Hydrazone modification of non-food natural product sclareolide as potential agents for plant disease
Plant diseases and their drug resistance pose a serious threat to agricultural production. One way to solve this problem is to discover new and efficient botanical pesticides. Herein, a series of novel hydrazide-hydrazone-containing sesquiterpenoid derivatives were synthesized by simply modifying th...
| Published in: | Heliyon |
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| Main Authors: | , , , , , |
| Format: | Article |
| Language: | English |
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Elsevier
2022-12-01
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| Subjects: | |
| Online Access: | http://www.sciencedirect.com/science/article/pii/S2405844022036799 |
| _version_ | 1852643796218544128 |
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| author | Ali Dai Zhiguo Zheng Yuanqin Huang Lijiao Yu Zhenchao Wang Jian Wu |
| author_facet | Ali Dai Zhiguo Zheng Yuanqin Huang Lijiao Yu Zhenchao Wang Jian Wu |
| author_sort | Ali Dai |
| collection | DOAJ |
| container_title | Heliyon |
| description | Plant diseases and their drug resistance pose a serious threat to agricultural production. One way to solve this problem is to discover new and efficient botanical pesticides. Herein, a series of novel hydrazide-hydrazone-containing sesquiterpenoid derivatives were synthesized by simply modifying the structure of the non-food natural product sclareolide. The biological activity results illustrated that compared to ningnanmycin (39.2 μg/mL), compound Z28 had the highest antiviral activity against tobacco mosaic virus (TMV), and the concentration for 50% of maximal effect (EC50) of its inactivation activity was 38.7 μg/mL, followed by compound Z14 (40.6 μg/mL). Transmission electron microscopy (TEM) demonstrated that TMVs treated with compounds Z14 and Z28 were broken into rods of different lengths, and their external morphology was fragmented or even severely fragmented. Autodocking and molecular dynamics (MD) simulations indicated that compound Z28 had a strong affinity for tobacco mosaic virus coat protein (TMV-CP), with a higher binding energy of −8.25 kcal/mol compared to ningnanmycin (−6.79 kcal/mol). The preliminary mechanism revealed that compound Z28 can achieve an antiviral effect by targeting TMV-CP, rendering TMV unable to self-assemble and replicate, and might be a candidate for a novel plant antiviral agent. Furthermore, the curative and protective activities of compound Z22 (EC50 = 16.1 μg/mL) against rice bacterial blight were 51.3% and 50.8%, respectively. Its control effect was better than that of bismerthiazol (BT) and thiadiazole copper (TC), compound Z22 that can be optimized as an active molecule. |
| format | Article |
| id | doaj-art-b60d293333ca4672b73dacf6a40ea1b2 |
| institution | Directory of Open Access Journals |
| issn | 2405-8440 |
| language | English |
| publishDate | 2022-12-01 |
| publisher | Elsevier |
| record_format | Article |
| spelling | doaj-art-b60d293333ca4672b73dacf6a40ea1b22025-08-19T21:43:43ZengElsevierHeliyon2405-84402022-12-01812e1239110.1016/j.heliyon.2022.e12391Hydrazone modification of non-food natural product sclareolide as potential agents for plant diseaseAli Dai0Zhiguo Zheng1Yuanqin Huang2Lijiao Yu3Zhenchao Wang4 Jian Wu5State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Huaxi District, Guiyang 550025, ChinaState Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Huaxi District, Guiyang 550025, ChinaState Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Huaxi District, Guiyang 550025, ChinaState Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Huaxi District, Guiyang 550025, ChinaCorresponding author.; State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Huaxi District, Guiyang 550025, ChinaCorresponding author.; State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Huaxi District, Guiyang 550025, ChinaPlant diseases and their drug resistance pose a serious threat to agricultural production. One way to solve this problem is to discover new and efficient botanical pesticides. Herein, a series of novel hydrazide-hydrazone-containing sesquiterpenoid derivatives were synthesized by simply modifying the structure of the non-food natural product sclareolide. The biological activity results illustrated that compared to ningnanmycin (39.2 μg/mL), compound Z28 had the highest antiviral activity against tobacco mosaic virus (TMV), and the concentration for 50% of maximal effect (EC50) of its inactivation activity was 38.7 μg/mL, followed by compound Z14 (40.6 μg/mL). Transmission electron microscopy (TEM) demonstrated that TMVs treated with compounds Z14 and Z28 were broken into rods of different lengths, and their external morphology was fragmented or even severely fragmented. Autodocking and molecular dynamics (MD) simulations indicated that compound Z28 had a strong affinity for tobacco mosaic virus coat protein (TMV-CP), with a higher binding energy of −8.25 kcal/mol compared to ningnanmycin (−6.79 kcal/mol). The preliminary mechanism revealed that compound Z28 can achieve an antiviral effect by targeting TMV-CP, rendering TMV unable to self-assemble and replicate, and might be a candidate for a novel plant antiviral agent. Furthermore, the curative and protective activities of compound Z22 (EC50 = 16.1 μg/mL) against rice bacterial blight were 51.3% and 50.8%, respectively. Its control effect was better than that of bismerthiazol (BT) and thiadiazole copper (TC), compound Z22 that can be optimized as an active molecule.http://www.sciencedirect.com/science/article/pii/S2405844022036799Sesquiterpenoid derivativesHydrazide-hydrazoneAntiviral activityTobacco mosaic virusPreliminary mechanism |
| spellingShingle | Ali Dai Zhiguo Zheng Yuanqin Huang Lijiao Yu Zhenchao Wang Jian Wu Hydrazone modification of non-food natural product sclareolide as potential agents for plant disease Sesquiterpenoid derivatives Hydrazide-hydrazone Antiviral activity Tobacco mosaic virus Preliminary mechanism |
| title | Hydrazone modification of non-food natural product sclareolide as potential agents for plant disease |
| title_full | Hydrazone modification of non-food natural product sclareolide as potential agents for plant disease |
| title_fullStr | Hydrazone modification of non-food natural product sclareolide as potential agents for plant disease |
| title_full_unstemmed | Hydrazone modification of non-food natural product sclareolide as potential agents for plant disease |
| title_short | Hydrazone modification of non-food natural product sclareolide as potential agents for plant disease |
| title_sort | hydrazone modification of non food natural product sclareolide as potential agents for plant disease |
| topic | Sesquiterpenoid derivatives Hydrazide-hydrazone Antiviral activity Tobacco mosaic virus Preliminary mechanism |
| url | http://www.sciencedirect.com/science/article/pii/S2405844022036799 |
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