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橙花叔醇对瓜实蝇(双翅目:实蝇科)的免疫调节、细胞遗传毒性和生长调节作用。

Immunomodulatory, cyto-genotoxic, and growth regulatory effects of nerolidol on melon fruit fly, Zeugodacus cucurbitae (Coquillett) (Diptera: Tephritidae).

机构信息

Department of Zoology, Guru Nanak Dev University, Amritsar, 143005, Punjab, India.

Department of Zoology, Guru Nanak Dev University, Amritsar, 143005, Punjab, India.

出版信息

Toxicon. 2023 Sep;233:107248. doi: 10.1016/j.toxicon.2023.107248. Epub 2023 Aug 9.

DOI:10.1016/j.toxicon.2023.107248
PMID:37562702
Abstract

Insects have evolved a robust immune system consisting of humoral and cellular branches and their orchestrated response enables insect to defend against exogenous stressors. Exploration of underlying immune mechanisms of insect pest under allelochemical stress can give us new insights on insect pest management. In this study, nerolidol, a plant sesquiterpene was evaluated for its insecticidal, growth regulatory, immunomodulatory, and cyto-genotoxic effects against melon fruit fly, Zeugodacus cucurbitae (Coquillett). First, second, and third instar larvae of Z. cucurbitae were fed on artificial diet containing different concentrations (5, 25, 125, 625, and 3125 ppm) of nerolidol. Results revealed a significant reduction in pupation and adult emergence as well as prolongation of developmental duration of treated larvae. Decline in growth indices showed remarkable growth inhibitory effects of nerolidol. Pupal weight and nutritional parameters viz. Larval weight gain, food assimilated, and mean relative growth rate declined after treatment. Immunological studies on second instar larvae depicted a drop in total hemocyte count and variations in proportions of plasmatocytes and granulocytes of LC and LC treated larvae. Phenoloxidase activity in nerolidol treated larvae initially increased but was suppressed after 72 h of treatment. The frequency of viable hemocytes decreased and that of apoptotic and necrotic hemocytes increased with both the lethal concentrations of nerolidol. Comet assay revealed a significant damage to DNA of hemocytes. The findings of the current study indicate that nerolidol exerts its insecticidal action through growth regulation, immunomodulation, and cyto-genotoxicity thus revealing its potential to be used as biopesticide against Z. cucurbitae.

摘要

昆虫进化出了强大的免疫系统,包括体液和细胞分支,它们的协调反应使昆虫能够抵御外源应激。探索化感胁迫下昆虫害虫的潜在免疫机制,可以为我们提供昆虫害虫管理的新见解。在这项研究中,植物倍半萜橙花叔醇被评估为对瓜实蝇(Zeugodacus cucurbitae (Coquillett))具有杀虫、生长调节、免疫调节和细胞遗传毒性作用。首先,第二和第三龄幼虫用含有不同浓度(5、25、125、625 和 3125ppm)橙花叔醇的人工饲料喂养。结果表明,蛹化和成虫出现的显著减少以及处理幼虫的发育持续时间延长。生长指数下降表明橙花叔醇具有显著的生长抑制作用。处理后蛹重和营养参数,如幼虫体重增加、食物同化和平均相对生长率下降。对第二龄幼虫的免疫学研究表明,总血细胞计数下降,LC 和 LC 处理幼虫的浆细胞和粒细胞比例发生变化。橙花叔醇处理幼虫的酚氧化酶活性最初增加,但在处理 72 小时后被抑制。存活血细胞的频率下降,凋亡和坏死血细胞的频率增加,橙花叔醇的致死浓度均增加。彗星试验显示血细胞 DNA 受到明显损伤。本研究的结果表明,橙花叔醇通过生长调节、免疫调节和细胞遗传毒性发挥其杀虫作用,从而显示其作为防治瓜实蝇的生物农药的潜力。

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