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Perfect Complementarity Mechanism for Aphid Control: Oligonucleotide Insecticide Macsan-11 Selectively Causes High Mortality Rate for Macrosiphoniella sanborni Gillette

Macrosiphoniella sanborni is a widespread pest of Chrysanthemum morifolium that causes significant damage to world floriculture. Chemical insecticides and biological methods of control have a number of disadvantages that can be improved by using oligonucleotide insecticides. In this article, we pres...

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Autores principales: Puzanova, Yelizaveta V., Novikov, Ilya A., Bilyk, Anastasiya I., Sharmagiy, Alexander K., Plugatar, Yuri V., Oberemok, Volodymyr V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10380438/
https://www.ncbi.nlm.nih.gov/pubmed/37511449
http://dx.doi.org/10.3390/ijms241411690
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author Puzanova, Yelizaveta V.
Novikov, Ilya A.
Bilyk, Anastasiya I.
Sharmagiy, Alexander K.
Plugatar, Yuri V.
Oberemok, Volodymyr V.
author_facet Puzanova, Yelizaveta V.
Novikov, Ilya A.
Bilyk, Anastasiya I.
Sharmagiy, Alexander K.
Plugatar, Yuri V.
Oberemok, Volodymyr V.
author_sort Puzanova, Yelizaveta V.
collection PubMed
description Macrosiphoniella sanborni is a widespread pest of Chrysanthemum morifolium that causes significant damage to world floriculture. Chemical insecticides and biological methods of control have a number of disadvantages that can be improved by using oligonucleotide insecticides. In this article, we present, for the first time, the results of using oligonucleotide insecticides, for which the target sequence is an internal transcribed spacer (ITS) in a polycistronic rRNA transcript. The mortality of wingless aphid individuals after a Macsan-11 treatment was recorded at a level of 67.15 ± 3.32% 7 days after a single treatment with a solution at a concentration of 100 ng/μL and 97.38 ± 2.49% 7 days after a double treatment with a solution of the same concentration and a daily interval. The contact use of the control oligonucleotide (ACTG)(2)ACT-11. as well as the oligonucleotide insecticides Macsan-11(3′) and Macsan-11(5′) was not accompanied by insect mortality. Given the high variability in the internal transcribed spacer, which has proven to be a promising target for the action of oligonucleotide insecticides, it is possible to create selective preparations. This study showed the prospects of ribosomal insect pest genes as targets for the action of olinscides, and also demonstrated the high specificity of such insecticidal agents.
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spelling pubmed-103804382023-07-29 Perfect Complementarity Mechanism for Aphid Control: Oligonucleotide Insecticide Macsan-11 Selectively Causes High Mortality Rate for Macrosiphoniella sanborni Gillette Puzanova, Yelizaveta V. Novikov, Ilya A. Bilyk, Anastasiya I. Sharmagiy, Alexander K. Plugatar, Yuri V. Oberemok, Volodymyr V. Int J Mol Sci Brief Report Macrosiphoniella sanborni is a widespread pest of Chrysanthemum morifolium that causes significant damage to world floriculture. Chemical insecticides and biological methods of control have a number of disadvantages that can be improved by using oligonucleotide insecticides. In this article, we present, for the first time, the results of using oligonucleotide insecticides, for which the target sequence is an internal transcribed spacer (ITS) in a polycistronic rRNA transcript. The mortality of wingless aphid individuals after a Macsan-11 treatment was recorded at a level of 67.15 ± 3.32% 7 days after a single treatment with a solution at a concentration of 100 ng/μL and 97.38 ± 2.49% 7 days after a double treatment with a solution of the same concentration and a daily interval. The contact use of the control oligonucleotide (ACTG)(2)ACT-11. as well as the oligonucleotide insecticides Macsan-11(3′) and Macsan-11(5′) was not accompanied by insect mortality. Given the high variability in the internal transcribed spacer, which has proven to be a promising target for the action of oligonucleotide insecticides, it is possible to create selective preparations. This study showed the prospects of ribosomal insect pest genes as targets for the action of olinscides, and also demonstrated the high specificity of such insecticidal agents. MDPI 2023-07-20 /pmc/articles/PMC10380438/ /pubmed/37511449 http://dx.doi.org/10.3390/ijms241411690 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Brief Report
Puzanova, Yelizaveta V.
Novikov, Ilya A.
Bilyk, Anastasiya I.
Sharmagiy, Alexander K.
Plugatar, Yuri V.
Oberemok, Volodymyr V.
Perfect Complementarity Mechanism for Aphid Control: Oligonucleotide Insecticide Macsan-11 Selectively Causes High Mortality Rate for Macrosiphoniella sanborni Gillette
title Perfect Complementarity Mechanism for Aphid Control: Oligonucleotide Insecticide Macsan-11 Selectively Causes High Mortality Rate for Macrosiphoniella sanborni Gillette
title_full Perfect Complementarity Mechanism for Aphid Control: Oligonucleotide Insecticide Macsan-11 Selectively Causes High Mortality Rate for Macrosiphoniella sanborni Gillette
title_fullStr Perfect Complementarity Mechanism for Aphid Control: Oligonucleotide Insecticide Macsan-11 Selectively Causes High Mortality Rate for Macrosiphoniella sanborni Gillette
title_full_unstemmed Perfect Complementarity Mechanism for Aphid Control: Oligonucleotide Insecticide Macsan-11 Selectively Causes High Mortality Rate for Macrosiphoniella sanborni Gillette
title_short Perfect Complementarity Mechanism for Aphid Control: Oligonucleotide Insecticide Macsan-11 Selectively Causes High Mortality Rate for Macrosiphoniella sanborni Gillette
title_sort perfect complementarity mechanism for aphid control: oligonucleotide insecticide macsan-11 selectively causes high mortality rate for macrosiphoniella sanborni gillette
topic Brief Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10380438/
https://www.ncbi.nlm.nih.gov/pubmed/37511449
http://dx.doi.org/10.3390/ijms241411690
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