Biologically synthesized zinc and copper oxide nanoparticles using Cannabis sativa L. enhance soybean (Glycine max) defense against fusarium virguliforme.

Antifungal Biopesticide Cannabis sativa L. Copper oxide nanoparticles Fusarium virguliforme Zinc oxide nanoparticles

Journal

Pesticide biochemistry and physiology
ISSN: 1095-9939
Titre abrégé: Pestic Biochem Physiol
Pays: United States
ID NLM: 1301573

Informations de publication

Date de publication:
Aug 2023
Historique:
received: 20 04 2023
revised: 25 05 2023
accepted: 31 05 2023
medline: 4 8 2023
pubmed: 3 8 2023
entrez: 2 8 2023
Statut: ppublish

Résumé

In this study, zinc and copper oxide nanoparticles (NPs) were synthesized using hemp (Cannabis sativa L.) leaves (ZnONP-HL and CuONP-HL), and their antifungal potential was assessed against Fusarium virguliforme in soybean (Glycine max L.). Hemp was selected because it is known to contain large quantities of secondary metabolites that can potentially enhance the reactivity of NPs through surface property modification. Synthesizing NPs with biologically derived materials allows to avoid the use of harsh and expensive synthetic reducing and capping agents. The ZnONP-HL and CuONP-HL showed average grain/crystallite size of 13.51 nm and 7.36 nm, respectively. The biologically synthesized NPs compared well with their chemically synthesized counterparts (ZnONP chem, and CuONP chem; 18.75 nm and 10.05 nm, respectively), confirming the stabilizing role of hemp-derived biomolecules. Analysis of the hemp leaf extract and functional groups that were associated with ZnONP-HL and CuONP-HL confirmed the presence of terpenes, flavonoids, and phenolic compounds. Biosynthesized NPs were applied on soybeans as bio-nano-fungicides against F. virguliforme via foliar treatments. ZnONP-HL and CuONP-HL at 200 μg/mL significantly (p < 0.05) increased (∼ 50%) soybean growth, compared to diseased controls. The NPs improved the nutrient (e.g., K, Ca, P) content and enhanced photosynthetic indicators of the plants by 100-200%. A 300% increase in the expression of soybean pathogenesis related GmPR genes encoding antifungal and defense proteins confirmed that the biosynthesized NPs enhanced disease resistance against the fungal phytopathogen. The findings from this study provide novel evidence of systemic suppression of fungal disease by nanobiopesticides, via promoting plant defense mechanisms.

Identifiants

pubmed: 37532316
pii: S0048-3575(23)00151-7
doi: 10.1016/j.pestbp.2023.105486
pii:
doi:

Substances chimiques

cuprous oxide T8BEA5064F
Copper 789U1901C5
Zinc J41CSQ7QDS
Antifungal Agents 0
Oxides 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

105486

Informations de copyright

Copyright © 2023 Elsevier Inc. All rights reserved.

Déclaration de conflit d'intérêts

Declaration of Competing Interest None.

Auteurs

Ines Karmous (I)

The Connecticut Agricultural Experiment Station (CAES), CT, USA; The Higher Institute of Applied Biology of Medenine (ISBAM), University of Gabes, Tunisia; Faculty of Sciences of Bizerte (FSB), University of Carthage, Tunisia. Electronic address: ineskarmouss@gmail.com.

Shital Vaidya (S)

The Connecticut Agricultural Experiment Station (CAES), CT, USA. Electronic address: shitalravaidya@gmail.com.

Christian Dimkpa (C)

The Connecticut Agricultural Experiment Station (CAES), CT, USA. Electronic address: Christian.Dimkpa@ct.gov.

Nubia Zuverza-Mena (N)

The Connecticut Agricultural Experiment Station (CAES), CT, USA. Electronic address: Nubia.Zuverza@ct.gov.

Washington da Silva (W)

The Connecticut Agricultural Experiment Station (CAES), CT, USA. Electronic address: Washington.daSilva@ct.gov.

Karol Alves Barroso (KA)

The Connecticut Agricultural Experiment Station (CAES), CT, USA. Electronic address: k.alvesbarroso@gmail.com.

Juliana Milagres (J)

The Connecticut Agricultural Experiment Station (CAES), CT, USA. Electronic address: juliana.s.milagres@ufv.br.

Anuja Bharadwaj (A)

The Connecticut Agricultural Experiment Station (CAES), CT, USA. Electronic address: Anuja.Bharadwaj@ct.gov.

Wael Abdelraheem (W)

Centers for Disease Control and Prevention (CDC/NIOSH/HELD/CBMB), Ohio, USA. Electronic address: whafez2008@gmail.com.

Jason C White (JC)

The Connecticut Agricultural Experiment Station (CAES), CT, USA. Electronic address: Jason.White@ct.gov.

Wade H Elmer (WH)

The Connecticut Agricultural Experiment Station (CAES), CT, USA. Electronic address: wade.elmer@ct.gov.

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