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凤蝶(鳞翅目:凤蝶科)末龄幼虫的超微结构变化导致水和佐剂在表皮扩散上的差异。

Ultrastructural Changes in Final Instar Larvae of (Lepidoptera: Papilionidae) Lead to Differences in Epidermal Spreading of Water and Adjuvants.

作者信息

Lu Zhengyu, Wu Xue, Zhang Tingting, Tang Chufei

机构信息

College of Plant Protection, Shandong Agricultural University, Taian 271018, China.

Institute of Leisure Agriculture, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.

出版信息

Biomimetics (Basel). 2025 Apr 19;10(4):251. doi: 10.3390/biomimetics10040251.

Abstract

is a cosmopolitan Lepidoptera species of controversial use and management. It remained unclear how its epidermal ultrastructure changes during development and how this affects its wetting properties in relation to water and pesticide adjuvants. In this study, the epidermis of was systematically examined at the important feeding stage (from 3rd to 5th instar). Its ultrastructure was quantitatively observed by scanning electron microscopy. Its wetting properties towards the three main types of adjuvants and water were evaluated by contact angle. The chemical functional group differences between different instars and different adjuvant treatments were analyzed by mid-infrared spectroscopy. The correlation between the ultrastructural deformation and variations in wetting properties was verified by simulation tests. It was found that the complication of the epidermal structure was the leading factor for the significant increase in hydrophobicity during development. Cationic adjuvants had the best infiltrating effect on complex epidermal structures and organosilicon adjuvants had the best infiltrating effect on simple epidermal structures. The results provide data for biomimetic design for different wetting properties and suggest the feasibility and advantages of selecting pesticide adjuvants based on developmental changes in the structural characteristics of the insect epidermis.

摘要

是一种在使用和管理方面存在争议的世界性鳞翅目物种。其表皮超微结构在发育过程中如何变化,以及这如何影响其与水和农药助剂相关的润湿性,仍不清楚。在本研究中,在重要的取食阶段(从3龄到5龄)对其表皮进行了系统检查。通过扫描电子显微镜对其超微结构进行了定量观察。通过接触角评估了其对三种主要类型助剂和水的润湿性。通过中红外光谱分析了不同龄期和不同助剂处理之间的化学官能团差异。通过模拟试验验证了超微结构变形与润湿性变化之间的相关性。研究发现,表皮结构的复杂化是发育过程中疏水性显著增加的主要因素。阳离子助剂对复杂表皮结构的渗透效果最佳,有机硅助剂对简单表皮结构的渗透效果最佳。研究结果为不同润湿性的仿生设计提供了数据,并表明基于昆虫表皮结构特征的发育变化选择农药助剂的可行性和优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a5d/12025132/fc56374c05c8/biomimetics-10-00251-g001.jpg

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