Somala, Naphat
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Somala, Naphat
Alternative Name
Somala, N.
Main Affiliation
Email
naphat.so@kmitl.ac.th
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Item type:Publication, Herbicidal Activity of the Invasive Weed Malachra capitata L.: Growth Stage Dependence, Bioassay-Guided Fractionation, and Physiological Effects on Seed Germination(2026-03-01) ;Wichittrakarn, Pattharin ;Sathuwijarn, Sirichai ;Manichart, Nutcha ;Yoneyama, KaoriThe invasive weed Malachra capitata is unsuitable for human or animal consumption but has recently attracted attention for potential alternative uses. In this study, the allelopathic potential of M. capitata for weed control was investigated, as were its allelopathic effects on selected crops. The influence of plant developmental stage on its phytotoxic activity was also assessed. In addition, the physiological effects of the extract on seed germination were investigated. Aqueous leaf extracts were obtained across a range of growth stages and evaluated using seed germination and seedling growth bioassays, followed by bioassay-guided fractionation and GC-MS analysis. Leaves extracts collected at 35 days after planting exhibited the strongest inhibitory activity. Dicot plant species (Phaseolus lathyroides, Cucumis sativus, Brassica oleracea, and B. chinensis) were more susceptible to M. capitata extracts than grassy species (Echinochloa crus-galli, Zea mays, and Oryza sativa), indicating selective phytotoxicity. In pot experiments, application of leaf residues as surface mulch at rates of 100, 200, and 400 g/m<sup>2</sup> significantly reduced P. lathyroides emergence by 11.25%, 35.00%, and 71.25%, respectively. Bioassay-guided fractionation indicated the ethyl acetate-soluble acidic fraction to contain the active allelochemicals. This inhibition was associated with reduced water uptake and suppression of α-amylase activity during seed germination. The most abundant GC-MS detectable components of the acidic fraction were octadecane (12.45%), eicosane (9.74%), and hexadecane (9.60%). Overall, these findings highlight the allelopathic potential of M. capitata, providing a foundation for further applied research and supporting its valorization for sustainable weed management. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Formulation and application of clove essential oil-based nanoemulsion against Ruellia tuberosa L.(2023-02-01); ; ;Dimak, J.Clove essential oil, a volatile compound, plays a role in herbicidal action on broadleaf weeds. Synthesis and technology nanoemulsion-based herbicide help protect the effectiveness of oils. The present study focused on the formulation, characteristics of clove essential oil-based nanoemulsion, and their herbicidal activity against Ruellia tuberosa L. The nanoemulsion containing clove essential oil was produced using the high-energy emulsification method with Tween 85 (HLB 11) and Span 85 (HLB 1.8) as an emulsifier agent (non-ionic surfactant), enabling the performance of clove oil nanoparticle size. The characteristic of nanoemulsion after being prepared 1 day showed that the droplet size, polydispersity index (PI) and zeta potential value was 152.5 nm, 0.162 and -32.68 mV, respectively. Even after 28 days, these characteristics have changed slightly. To confirm the droplet size, transmission electron microscope (TEM) images verified the clove oil-based nanoparticle size. Pre-emergence herbicidal activity under laboratory tests showed that the nanoemulsion at a concentration of 100, 200, 400 and 800 µL L<sup>-1</sup> of oil reduced the germination and seedling growth of the tested weed. Inhibitory effect was absolutely at 800 µL L<sup>-1</sup> of clove oil. Post-emergence application of nanoemulsion at a various concentration of 2000, 4000, 8000 and 10000 µL L<sup>-1</sup> of oil was sprayed on 2-4 true leaves stage of tested weed. After foliar-applied nanoemulsion 24 h, the results showed that chlorophyll and carotenoid content decreased. Moreover, an increase in relative electrolyte leakage (REL) and malondialdehyde (MDA) indicated membrane disruption. This research supported that the clove oil-based nanoformulation may have a strong phytotoxic effect on R. tuberosa L. The nanoemulsion from clove oil is friendly to the environment and promote natural herbicide production for sustainable weed control.
