Unveiling the pathogenicity of Cunninghamella echinulata SMH-1 and its bioactive metabolites through metabolomics: Dual-action disruption of Solenopsis invicta mitochondrial bioenergetics and cuticular integrity
Hussain, M.; Gao, X.; Wu, G.; Qin, D.
Show abstract
The invasive red imported fire ant, Solenopsis invicta, poses significant ecological and economic challenges, necessitating sustainable alternatives to conventional pest control. This study evaluates the biocontrol potential of Cunninghamella echinulata isolate SMH-1, an entomopathogenic fungus, through integrated morphological, biochemical, and metabolomic analyses. Light and scanning electron microscopy elucidated infection dynamics, revealing conidial germination, cuticular penetration, and systemic hyphal proliferation, culminating in complete cadaver colonization. At 1x10 conidia/mL, SMH-1 achieved 100% mortality in S. invicta workers within 7 days, with virulence maintained across thermal gradients (10-30{degrees}C). Acetone extracts of SMH- 1 induced dose-dependent lethality, reaching 100% mortality at 1,000 mg/L. Nineteen significantly differentiated metabolites were identified from phospholipids category through UPLC/MS analysis of isolate SMH-1. The derived compounds also showed strong potential against S. invicta, among which dihydrocoumarin caused 100% mortality over 12-days of exposure. The bioactivity of isolate SMH-1 (Conidia), (extracts) and (dihydrocoumarin) against S. invicta revealed significantly differentiated metabolites as (Sulfolithocholylglycine, PE(18_1(9Z)_0_0), CE(12:0), LysoPI(18:1(9Z)/0:0) and Hydroxydestruxin B), (Tropine, lignoceric acid, 9-deoxy-9-methylene-16,16-dimethyl-PGE2, Flecainide and Jubanine B), and (3-O-alpha-D-Glucopyranuronosyl-D-xylose, Rilmakalim, 2-Amino-3-methyl-1-butanol, 2,4-Dimethyl-1,3-oxazole-5-carboxylic acid and Caffeinol), respectively. Citrate cycle (TCA) was significantly impacted by differential expression of pyruvate, pyruvic acid, succinic acid and fumaric acid. These findings underscore SMH-1s multifaceted biocontrol potential, combining direct pathogenicity, thermo-tolerance, and metabolite-mediated toxicity. By delineating host-pathogen interactions and metabolic disruptions, this work advances C. echinulata isolate SMH-1 as a sustainable candidate for integrated S. invicta management, offering an eco-friendly alternative to synthetic insecticides. Author SummaryInvasive fire ants (S. invicta) threaten ecosystems and agriculture worldwide, and current chemical controls often harm the environment. In this study, we explored a natural alternative: a soil-dwelling fungus called Cunninghamella echinulata (strain SMH-1). We discovered that this fungus can kill fire ants with remarkable efficiency. When applied directly, its spores caused 100% ant mortality within a week, even under varying temperatures. We also identified key fungal compounds, including dihydrocoumarin, which are lethal to ants. By studying how the fungus invades and disrupts the ants biology-such as breaking down their protective outer layers and interfering with their energy production, we revealed why SMH-1 is so effective. Our findings highlight SMH-1s potential as a safe, eco-friendly biocontrol agent. This fungus could reduce reliance on synthetic pesticides, offering farmers and communities a sustainable tool to combat fire ant invasions while protecting biodiversity. Our work bridges lab discoveries and real-world pest management, paving the way for greener solutions in agriculture and ecosystem conservation.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Screening of tomato seed bacterial endophytes for antifungal activity reveals lipopeptide producing Bacillus siamensis as a potential bio-control agent 95%
- The Biogeography of Fungal Communities Across Different Chinese Wine-producing Regions Associated with Environmental Factors and Spontaneous Fermentation Performance 95%
- Effect of a Monascus sp. red yeast rice extract on germination of bacterial spores 95%
Similar papers in this journal
- Nematicidal and antifeedant activity of ethyl acetate extracts from culture filtrates of Arabidopsis thaliana fungal endophytes 97%
- Genomic and transcriptomic analysis of camptothecin producing novel fungal endophyte - Alternaria burnsii NCIM 1409 96%
- Gut microbial communities associated with phenotypically divergent populations of the striped stem borer Chilo suppressalis 94%
Similar papers in this journal
- MAPK cascades mediating Trichoderma brevicrassum strain TC967 against phytopathogen Rhizoctonia solani 96%
- Oligogalacturonides, produced by enzymatic degradation of sugar beet by-products, confer partial protection against wheat powdery mildew 93%
- Response of whitefly to the wild tomato Solanum habrochaites 93%
Similar papers in this journal
- Metabolomics and Transcriptomics unravel the mechanism of browning resistance in Agaricus bisporus 97%
- Mechanism of interaction of an endofungal bacterium Serratia marcescens D1 with its host and non-host fungi 96%
- Analysis of secondary metabolite gene clusters and chitin biosynthesis pathways of Monascus purpureus with high production of pigment and citrinin based on whole-genome sequencing 96%
Similar papers in this journal
- ANTARCTIC FUNGI: A BIO-SOURCE ALTERNATIVE TO PRODUCE POLYUNSATURATED FATTY ACIDS (PUFAs) 96%
- Isolation, screening, degradation characteristics of a quinclorac-degrading bacteria D and its potential of bioremediation for rice field environment polluted by quinclorac 95%
- Honeybees exposure to veterinary drugs: how the gut microbiota is affected 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.