Institute of Plant Protection, College of Agriculture, Guizhou University, Guiyang 550025, China.
Guizhou Tea Research Institute, Guizhou Province Academy of Agricultural Science, Xiaohe District, Guiyang 550006, China.
Int J Mol Sci. 2022 Jan 11;23(2):758. doi: 10.3390/ijms23020758.
Using of plant essential oil that coevolved as a defense mechanism against agriculture insects is an alternative means of controlling many insect pests. In order to repel brown planthoppers (BPHs), the most notorious rice insect pest, a new film based on guar gum incorporated with citral (GC film) was formulated, which was effective while being environmentally friendly. In this paper, the effect and mechanism of GC film repellency against BPHs were determined. Repellent activity test and olfactory reaction analysis showed that GC film had repellency effect against BPHs, with repellency of 60.00% and 73.93%, respectively. The result of olfactory reaction indicated that GC film repellency against BPHs relied on smell. EPG analysis showed the proportion and mean duration of np waveform were significantly higher than in CK and increased following the treatment concentration, which indicated that GC film affected the recognition of BPHs to rice. Further analysis by RNA sequencing analysis showed a total of 679 genes were significantly upregulated and 284 genes were significantly downregulated in the BPHs fed on the rice sprayed with GC film compared to control. Odorant-binding protein (OBP) and gustatory receptor gene (GR)/odorant receptor (OR) showed a significant decrease in differential expression and significant increase in differential expression, respectively. There were 0.66 and 2.55 differential expression multiples between treated BPHs and control, respectively. According to the results described above, we reasoned that GC film repellency against BPHs due to smell, by release of citral, caused the recognition difficulties for BPHs to rice, and and appeared to be the crucial candidate genes for GC film repellency against BPHs. The present study depicted a clear and consistent repellency effect for GC film against BPHs and preliminarily clarified the mechanism of GC film as a repellent against BPHs, which might offer an alternative approach for control of BPHs in the near future. Our results could also help in the development and improvement of GC films.
利用与农业昆虫共同进化作为防御机制的植物精油是控制许多昆虫害虫的一种替代手段。为了驱避褐飞虱(BPHs),这种最臭名昭著的水稻害虫,研制了一种基于瓜尔胶并掺入柠檬醛(GC 膜)的新型薄膜,该薄膜在环保的同时具有效果。在本文中,确定了 GC 膜对 BPHs 的驱避作用及其机制。驱避活性测试和嗅觉反应分析表明,GC 膜对 BPHs 具有驱避作用,驱避率分别为 60.00%和 73.93%。嗅觉反应的结果表明,GC 膜对 BPHs 的驱避作用依赖于气味。EPG 分析表明,np 波的比例和平均持续时间明显高于 CK,并且随着处理浓度的增加而增加,这表明 GC 膜影响了 BPHs 对水稻的识别。进一步的 RNA 测序分析表明,与对照相比,喷洒 GC 膜的水稻上 BPHs 中共有 679 个基因显著上调,284 个基因显著下调。气味结合蛋白(OBP)和味觉受体基因(GR)/气味受体(OR)的差异表达呈显著下降和显著增加,分别。处理后的 BPHs 与对照相比,差异表达倍数分别为 0.66 和 2.55。根据上述结果,我们推断 GC 膜通过释放柠檬醛产生气味对 BPHs 的驱避作用,导致 BPHs 对水稻的识别困难,而 和 似乎是 GC 膜对 BPHs 驱避作用的关键候选基因。本研究清晰一致地描述了 GC 膜对 BPHs 的驱避作用,并初步阐明了 GC 膜作为 BPHs 驱避剂的作用机制,这可能为未来 BPHs 的防治提供一种替代方法。我们的研究结果还可以帮助 GC 膜的开发和改进。