New biologically active ionic liquids with benzethonium cation‐efficient SAR inducers and antimicrobial agents

Author:

Czerwoniec Patrycja12ORCID,Kukawka Rafal1ORCID,Spychalski Maciej1,Koczura Ryszard3ORCID,Mokracka Joanna3ORCID,Smiglak Marcin14

Affiliation:

1. Poznan Science and Technology Park Adam Mickiewicz University Foundation Poznań Poland

2. Faculty of Chemistry Adam Mickiewicz University, Poznań Poznań Poland

3. Department of Microbiology, Faculty of Biology Adam Mickiewicz University, Poznań Poznań Poland

4. Innosil Sp. z o.o. Poznań Poland

Abstract

AbstractBACKGROUNDAn urgent need to find new methods for crop protection remains open due to the withdrawal from the market of the most toxic pesticides and increasing consumer awareness. One of the alternatives that can be used in modern agriculture is the use of bifunctional compounds whose actions towards plant protection are wider than those of conventional pesticides.RESULTSIn this study, we present the investigation of the biological efficacy of nine dual‐functional salts containing a systemic acquired resistance (SAR)‐inducing anion and the benzethonium cation. A significant result of the presented study is the discovery of the SAR induction activity of benzethonium chloride, which was previously reported only as an antimicrobial agent. Moreover, the concept of dual functionality was proven, as the application of presented compounds in a given concentrations resulted both in the control of human and plant bacteria species and induction of SAR.CONCLUSIONThe strategy presented in this article shows the capabilities of derivatization of common biologically active compounds into their ionic derivatives to obtain bifunctional salts. This approach may be an example of the design of potential new compounds for modern agriculture. It provides plants with two complementary actions allowing to provide efficient protection to plants, if one mode of action is ineffective. © 2024 Society of Chemical Industry.

Funder

Narodowe Centrum Badań i Rozwoju

Publisher

Wiley

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