Suzana Junges Vendruscolo, Angélica Justino de Oliveira, Janaina Rosa de Sousa, Sabrina Targanski, André Luiz Stein, Leonardo Gomes de Vasconcelos, Paulo Afonso Ferreira, Marcos Antônio Soares
{"title":"环境友好型硒醇酯衍生物对黑僵菌的杀线虫和杀卵活性","authors":"Suzana Junges Vendruscolo, Angélica Justino de Oliveira, Janaina Rosa de Sousa, Sabrina Targanski, André Luiz Stein, Leonardo Gomes de Vasconcelos, Paulo Afonso Ferreira, Marcos Antônio Soares","doi":"10.1007/s10340-023-01732-3","DOIUrl":null,"url":null,"abstract":"<p>Nematodes from the genus <i>Meloidogyne</i> are extremely harmful to agricultural crops due to their wide geographic distribution, variety of hosts, and strong reproductive capacity. The most used phytonematoid control method is the application of nematicides, which can also affect human health and the environment. Selenol ester derivatives have pharmaceutical applications, but little is known about their biological activities. We examined whether six selenol ester derivatives were nematicidal and ovicidal to the nematodes <i>Caenorhabditis elegans</i> and <i>Meloidogyne incognita</i>, and determined their toxicity to non-target organisms. The compound Se-<i>p</i>-methyl phenylselenobenzoate (<b>2e</b>) exhibited the lowest nematicidal and ovicidal Lethal concentration (LC50) to <i>C. elegans</i> (4.42 and 0.56 mg/L, respectively) and <i>M. incognita</i> (4.6 and 2.77 mg/L, respectively), which were similar or lower than the LC50 values for the control treatment with fluensulfone in <i>C. elegans</i> (4.07 and 6.05 mg/L, respectively) and <i>M. incognita</i> (43.07 and 49.63 mg/L, respectively). Compound <b>2e</b> efficiently controlled the phytoparasite in greenhouse and reduced the number of galls and eggs present in tomato roots. Compared with the negative control, compound <b>2e</b> was not toxic to other organisms such as <i>Chlorella vulgaris</i> algae, <i>Galleria mellonella</i> and <i>Aedes aegypti</i> larvae, and the aquatic protozoan <i>Tetrahymena pyriformis</i>. Our findings indicate that the selenol ester derivatives are potent and effective nematicides with no toxicity to the non-target organisms tested.</p>","PeriodicalId":16736,"journal":{"name":"Journal of Pest Science","volume":null,"pages":null},"PeriodicalIF":4.3000,"publicationDate":"2024-02-09","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Nematicidal and ovicidal activity of environmentally-friendly selenol ester derivatives against Meloidogyne incognita\",\"authors\":\"Suzana Junges Vendruscolo, Angélica Justino de Oliveira, Janaina Rosa de Sousa, Sabrina Targanski, André Luiz Stein, Leonardo Gomes de Vasconcelos, Paulo Afonso Ferreira, Marcos Antônio Soares\",\"doi\":\"10.1007/s10340-023-01732-3\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Nematodes from the genus <i>Meloidogyne</i> are extremely harmful to agricultural crops due to their wide geographic distribution, variety of hosts, and strong reproductive capacity. The most used phytonematoid control method is the application of nematicides, which can also affect human health and the environment. Selenol ester derivatives have pharmaceutical applications, but little is known about their biological activities. We examined whether six selenol ester derivatives were nematicidal and ovicidal to the nematodes <i>Caenorhabditis elegans</i> and <i>Meloidogyne incognita</i>, and determined their toxicity to non-target organisms. The compound Se-<i>p</i>-methyl phenylselenobenzoate (<b>2e</b>) exhibited the lowest nematicidal and ovicidal Lethal concentration (LC50) to <i>C. elegans</i> (4.42 and 0.56 mg/L, respectively) and <i>M. incognita</i> (4.6 and 2.77 mg/L, respectively), which were similar or lower than the LC50 values for the control treatment with fluensulfone in <i>C. elegans</i> (4.07 and 6.05 mg/L, respectively) and <i>M. incognita</i> (43.07 and 49.63 mg/L, respectively). Compound <b>2e</b> efficiently controlled the phytoparasite in greenhouse and reduced the number of galls and eggs present in tomato roots. Compared with the negative control, compound <b>2e</b> was not toxic to other organisms such as <i>Chlorella vulgaris</i> algae, <i>Galleria mellonella</i> and <i>Aedes aegypti</i> larvae, and the aquatic protozoan <i>Tetrahymena pyriformis</i>. 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Nematicidal and ovicidal activity of environmentally-friendly selenol ester derivatives against Meloidogyne incognita
Nematodes from the genus Meloidogyne are extremely harmful to agricultural crops due to their wide geographic distribution, variety of hosts, and strong reproductive capacity. The most used phytonematoid control method is the application of nematicides, which can also affect human health and the environment. Selenol ester derivatives have pharmaceutical applications, but little is known about their biological activities. We examined whether six selenol ester derivatives were nematicidal and ovicidal to the nematodes Caenorhabditis elegans and Meloidogyne incognita, and determined their toxicity to non-target organisms. The compound Se-p-methyl phenylselenobenzoate (2e) exhibited the lowest nematicidal and ovicidal Lethal concentration (LC50) to C. elegans (4.42 and 0.56 mg/L, respectively) and M. incognita (4.6 and 2.77 mg/L, respectively), which were similar or lower than the LC50 values for the control treatment with fluensulfone in C. elegans (4.07 and 6.05 mg/L, respectively) and M. incognita (43.07 and 49.63 mg/L, respectively). Compound 2e efficiently controlled the phytoparasite in greenhouse and reduced the number of galls and eggs present in tomato roots. Compared with the negative control, compound 2e was not toxic to other organisms such as Chlorella vulgaris algae, Galleria mellonella and Aedes aegypti larvae, and the aquatic protozoan Tetrahymena pyriformis. Our findings indicate that the selenol ester derivatives are potent and effective nematicides with no toxicity to the non-target organisms tested.
期刊介绍:
Journal of Pest Science publishes high-quality papers on all aspects of pest science in agriculture, horticulture (including viticulture), forestry, urban pests, and stored products research, including health and safety issues.
Journal of Pest Science reports on advances in control of pests and animal vectors of diseases, the biology, ethology and ecology of pests and their antagonists, and the use of other beneficial organisms in pest control. The journal covers all noxious or damaging groups of animals, including arthropods, nematodes, molluscs, and vertebrates.
Journal of Pest Science devotes special attention to emerging and innovative pest control strategies, including the side effects of such approaches on non-target organisms, for example natural enemies and pollinators, and the implementation of these strategies in integrated pest management.
Journal of Pest Science also publishes papers on the management of agro- and forest ecosystems where this is relevant to pest control. Papers on important methodological developments relevant for pest control will be considered as well.