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Alkaline Soil Degradation and Crop Safety of 5-Substituted Chlorsulfuron Derivatives

Sulfonylurea herbicides can lead to serious weed resistance due to their long degradation times and large-scale applications. This is especially true for chlorsulfuron, a widely used acetolactate synthase inhibitor used around the world. Its persistence in soil often affects the growth of crop seedl...

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Autores principales: Wu, Lei, Hua, Xue-Wen, Li, Yong-Hong, Wang, Zhong-Wen, Zhou, Sha, Li, Zheng-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9145588/
https://www.ncbi.nlm.nih.gov/pubmed/35630795
http://dx.doi.org/10.3390/molecules27103318
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author Wu, Lei
Hua, Xue-Wen
Li, Yong-Hong
Wang, Zhong-Wen
Zhou, Sha
Li, Zheng-Ming
author_facet Wu, Lei
Hua, Xue-Wen
Li, Yong-Hong
Wang, Zhong-Wen
Zhou, Sha
Li, Zheng-Ming
author_sort Wu, Lei
collection PubMed
description Sulfonylurea herbicides can lead to serious weed resistance due to their long degradation times and large-scale applications. This is especially true for chlorsulfuron, a widely used acetolactate synthase inhibitor used around the world. Its persistence in soil often affects the growth of crop seedlings in the following crop rotation, and leads to serious environmental pollution all over the world. Our research goal is to obtain chlorsulfuron-derived herbicides with high herbicidal activities, fast degradation times, as well as good crop safety. On account of the slow natural degradation of chlorsulfuron in alkaline soil, based on the previously reported results in acidic soil, the degradation behaviours of 5-substituted chlorsulfuron analogues (L101–L107) were investigated in a soil with pH 8.39. The experimental data indicated that 5-substituted chlorsulfuron compounds could accelerate degradation rates in alkaline soil, and thus, highlighted the potential for rational controllable degradation in soil. The degradation rates of these chlorsulfuron derivatives were accelerated by 1.84–77.22-fold, compared to chlorsulfuron, and exhibited excellent crop safety in wheat and corn (through pre-emergence treatment). In combination with bioassay activities, acidic and alkaline soil degradation, and crop safety, it was concluded that compounds L104 and L107, with ethyl or methyl groups, are potential green sulfonylurea herbicides for pre-emergence treatment on wheat and corn. This paper provides a reference for the further design of new sulfonylurea herbicides with high herbicidal activity, fast, controllable degradation rates, and high crop safety.
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spelling pubmed-91455882022-05-29 Alkaline Soil Degradation and Crop Safety of 5-Substituted Chlorsulfuron Derivatives Wu, Lei Hua, Xue-Wen Li, Yong-Hong Wang, Zhong-Wen Zhou, Sha Li, Zheng-Ming Molecules Article Sulfonylurea herbicides can lead to serious weed resistance due to their long degradation times and large-scale applications. This is especially true for chlorsulfuron, a widely used acetolactate synthase inhibitor used around the world. Its persistence in soil often affects the growth of crop seedlings in the following crop rotation, and leads to serious environmental pollution all over the world. Our research goal is to obtain chlorsulfuron-derived herbicides with high herbicidal activities, fast degradation times, as well as good crop safety. On account of the slow natural degradation of chlorsulfuron in alkaline soil, based on the previously reported results in acidic soil, the degradation behaviours of 5-substituted chlorsulfuron analogues (L101–L107) were investigated in a soil with pH 8.39. The experimental data indicated that 5-substituted chlorsulfuron compounds could accelerate degradation rates in alkaline soil, and thus, highlighted the potential for rational controllable degradation in soil. The degradation rates of these chlorsulfuron derivatives were accelerated by 1.84–77.22-fold, compared to chlorsulfuron, and exhibited excellent crop safety in wheat and corn (through pre-emergence treatment). In combination with bioassay activities, acidic and alkaline soil degradation, and crop safety, it was concluded that compounds L104 and L107, with ethyl or methyl groups, are potential green sulfonylurea herbicides for pre-emergence treatment on wheat and corn. This paper provides a reference for the further design of new sulfonylurea herbicides with high herbicidal activity, fast, controllable degradation rates, and high crop safety. MDPI 2022-05-21 /pmc/articles/PMC9145588/ /pubmed/35630795 http://dx.doi.org/10.3390/molecules27103318 Text en © 2022 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 Article
Wu, Lei
Hua, Xue-Wen
Li, Yong-Hong
Wang, Zhong-Wen
Zhou, Sha
Li, Zheng-Ming
Alkaline Soil Degradation and Crop Safety of 5-Substituted Chlorsulfuron Derivatives
title Alkaline Soil Degradation and Crop Safety of 5-Substituted Chlorsulfuron Derivatives
title_full Alkaline Soil Degradation and Crop Safety of 5-Substituted Chlorsulfuron Derivatives
title_fullStr Alkaline Soil Degradation and Crop Safety of 5-Substituted Chlorsulfuron Derivatives
title_full_unstemmed Alkaline Soil Degradation and Crop Safety of 5-Substituted Chlorsulfuron Derivatives
title_short Alkaline Soil Degradation and Crop Safety of 5-Substituted Chlorsulfuron Derivatives
title_sort alkaline soil degradation and crop safety of 5-substituted chlorsulfuron derivatives
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9145588/
https://www.ncbi.nlm.nih.gov/pubmed/35630795
http://dx.doi.org/10.3390/molecules27103318
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