Laboratory of Insects, Department of Morphology, São Paulo State University (UNESP), Institute of Biosciences, Botucatu, Brazil.
Center of Biological Sciences and Health, State University of Western Paraná (UNIOESTE), Cascavel, PR, Brazil.
Chemosphere. 2020 Jan;239:124697. doi: 10.1016/j.chemosphere.2019.124697. Epub 2019 Sep 5.
This study investigates the effects of the insect growth regulator Novaluron on the silk gland (SG) and silk cocoon production in a nontarget insect, the silkworm Bombyx mori, which is a model research insect among Lepidoptera and of great economic importance for the commercial production of silk threads. Larvae were segregated into experimental groups: the control group (CG) and the treatment group (TG), which was exposed to a Novaluron concentration of 0.15 mL/L. Following exposure, we analyzed the cytotoxic effects on the epithelial cells of the anterior, middle and posterior regions of the SG of B. mori larvae in the 3rd, 4th, and 5th instars, as well as the quality of the cocoons from larvae in the 5th instar. Cytotoxic effects were observed in the TG, such as the dilation of cells, emission of cytoplasmic protrusions, extreme rarefaction of the cytoplasm and nuclei, dilation of the endoplasmic reticulum, intracellular and intercellular spaces, spacing between the epithelial cells and the basal lamina and detachment of some cells towards the lumen of the SG, and decreased protein in the lumen, with faults in its composition. In addition, we verified ultrastructural changes in the production of fibers and silk cocoons, including a reduction in the weight of the cocoons constructed by both males and females in the TG and the construction of defective cocoons. Novaluron exposure impairs the SG and may affect the physiological functions of this organ; additionally, it compromises the quality of silk cocoons, potentially causing serious damage to sericulture.
本研究调查了昆虫生长调节剂 Novaluron 对鳞翅目模式研究昆虫家蚕的丝腺 (SG) 和丝茧生产的影响,家蚕对丝腺的生理功能和丝茧质量具有重要意义。幼虫被分为实验组:对照组 (CG) 和实验组 (TG),TG 暴露于 0.15 mL/L 的 Novaluron 浓度下。暴露后,我们分析了 3、4 和 5 龄幼虫 SG 前、中、后区上皮细胞的细胞毒性作用,以及 5 龄幼虫丝茧的质量。在 TG 中观察到细胞毒性作用,例如细胞扩张、细胞质突起发射、细胞质和细胞核极度稀疏、内质网扩张、细胞内和细胞间空间、上皮细胞与基底膜之间的间隔以及一些细胞向 SG 腔脱落,以及腔内蛋白质减少,其组成出现故障。此外,我们验证了纤维和丝茧生产的超微结构变化,包括 TG 中雌雄两性所构建的茧的重量减轻以及缺陷茧的构建。Novaluron 暴露会损害 SG,并可能影响该器官的生理功能;此外,它还会降低丝茧的质量,可能会对养蚕业造成严重损害。