmelOBP2 in the recognition of melon and tomato floral volatiles. These results elucidate the molecular mechanisms underlying honeybee flower-visiting behavior and provide a theoretical reference for regulating the behavior of honeybees using plant volatiles.
蜜蜂嗅觉可影响觅食行为并影响作物授粉。气味结合蛋白在蜜蜂嗅觉感知中起着至关重要的作用。一项基于甜瓜和番茄温室中蜜蜂触角转录组的先前研究表明, 高度表达。因此,我们旨在通过检测AmelOBP2对甜瓜和番茄花的花香挥发物的表达水平和结合能力,进一步研究蜜蜂的嗅觉识别机制。结果表明, mRNA在蜜蜂触角中高度表达,其蛋白质表达在20日龄触角中最高,且在甜瓜温室中更高。AmelOBP2对甜瓜花香挥发物的结合能力强于番茄。AmelOBP2与甜瓜花香挥发物中的醛类以及番茄花香挥发物中的萜类和苯类具有更强的结合能力。用siRNA喂食后,蜜蜂对E-2-己烯醛、E-2-辛烯醛和壬醛的触角电图反应明显降低,证实了AmelOBP2在识别甜瓜和番茄花香挥发物中的作用。这些结果阐明了蜜蜂访花行为的分子机制,并为利用植物挥发物调节蜜蜂行为提供了理论参考。