Academic literature on the topic 'NeemAzal T/S'

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Journal articles on the topic "NeemAzal T/S"

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Shawki M, A.-A., V. Táborský, F. Kamler, and J. Kazda. "Effect of two NeemAzalTM formulations on honeybees under semi-field conditions." Plant Protection Science 41, No. 2 (2010): 63–72. http://dx.doi.org/10.17221/2744-pps.

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The effects of NeemAzalTM formulations: NeemAzalTM T/S (1% azadirachtin) and NeemAzalTM granules (1% azadirachtin) on honeybees, <i>Apis mellifera</i> L., were studied under semi-field conditions. Three plots at 15 m<sup>2</sup> each were sown with spring rape seeds Brassica napus cultivar Likolly (Brassicaceae/Cruciferae). In the first plot NeemAzal granules were added with the seeds during sowing. The second plot was sprayed with NeemAzal T/S during full flowering; GreemaxTM was used as a wetting agent. The third one was sprayed with water only during full flowering a
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Selem, Gamila Sh, and El-Sayed A. El-Sheikh. "TOXICITY AND BIOCHEMICAL EFFECTS OF NEEM AZAL T/S, WILLOW (SALIX AEGYPTIACA L.) AND CHASTEBERRY (VITEX AGNUS-CASTUS L.) ON HOUSE FLY, MUSCA DOMESTICA L. (DIPTRA : MUSCIDAE)." Journal of Biopesticides 8, no. 1 (2015): 37–44. http://dx.doi.org/10.57182/jbiopestic.8.1.37-44.

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The house fly, Musca domestica, is a very significant pest due to transmitting of various human and animal pathogenic diseases. In a response to environmental threats of chemical insecticides, toxic and biochemical effects of a relatively new plant extracts of willow (Salix aegyptiaca L.) and chasteberry (Vitex agnus-castus L.) comparing with NeemAzal T/S were studied on 3rd larval instar of M. domestica. Results showed that NeemAzal T/S is highly toxic to 3rd larval instar with LC50 and LC90 of 0.009 and 0.098 µg mL-1, respectively. Whereas, willow and chasteberry showed low toxic effects com
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Bartelsmeier, Imke, Michael Kilian, Cindy J. M. ten Broeke, Daan Mertens, and Marcel Dicke. "Local and systemic effect of azadirachtin on host choice and feeding activity of Macrosiphum rosae on rose plants." Arthropod-Plant Interactions 16, no. 2 (2022): 191–204. http://dx.doi.org/10.1007/s11829-022-09889-x.

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AbstractMany studies in the last decades addressed the antifeedant and repellent effects of neem (Azadirachta indica)-based pesticides on arthropod herbivores with azadirachtin as the leading active ingredient. However, results for aphids regarding repellence and feeding were often contradictory and mainly based on laboratory studies with self-made neem extracts in high concentrations. Moreover, no data are available on the presence of azadirachtin in the phloem of treated plants—the tissue that most aphids feed on. We investigated how the application of the commercial neem product NeemAzal-T/
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Milenkovic, Slobodan, Dejan Marcic, and Lazar Ruzicic. "Control of green apple aphid (Aphis pomi De Geer) in organic apple production." Pesticidi i fitomedicina 28, no. 4 (2013): 281–85. http://dx.doi.org/10.2298/pif1304281m.

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The efficacy of different methods for controlling populations of green apple aphid (Aphis pomi De Geer) in organic apple orchard was compared over three consecutive years. The following three control methods were tested: a) predator activity (Coccinela septempunctata), b) predator activity (C. septempunctata) + selective spraying of trees with infestation level exceeding 10% with a botanical insecticide (NeemAzal T/S), and c) predator activity (C. septempunctata) + total spraying of all orchard trees with the botanical insecticide (NeemAzal T/S). In terms of maintaining a biological balance wi
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Marcic, Dejan, Mirjana Prijovic, Tanja Drobnjakovic, Pantelija Peric, Milan Sevic, and Svetomir Stamenkovic. "Effects of bioinsecticides in control of greenhouse whitefly (Trialeurodes vaporariorum Westwood) on tomato." Pesticidi i fitomedicina 26, no. 4 (2011): 363–69. http://dx.doi.org/10.2298/pif1104363m.

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The effects of commercial products of entomopathogenic fungus Beauveria bassiana (Naturalis; 0.1%, 0.2% and 0.3%), azadirachtin (NeemAzal T/S; 1% and 2%) and oxymatrin (KingBo; 0.1% and 0.2%) in the control of greenhouse whitefly (Trialeurodes vaporariorum Westwood) on tomato were tested in plastic covered greenhouse. The effects of the bioinsecticides, applied twice at five-day interval, were compared to effects of abamectin (Abastate EW; 0.075%) and thiamethoxam (Actara 25-WG; 0.05%). Tested bioinsecticides reduced the number of larvae by 82-97% (Naturalis), 90-99% (NeemAzal T/S) and 90-96%
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H. A. F. El-Shafie and L. M. E. Alawad. "Efficacy of Bacillus thuringiensis var. aizawai and NeemAzal-T/S against the old world bollworm Helicoverpa armigera (Hubner) (Lepidoptera: Noctuidae)." International Journal of Frontiers in Biology and Pharmacy Research 1, no. 1 (2021): 007–12. http://dx.doi.org/10.53294/ijfbpr.2021.1.1.0002.

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The efficacy of XenTari® containing Bacillus thuringiensis var. aizawai (Bta), NeemAzal -T/S® (Azadirachtin A) and their combination were tested against the second and fourth larval instars of the old world bollworm (OWB), Helicoverpa armigera (Hübner). The Bta was applied in three concentrations of 0.5, 1, and 1.5 kg/ha while NeemAzal concentrations were 1, 2, and 3L/ha. The results showed a significant difference in the mortality percentage between the different concentrations. The Bta was more effective in the fourth larval instars. Seven days, after treatment, the mortality percentage in b
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El-Badawi, Ashraf A. "Antioxidant Activity of Lupine Seeds in Nile Tilapia Fish (O. niloticus) Suspected to Oxidative Stress Induced by Neemazal T/S." International Journal of Applied Sciences and Biotechnology 3, no. 2 (2015): 170–78. http://dx.doi.org/10.3126/ijasbt.v3i2.12284.

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This study was designed to determine the effects of acute toxicity of NeemAzal T/S on Nile tilapia (Oreochromis niloticus) and to investigate the antioxidant effect of Lupine seeds on the gills and erythrocytes(EC) oxidative stress induced by NeemAzal T/S in Nile tilapia .Two doses of NeemAzal; 1/10 LC50:16 PPM (NA1) and 1/5 LC50:32 PPM (NA2) and three periods of 10, 20 and 30 days were used. Oxidative stress parameter, total peroxide (TP) and antioxidant enzyme activities, catalase (CAT) and superoxide dismutase (SOD) as well as glycemia were measured. NA2 markedly decreased CAT and SOD activ
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Lima, José Farid Maia, Anderson Dionei Grützmacher, Uemerson Silva da Cunha, Marilda Pereira Porto, José Francisco da Silva Martins, and Gabriel Olle Dalmazo. "Ação de inseticidas naturais no controle de Spodoptera frugiperda (J.E. Smith, 1797) (Lepidoptera: Noctuidae) em milho cultivado em agroecossistema de várzea." Ciência Rural 38, no. 3 (2008): 607–13. http://dx.doi.org/10.1590/s0103-84782008000300003.

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Estudou-se a eficiência de inseticidas naturais no controle de Spodoptera frugiperda (J.E. Smith, 1797) (Lepidoptera: Noctuidae), na cultura do milho em agroecossistema de várzea, sob infestação natural. O experimento foi conduzido a campo na área experimental da Embrapa Clima Temperado - Estação Experimental Terras Baixas, no ano agrícola 2005/2006. O delineamento experimental foi de blocos ao acaso em esquema fatorial (9x2), com 9 tratamentos: T1- NeemAzal-T/S (0,25%); T2- NeemAzal-T/S (0,5%); T3- Rotenat CE (0,5%); T4- Natuneem agrícola (0,5%); T5- Rotenat CE + Natuneem agrícola (0,25+0,25%
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Nikolova, Ivelina, and Natalia Georgieva. "Systems of organic farming in spring vetch I: Biological response of sucking insect pests." Pesticidi i fitomedicina 30, no. 2 (2015): 77–84. http://dx.doi.org/10.2298/pif1502077n.

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Four systems of organic farming and a conventional farming system were studied over the period 2012-2014. The organic system trial variants included: I - an organic farming system without any biological products used (growth under natural soil fertility) - Control; II - an organic farming system involving the use of a biological foliar fertilizer and a biological plant growth regulator (Polyversum+Biofa); III - an organic farming system in which a biological insecticide (NeemAzal T/S) was used; IV - an organic farming system including a combination of three organic products: the foliar fertili
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Nikolova, Ivelina, and Natalia Georgieva. "EFFECT OF BOTANICAL INSECTICIDES NEEMAZAL-T/S AND PYRETHRUM APPLIED ALONE AND IN COMBINATION WITH DIFFERENT ORGANIC PRODUCTS ON THRIPS TABACI POPULATION DENSITY." Acta entomologica serbica 19, no. 1/2 (2014): 1–11. https://doi.org/10.5281/zenodo.18141.

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Abstract The trial was conducted with spring forage pea (<em>Pisum sativum</em>&nbsp;L.) from 2011-2013 in the experimental field of the Institute of Forage Crops, Bulgaria. The effect of three insecticides was studied: &nbsp;NeemAzal T/S<sup>&reg;</sup>, Pyrethrum FS EC (botanical insecticides) and Nurelle D (synthetic insecticide) applied alone and in combination with the growth regulators Polyversum (biological growth regulator and fungicide) and Flordimex 420 (synthetic growth regulator); and an organic foliar fertilizer known as Biofa on&nbsp;<em>Thrips tabaci</em>&nbsp;population density
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Dissertations / Theses on the topic "NeemAzal T/S"

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Hermann, Petra. "Nebenwirkungen des pflanzlichen Insektizids NeemAzal-T, S auf einige im Obstbau relevante Nutzarthropoden /." Beuren ; Stuttgart : Grauer, 2001. http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&doc_number=010238493&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA.

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Kumpmann, Sophia Katharina. "Strategien zur Regulierung des Fruchtschalenwicklers Adoxophyes orana F.v.R. (Lepidoptera: Tortricidae) mit Kombinationen des Neem-Präparates NeemAzal-T/S und Entomopathogenen." [S.l. : s.n.], 2003. http://www.bsz-bw.de/cgi-bin/xvms.cgi?SWB10806417.

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Kumpmann, Sophia Katharina [Verfasser]. "Strategien zur Regulierung des Fruchtschalenwicklers Adoxophyes orana F.v.R. (Lepidoptera: Tortricidae) mit Kombinationen des Neem-Präparates NeemAzal-T/S und Entomopathogenen / von Sophia Katharina Kumpmann." 2003. http://d-nb.info/969199171/34.

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