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海洋放线菌 RD06 次生代谢产物体内杀幼虫活性的组织学验证及其杀幼虫衍生物生产的统计介质优化。

Histological validation of in-vivo larvicidal efficacy of marine Streptomyces sp. RD06 secondary metabolites against filariasis causing Culex quinquefasciatus and statistical media optimization for larvicidal derivatives production.

机构信息

Bioprocess Technology Laboratory, Department of Microbiology, Bharathidasan University, Tiruchirappalli, 620 024, Tamil Nadu, India; PG & Research Department of Microbiology, Sri Sankara Arts and Science College, Kanchipuram, 631561, Tamil Nadu, India.

Department of Research Analytics, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai, 600 077, Tamil Nadu, India.

出版信息

Acta Trop. 2024 Jul;255:107226. doi: 10.1016/j.actatropica.2024.107226. Epub 2024 May 1.

Abstract

Mosquito-borne disease pandemics, such as the Zika virus and chikungunya, have escalated cognizance of how critical it is to implement proficient mosquito vector control measures. The prevention of Culicidae is becoming more difficult these days because of the expeditious imminence of synthetic pesticide resistance and the universal expansion of tremendously invasive mosquito vectors. The present study highlights the insecticidal and larvicidal efficacy of the prospective novel actinobacterium derived from the marine Streptomyces sp. RD06 secondary metabolites against Culex quinquefasciatus mosquito. The pupicidal activity of Streptomyces sp. RD06 showed LC=199.22 ± 11.54 and LC= 591.84 ± 55.41 against the pupa. The purified bioactive metabolites 1, 2-Benzenedicarboxylic acid, diheptyl ester from Streptomyces sp. RD06 exhibited an LC value of 154.13 ± 10.50 and an LC value of 642.84 ± 74.61 tested against Cx. quinquefasciatus larvae. The Streptomyces sp. RD06 secondary metabolites exhibited 100 % non-hatchability at 62.5 ppm, and 82 % of hatchability was observed at 250 ppm. In addition, media optimization showed that the highest biomass production was attained at a temperature of 41.44 °C, pH 9.23, nitrogen source 11.43 mg/ml, and carbon source 150 mg/ml. Compared to control larvae, the histology and confocal microscopy results showed destruction to the anal gill, lumen content, and epithelial layer residues in the treated larvae. Utilizing an eco-friendly method, these alternative inventive insecticidal derivatives from Streptomyces sp. RD06 eradicates Culex quinquefasciatus. This study highlights the promising potential of these Streptomyces sp. RD06 secondary metabolites to develop affordable and efficacious mosquito larvicides to replace synthetic insecticides in the future.

摘要

蚊媒疾病大流行,如寨卡病毒和基孔肯雅热,已经提高了人们对实施高效蚊虫控制措施的重要性的认识。由于合成杀虫剂抗性的迅速出现以及极具侵袭性的蚊虫媒介的普遍扩张,如今对库蚊的防治变得更加困难。本研究强调了海洋链霉菌 RD06 次生代谢产物衍生的新型放线菌的杀虫和杀幼虫效果,对抗致倦库蚊。链霉菌 RD06 的幼虫毒杀活性表现为 LC=199.22 ± 11.54 和 LC=591.84 ± 55.41 对蛹。从链霉菌 RD06 中分离得到的 1,2-苯二甲酸、二庚酯,表现出 LC 值为 154.13 ± 10.50 和 LC 值为 642.84 ± 74.61,对致倦库蚊幼虫有活性。链霉菌 RD06 次生代谢产物在 62.5 ppm 时表现出 100%的不孵化率,在 250 ppm 时孵化率为 82%。此外,培养基优化表明,在温度为 41.44°C、pH 值为 9.23、氮源为 11.43mg/ml、碳源为 150mg/ml 时,生物量产量最高。与对照幼虫相比,组织学和共聚焦显微镜结果显示,处理幼虫的后气门鳃、管腔内容物和上皮层残留物遭到破坏。利用环保方法,这些来自链霉菌 RD06 的创新杀虫衍生物根除了致倦库蚊。本研究强调了这些链霉菌 RD06 次生代谢产物具有巨大的潜力,可以开发出负担得起且有效的蚊虫幼虫剂,以替代未来的合成杀虫剂。

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