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Polyphenol-Based Microencapsulated Extracts as Novel Green Insecticides for Sustainable Management of Polyphagous Brown Marmorated Stink Bug (Halyomorpha halys Stål, 1855) (CROSBI ID 286473)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Pajač Živković, Ivana ; Jurić, Slaven ; Vinceković, Marko ; Galešić, Marija Andrijana ; Marijan, Marijan ; Vlahoviček-Kahlina, Kristina ; Mikac, Katarina M. ; Lemić, Darija Polyphenol-Based Microencapsulated Extracts as Novel Green Insecticides for Sustainable Management of Polyphagous Brown Marmorated Stink Bug (Halyomorpha halys Stål, 1855) // Sustainability, 12 (2020), 23; 10079, 16. doi: 10.3390/su122310079

Podaci o odgovornosti

Pajač Živković, Ivana ; Jurić, Slaven ; Vinceković, Marko ; Galešić, Marija Andrijana ; Marijan, Marijan ; Vlahoviček-Kahlina, Kristina ; Mikac, Katarina M. ; Lemić, Darija

engleski

Polyphenol-Based Microencapsulated Extracts as Novel Green Insecticides for Sustainable Management of Polyphagous Brown Marmorated Stink Bug (Halyomorpha halys Stål, 1855)

The brown marmorated stink bug (Halyomorpha halys Stål, 1855) is an invasive polyphagous species that threatens fruit growing both in the United States and Europe. Many pesticide active ingredients have been studied in H. halys management, but for sustainable fruit growing, which implies the reduction of chemical harm to the environment, new safe insecticides should be implemented into the practice. For this purpose, novel green insecticide based on natural polyphenols of species Stevia rebaudiana (Bertoni) Bertoni and Aronia melanocarpa (Michx.) Elliott 1821 was developed. Stevia leaves (SLE) and Aronia pomace (APE) aqueous extracts were prepared using the ultrasound-assisted extraction method. Optimal extraction conditions for bioactive compounds (total polyphenols, flavonoids, anthocyanins, and flavan-3-ols, respectively) and antioxidant activity were determined using response surface methodology. Bioactive compounds rich SLE and APE were encapsulated in calcium alginate microparticles by the ionic gelation method. Physicochemical characteristics (morphology, size, encapsulation effciency, loading capacity, and swelling) of microparticles showed very good properties with especially high encapsulation effciency. Fitting to simple Korsmeyer–Peppa’s empirical model revealed that the underlying release mechanism of polyphenols is Fickian diffusion. SLE loaded microparticles showed very good pesticidal effciency against Halyomorpha halys, especially on younger larval stages after both contact and digestive treatment. Microparticles loaded with APE did not achieve satisfactory digestive effciency, but a certain toxic impact has been observed at contact application on all H. halys growth stages. Microparticles loaded with SLS exhibited prolonged insecticidal action against H. halys and could be a potential candidate as a green insecticide whose application could increase fruit growing safety.

stevia leaves ; aronia pomace ; encapsulation ; polyphenols ; Halyomorpha halys ; green insecticides

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Podaci o izdanju

12 (23)

2020.

10079

16

objavljeno

2071-1050

10.3390/su122310079

Povezanost rada

Kemija, Poljoprivreda (agronomija)

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