Assessing the Larvicidal Properties of Endemic Campeche, Mexico Plant Piper cordoncillo var. apazoteanum (Piperaceae) against Aedes aegypti (Diptera: Culicidae) Mosquitoes

Author:

Alonso-Hernández Nancy1,Granados-Echegoyen Carlos2ORCID,Vera-Reyes Ileana3ORCID,Pérez-Pacheco Rafael1ORCID,Arroyo-Balán Fabián2ORCID,Valdez-Calderón Alejandro4,Espinosa-Roa Arián5ORCID,Loeza-Concha Henry Jesús6,Villanueva-Sánchez Evert7,García-Pérez Florinda8,Diego-Nava Fidel1

Affiliation:

1. Interdisciplinary Research Center for Integral Regional Development (CIIDIR), Oaxaca Campus, National Polytechnic Institute (IPN), Hornos 1003, Oaxaca 71230, Mexico

2. Applied Entomology Laboratory, Center for Studies in Sustainable Development and Wildlife Use (CEDESU), CONACYT-Autonomous University of Campeche, Campeche 24079, Mexico

3. Biosciences and Agrotechnology Department, CONACYT-Center for Research in Applied Chemistry, Saltillo 25294, Mexico

4. Technological University of the Metropolitan Zone of the Valley of Mexico, Hidalgo 43816, Mexico

5. Innovation and Technological Research Park (PIIT), CONACYT-Center for Research in Applied Chemistry, Monterrey 66628, Mexico

6. Postgraduate College Campus Campeche, Campeche 24450, Mexico

7. National Laboratory for Agrifood and Forestry Research and Service, CONACYT-University of Chapingo, Chapingo 56230, Mexico

8. Agronomy Department, Novauniversitas, Oaxaca 71513, Mexico

Abstract

The research aims to investigate the mortality effect of essential oil from Piper cordoncillo var. apazoteanum, an endemic plant from Campeche, Mexico, on early second-instar Aedes aegypti larvae; it also aims to identify the volatile compounds present in the fresh leaves of the plant. To test the effectiveness of the essential oil, we followed World Health Organization Standard Procedures. Larvae were observed for 17 consecutive days after treatment to determine the mortality and growth-inhibitory effect exerted by the essential oil. The results showed that the essential oil was effective in controlling mosquito populations. At a concentration of 800 ppm, the oil achieved an effectiveness rate of 70.00 ± 8.16% after 24 h, increasing to 100.00 ± 0.01% mortality after 72 h. With a concentration of 400 ppm, the effectiveness was 98.33 ± 0.17% by the end of the experiment. Furthermore, the obtained results demonstrated that the LC50 value was 61.84 ± 6.79 ppm, while the LC90 value was 167.20 ± 11.49 ppm. Essential oil concentrations inhibited the growth of immature insect stages, with concentrations between 800–100 ppm demonstrating very high inhibitory activity, and the lowest concentration of 50 ppm showing high inhibitory activity. The study also identified 24 chemical compounds representing 86.71% of the volatile compound composition of the fresh leaves of P. cordoncillo; the most abundant compounds were Safrole, Caryophyllene oxide, E-Nerolidol, and Calarene epoxide. The method used to extract the volatile compounds, solvent-free microwave extraction (SFME), is a promising alternative to traditional methods that avoids the use of potentially harmful solvents, making it more ecologically friendly and potentially safer for professionals handling the extracted compounds. Overall, the study demonstrates the potential of P. cordoncillo essential oil as an effective means of controlling mosquito populations, and provides valuable information on the chemical composition of the plant.Moreover, our study is the first to report on the biological activity and chemical composition of P. cordoncillo worldwide.

Publisher

MDPI AG

Subject

Insect Science

Reference107 articles.

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2. Pan American Health Organization (PAHO) (2023, February 01). Dengue and Severe Dengue Cases. Available online: https://www.paho.org/en/topics/dengue/dengue-data-amp-statistics/dengue-cases/en/.

3. Effects of Global Warming on Mosquitoes & Mosquito-Borne Diseases and the New Strategies for Mosquito Control;Yi;Entomol. Res.,2014

4. Neem-based products as potential eco-friendly mosquito control agents over conventional eco-toxic chemical pesticides-A review;Chatterjee;Acta Trop.,2023

5. Naturally Occurring Piper Plant Amides Potential in Agricultural and Pharmaceutical Industries: Perspectives of Piperine and Piperlongumine;Jeon;Appl. Biol. Chem.,2019

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