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Year 2021, Volume: 27 Issue: 4, 407 - 413, 04.12.2021
https://doi.org/10.15832/ankutbd.622123

Abstract

References

  • Abbott W S (1987). Abbotts Formula - a Method of Computing the Effectiveness of an Insecticide. J Am Mosquito Contr 3 (2):302-303
  • Adedire C O, Obembe O M, Akinkurolere R O & Oduleye S O (2011). Response of Callosobruchus maculatus (Coleoptera: Chrysomelidae: Bruchinae) to extracts of cashew kernels. J Plant Dis Protect 118 (2):75-79
  • Ashokkumar M, Bhaskaracharya R, Kentish S, Lee J, Palmer M & Zisu B (2010). The ultrasonic processing of dairy products - An overview. Dairy Sci Technol 90 (2-3):147-168
  • Bermudez-Torres K, Herrera J M, Brito R F, Wink M & Legal L (2009). Activity of quinolizidine alkaloids from three Mexican Lupinus against the lepidopteran crop pest Spodoptera frugiperda. Biocontrol 54 (3):459-466
  • Bouayad N, Rharrabe K, Ghailani N N, Jbilou R, Castanera P & Ortego F (2013). Insecticidal effects of Moroccan plant extracts on development, energy reserves and enzymatic activities of Plodia interpunctella. Span J Agric Res 11 (1):189-198
  • Buszewski B, Rafinska K, Cvetanovic A, Walczak J, Krakowska A, Rudnicka J & Zekovic Z (2019). Phytochemical analysis and biological activity of Lupinus luteus seeds extracts obtained by supercritical fluid extraction. Phytochem Lett 30:338-348
  • Chen Y J & Dai G H (2017). Effect of the extract and compound from Solanum nigrum Linn on Tetranychus cinnabarinus. J Appl Entomol 141 (6):458-469
  • Cetin H & Elma F N (2017). Effects of some plant extracts on adults of Cowpea weevil [Callosobruchus maculatus F. (Coleoptera: Chrysomelidae)]. Harran Journal of Agricultural and Food Science 21(4): 404-411
  • Duke J A (1992). Natural Medicines are Natural Pesticides? In: Nigg HN & Seigler D (Eds) Phytochemical Resources for Medicine and Agriculture, Springer US, Boston, MA, pp. 237-245
  • Duranti M, Consonni A, Magni C, Sessa F & Scarafoni A (2008). The major proteins of lupin seed: Characterisation and molecular properties for use as functional and nutraceutical ingredients. Trends Food Sci Tech 19 (12):624-633
  • Elma F N (2014). Screening of some medicinal and aromatic plant extracts for their insecticidal efficacies. II. International Conference on Environmental Science and Technology, 14-17 May, Antalya, pp. 365
  • Hondelmann W (1984) The Lupin - Ancient and Modern Crop Plant. Theor Appl Genet 68 (1-2):1-9
  • Isaev SI (1939) Insecticidal activitiy of Lupinus angustifolius L. Trudy Belorusskogo Sel'skokhoz Institut 8, 119
  • Kalogeropoulos N, Chiou A, Ioannou M, Karathanos V T, Hassapidou M & Andrikopoulos N K (2010) Nutritional evaluation and bioactive microconstituents (phytosterols, tocopherols, polyphenols, triterpenic acids) in cooked dry legumes usually consumed in the Mediterranean countries. Food Chem 121 (3):682-690
  • Karamac, M., Orak, H. H., Amarowicz, R., Orak, A. ve Piekoszewski, W., 2018, Phenolic contents and antioxidant capacities of wild and cultivated white lupin (Lupinus albus L.) seeds, Food Chemistry, 258, 1-7
  • Louise K M, Habiba K, Sidonie F T & Tchuenguem Fohouo F N (2018) Management of Callosobruchus maculatus F. (Coleoptera: Bruchidae) using methanol extracts of Carica papaya, Carissa edulis, Securidaca longepedonculata and Vinca rosea and impact of insect pollinators on cowpea types. Journal of Entomology and Zoology Studies 6(2): 1017-1027
  • Mahdian S H A & Rahman M K (2008) Insecticidal effect of some spices on Callosobruchus maculatus (Fabricius) in black gram seeds. Rajshahi Univ. Zool. Soc. 27, 47-50
  • Oomah B D, Tiger N, Olson M & Balasubramanian P (2006) Phenolics and antioxidative activities in narrow-leafed lupins (Lupinus angustifolius L.). Plant Food Hum Nutr 61 (2):91-97
  • Philippi J, Schliephake E, Jürgens H-U, Jansen G & Ordon F (2016) Correlation of the alkaloid content and composition of narrow-leafed lupins (Lupinus angustifolius L.) to aphid susceptibility. J Pest Sci 89 (2):359-373
  • Reinhard H, Rupp H, Sager F, Streule M & Zoller O (2006) Quinolizidine alkaloids and phomopsins in lupin seeds and lupin containing food. J Chromatogr A 1112 (1-2):353-360
  • Romeo F, Fabroni S, Ballistreri G, Muccilli S, Spina A & Rapisarda P (2018) Characterization and Antimicrobial Activity of Alkaloid Extracts from Seeds of Different Genotypes of Lupinus spp. Sustainability 10 (3)
  • Sertkaya E, Kaya K & Soylu S (2010) Acaricidal activities of the essential oils from several medicinal plants against the carmine spider mite (Tetranychus cinnabarinus Boisd.) (Acarina: Tetranychidae). Ind Crop Prod 31 (1):107-112
  • Siger A, Czubinski J, Kachlicki P, Dwiecki K, Lampart-Szczapa E & Nogala-Kalucka M (2012) Antioxidant activity and phenolic content in three lupin species. J Food Compos Anal 25 (2):190-197
  • Sujak A, Kotlarz A & Strobel W (2006) Compositional and nutritional evaluation of several lupin seeds. Food Chem 98 (4):711-719
  • Topakcı N, İkten C & Göçmen H (2005) A Research on Some Effects of Inula viscosa (L.) Ait (Asteraceae) leaf extract on Carmine Spider Mite, Tetranychus cinnabarinus (Boisd.) (Acari:Tetranychidae). Akdeniz Üniversitesi Ziraat Fakültesi Dergisi 18(3): 411-415
  • Topuz E & Madanlar N (2011) Contact and repellency effects of some plant essential oils against Tetranychus cinnabarinus (Boisduval, 1867) (Acari: Tetranychidae). Türkiye Entomoloji Bülteni 1 (2):99-107
  • Tunc I & Sahinkaya S (1998) Sensitivity of two greenhouse pests to vapours of essential oils. Entomol Exp Appl 86 (2):183-187
  • Tüzün, A E (2013) An Alternative Source of Protein Lupin (Lupinus L.) Use of Broiler Nutrition. Hayvansal Üretim 54(1): 50-54
  • Wink M, Meissner C & Witte L (1995) Patterns of Quinolizidine Alkaloids in 56 Species of the Genus Lupinus. Phytochemistry 38 (1):139-153
  • Yildiz S (2011) Rotational and nematicidal effect of lupine (Lupinus albus L.: Leguminosae). Afr J Biotechnol 10 (61):13252-13255.
  • Yorgancilar M, Babaoglu M, Hakki E E & Atalay E (2009) Determination of the relationship among Old World Lupin (Lupinus sp.) species using RAPD and ISSR markers. Afr J Biotechnol 8 (15):3524-3530

Detection of Metabolite Content in Local Bitter White Lupin Seeds (Lupinus albus L.) and Acaricidal and Insecticidal Effect of its Seed Extract

Year 2021, Volume: 27 Issue: 4, 407 - 413, 04.12.2021
https://doi.org/10.15832/ankutbd.622123

Abstract

This study investigated the acaricidal and insecticidal effect of local lupin (Lupinus albus L. Fabaceae) seed extract against Tetranychus urticae Koch (Acari: Tetranychidae), Callosobruchus maculatus F. (Coleoptera: Chrysomelidae), Plodia interpunctella (Hubner) (Lepidoptera: Pyralidae) and metabolite content of seeds. In tests for T. urticae leaf-disk bioassay was employed. Contrarily, two μL of the L. albus extract were topically applied using a micro-applicator on C. maculatus and P. interpunctella. In the assays of T. urticae and P. interpunctella, the concentrations of 0.78, 1.56, 3.12, 6.25, 12.5, 25% (w/w) of the plant extracts were used. Furthermore, the concentrations of 0.625, 1.25, 2.50, 5, 10% (w/w) were applied to C. maculatus. Mortality data was collected 24, 48 and 72 hours after application. In the results, L. albus extract was found to be quite effective to C. maculatus adults with LD50 of 7.26, 1.21 and 0.55% after 24, 48 and 72 hours, respectively. Moreover, lupin extract was effective to T. urticae adults with LC50 values of 4.03, 3.15 and 2.73% for the same durations. L. albus extract was showed low insecticidal effect against the larvae of P. interpunctella.
In seeds metabolite content were detected, which contained 686.99 mg GAE / 100 mg total phenol, 22.06 mg QE / 100 mg total flavonoid, DPPH 26.04 mg TE / 100 g having antioxidant activity. The bitter taste of stem and seeds of the plant is due to their metabolite content which has a toxic effect.
In conclusion, results indicated that lupin seed has a high secondary metabolites content and also its extract had the high toxic effect against T. urticae and C. maculatus.

References

  • Abbott W S (1987). Abbotts Formula - a Method of Computing the Effectiveness of an Insecticide. J Am Mosquito Contr 3 (2):302-303
  • Adedire C O, Obembe O M, Akinkurolere R O & Oduleye S O (2011). Response of Callosobruchus maculatus (Coleoptera: Chrysomelidae: Bruchinae) to extracts of cashew kernels. J Plant Dis Protect 118 (2):75-79
  • Ashokkumar M, Bhaskaracharya R, Kentish S, Lee J, Palmer M & Zisu B (2010). The ultrasonic processing of dairy products - An overview. Dairy Sci Technol 90 (2-3):147-168
  • Bermudez-Torres K, Herrera J M, Brito R F, Wink M & Legal L (2009). Activity of quinolizidine alkaloids from three Mexican Lupinus against the lepidopteran crop pest Spodoptera frugiperda. Biocontrol 54 (3):459-466
  • Bouayad N, Rharrabe K, Ghailani N N, Jbilou R, Castanera P & Ortego F (2013). Insecticidal effects of Moroccan plant extracts on development, energy reserves and enzymatic activities of Plodia interpunctella. Span J Agric Res 11 (1):189-198
  • Buszewski B, Rafinska K, Cvetanovic A, Walczak J, Krakowska A, Rudnicka J & Zekovic Z (2019). Phytochemical analysis and biological activity of Lupinus luteus seeds extracts obtained by supercritical fluid extraction. Phytochem Lett 30:338-348
  • Chen Y J & Dai G H (2017). Effect of the extract and compound from Solanum nigrum Linn on Tetranychus cinnabarinus. J Appl Entomol 141 (6):458-469
  • Cetin H & Elma F N (2017). Effects of some plant extracts on adults of Cowpea weevil [Callosobruchus maculatus F. (Coleoptera: Chrysomelidae)]. Harran Journal of Agricultural and Food Science 21(4): 404-411
  • Duke J A (1992). Natural Medicines are Natural Pesticides? In: Nigg HN & Seigler D (Eds) Phytochemical Resources for Medicine and Agriculture, Springer US, Boston, MA, pp. 237-245
  • Duranti M, Consonni A, Magni C, Sessa F & Scarafoni A (2008). The major proteins of lupin seed: Characterisation and molecular properties for use as functional and nutraceutical ingredients. Trends Food Sci Tech 19 (12):624-633
  • Elma F N (2014). Screening of some medicinal and aromatic plant extracts for their insecticidal efficacies. II. International Conference on Environmental Science and Technology, 14-17 May, Antalya, pp. 365
  • Hondelmann W (1984) The Lupin - Ancient and Modern Crop Plant. Theor Appl Genet 68 (1-2):1-9
  • Isaev SI (1939) Insecticidal activitiy of Lupinus angustifolius L. Trudy Belorusskogo Sel'skokhoz Institut 8, 119
  • Kalogeropoulos N, Chiou A, Ioannou M, Karathanos V T, Hassapidou M & Andrikopoulos N K (2010) Nutritional evaluation and bioactive microconstituents (phytosterols, tocopherols, polyphenols, triterpenic acids) in cooked dry legumes usually consumed in the Mediterranean countries. Food Chem 121 (3):682-690
  • Karamac, M., Orak, H. H., Amarowicz, R., Orak, A. ve Piekoszewski, W., 2018, Phenolic contents and antioxidant capacities of wild and cultivated white lupin (Lupinus albus L.) seeds, Food Chemistry, 258, 1-7
  • Louise K M, Habiba K, Sidonie F T & Tchuenguem Fohouo F N (2018) Management of Callosobruchus maculatus F. (Coleoptera: Bruchidae) using methanol extracts of Carica papaya, Carissa edulis, Securidaca longepedonculata and Vinca rosea and impact of insect pollinators on cowpea types. Journal of Entomology and Zoology Studies 6(2): 1017-1027
  • Mahdian S H A & Rahman M K (2008) Insecticidal effect of some spices on Callosobruchus maculatus (Fabricius) in black gram seeds. Rajshahi Univ. Zool. Soc. 27, 47-50
  • Oomah B D, Tiger N, Olson M & Balasubramanian P (2006) Phenolics and antioxidative activities in narrow-leafed lupins (Lupinus angustifolius L.). Plant Food Hum Nutr 61 (2):91-97
  • Philippi J, Schliephake E, Jürgens H-U, Jansen G & Ordon F (2016) Correlation of the alkaloid content and composition of narrow-leafed lupins (Lupinus angustifolius L.) to aphid susceptibility. J Pest Sci 89 (2):359-373
  • Reinhard H, Rupp H, Sager F, Streule M & Zoller O (2006) Quinolizidine alkaloids and phomopsins in lupin seeds and lupin containing food. J Chromatogr A 1112 (1-2):353-360
  • Romeo F, Fabroni S, Ballistreri G, Muccilli S, Spina A & Rapisarda P (2018) Characterization and Antimicrobial Activity of Alkaloid Extracts from Seeds of Different Genotypes of Lupinus spp. Sustainability 10 (3)
  • Sertkaya E, Kaya K & Soylu S (2010) Acaricidal activities of the essential oils from several medicinal plants against the carmine spider mite (Tetranychus cinnabarinus Boisd.) (Acarina: Tetranychidae). Ind Crop Prod 31 (1):107-112
  • Siger A, Czubinski J, Kachlicki P, Dwiecki K, Lampart-Szczapa E & Nogala-Kalucka M (2012) Antioxidant activity and phenolic content in three lupin species. J Food Compos Anal 25 (2):190-197
  • Sujak A, Kotlarz A & Strobel W (2006) Compositional and nutritional evaluation of several lupin seeds. Food Chem 98 (4):711-719
  • Topakcı N, İkten C & Göçmen H (2005) A Research on Some Effects of Inula viscosa (L.) Ait (Asteraceae) leaf extract on Carmine Spider Mite, Tetranychus cinnabarinus (Boisd.) (Acari:Tetranychidae). Akdeniz Üniversitesi Ziraat Fakültesi Dergisi 18(3): 411-415
  • Topuz E & Madanlar N (2011) Contact and repellency effects of some plant essential oils against Tetranychus cinnabarinus (Boisduval, 1867) (Acari: Tetranychidae). Türkiye Entomoloji Bülteni 1 (2):99-107
  • Tunc I & Sahinkaya S (1998) Sensitivity of two greenhouse pests to vapours of essential oils. Entomol Exp Appl 86 (2):183-187
  • Tüzün, A E (2013) An Alternative Source of Protein Lupin (Lupinus L.) Use of Broiler Nutrition. Hayvansal Üretim 54(1): 50-54
  • Wink M, Meissner C & Witte L (1995) Patterns of Quinolizidine Alkaloids in 56 Species of the Genus Lupinus. Phytochemistry 38 (1):139-153
  • Yildiz S (2011) Rotational and nematicidal effect of lupine (Lupinus albus L.: Leguminosae). Afr J Biotechnol 10 (61):13252-13255.
  • Yorgancilar M, Babaoglu M, Hakki E E & Atalay E (2009) Determination of the relationship among Old World Lupin (Lupinus sp.) species using RAPD and ISSR markers. Afr J Biotechnol 8 (15):3524-3530
There are 31 citations in total.

Details

Primary Language English
Journal Section Makaleler
Authors

Fatmanur Elma 0000-0003-0985-0338

Hüseyin Çetin 0000-0002-3252-0778

Mustafa Yorgancılar 0000-0003-4938-8547

Ramazan Acar 0000-0002-3347-6537

Publication Date December 4, 2021
Submission Date September 19, 2019
Acceptance Date June 9, 2020
Published in Issue Year 2021 Volume: 27 Issue: 4

Cite

APA Elma, F., Çetin, H., Yorgancılar, M., Acar, R. (2021). Detection of Metabolite Content in Local Bitter White Lupin Seeds (Lupinus albus L.) and Acaricidal and Insecticidal Effect of its Seed Extract. Journal of Agricultural Sciences, 27(4), 407-413. https://doi.org/10.15832/ankutbd.622123

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