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Acaricidal activity and chemical composition of essential oil derived from the Albizziae julibrissin barks

  • Park, Jun-Hwan (Department of Bioenvironmental Chemistry and Institute of Agricultural Science & Technology, College of Agriculture & Life Science, Chonbuk National University) ;
  • Lee, Sang-Guei (Pest Risk Assessment Division, Animal and Plant Quarantine Agency) ;
  • Kim, Jeong-Moon (Department of Landscape Architecture, College of Agriculture & Life Sciences, Chonbuk National University) ;
  • Lee, Hoi-Seon (Department of Bioenvironmental Chemistry and Institute of Agricultural Science & Technology, College of Agriculture & Life Science, Chonbuk National University)
  • Received : 2016.02.17
  • Accepted : 2016.03.09
  • Published : 2016.06.30

Abstract

The chemical compositions of the essential oil extracted from Albizziae julibrissin barks were analyzed by Gas chromatography-Mass spectrometry spectrometry. Fourteen components were identified, representing 89.23 % of the total oil composition. The analysis of the essential oil revealed that the essential oil contains 14 compounds, accounting for 89.23 % of the total oil. Hexanoic acid was the principal component (41.43 %) of the essential oil, followed by 4,4,6-trimethyl-cyclohex-2-en-1-ol (11.16 %), palmitic acid (9.00 %), 2-pentylfuran (5.66 %), 2-butyl-2-octenal (4.12 %), linoleic acid (3.10%), amyl hexanoate (3.01%), (E,E)-2,4-decadienal (2.49 %), 2-hexylthiophene (2.47 %), caprylic acid (2.13 %), ${\delta}-undecalactone$ (1.52 %), heptanoic acid (1.27 %), 3,5-octadien-2-ol (0.99 %), and 2-octenal (0.88 %). The acaricidal activity of the A. julibrissin oil was tested against Dermatophagoides farina, D. pteronyssinus and Tyrophagus putrescentiae by the fumigant bioassay. Based on the $LD_{50}$ values, the essential oil exhibited strong acaricidal activities against D. farinae ($LD_{50}$, $4.88{\mu}g/cm^3$), D. pteronyssinus ($2.44{\mu}g/cm^3$), and T. putrescentiae ($1.22{\mu}g/cm^3$). These results indicate that A. julibrissin oil could be a source of acaricidal agents for mite control.

Keywords

References

  1. Arbes SJ, Cohn RD, Yin M, Muilenberg ML, Burge HA, Friedman W, Zeldin DC (2003) House dust mite allergen in US beds: Results from the first national survey of lead and allergens in housing. J Allergy Clin Immun 111: 408-414 https://doi.org/10.1067/mai.2003.16
  2. Cavalcanti SCH, Niculau ES, Blank AF, Camara CAG, Araujo IN, Alves PB (2010) Composition and acaricidal activity of Lippia sidoides essential oil against two-spotted spider mite (Tetranychus urticae Koch). Bioresource Technol 101: 829-832 https://doi.org/10.1016/j.biortech.2009.08.053
  3. Chen SP, Zhang RY (1997) Studies on the triterpene sapogenine from Albizzia Cortex. Acta Pharmaceutica Sinica 32: 144-147
  4. Dettner K, Fettkother R, Ansteeg O, Deml R, Liepert C, Petersen, Haslinger E, Francke W (1992) Insecticidal fumigants from defensive glands of insects a fumigant test with adults of Drosophila melanogaster. J Appl Ent 113: 128-137 https://doi.org/10.1111/j.1439-0418.1992.tb00646.x
  5. Erdal S, Kamuran K (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: 107-112 https://doi.org/10.1016/j.indcrop.2009.09.009
  6. Foil LD, Coleman P, Eisler M, Fragoso-Sanchez H, Garcia-Vazquez Z, Guerrero FD, Jonsson NN, Langstaff IG, Li AY, Machila N, Miller RJ, Morton J, Pruett JH, Torr S (2004) Factors that influence the prevalence of acaricide resistance and tick-borne diseases. Vet Parasitol 125: 163-181 https://doi.org/10.1016/j.vetpar.2004.05.012
  7. Han LF, Ma BP, Zhang HS, Song Xb, Gao XM, Kang LP, Xiong CQ, Zhao Y, Tan DW (2008) $^1H$ and $^{13}C$ NMR assignments for four triterpenoid saponins from Albizziae cortex. Magn Reson Chem 46: 1059-1065 https://doi.org/10.1002/mrc.2263
  8. Jung MJ, Chung HY, Kang SS, Choi JH, Bae KS, Choi JS (2003) Antioxidant activity from the stem bark of Albizzia julibrissin. Arch Pharm Res 26: 458-462 https://doi.org/10.1007/BF02976862
  9. Jung MJ, Kang SS, Jung YJ, Choi JS (2004) Phenolic glycosides from the stem bark of Albizzia Julibrissin. Chem Pharm Bulletin 52: 1501-1503 https://doi.org/10.1248/cpb.52.1501
  10. Kang TH, Jeong ST, Kim NY, Higuchi R, Kim YC (2000) Sedative activity of two flavonol glycosides isolated from the flower of Albizzia julibrissin Durazz. J Ethnopharmacol 71: 321-323 https://doi.org/10.1016/S0378-8741(99)00202-0
  11. Kingston HM, Jassie LB (1988) Introduction to Microwave Sample Preparation, American Chemical Society, Washington
  12. Kokila K, Priyadharshini SD, Sujatha V (2013) Phytopharmacological properties of Albizia species: A Review. Int J Pharm Pharm Sci 5: 70-73
  13. Kumar PP, Kumaravel S, Lalitha C (2010) Screening antioxidant activity, total phenolics and GC-MS study of Vitex negundo. Afr J Biochem Res 4: 191-195
  14. Marx JJ, Twiggs JT, Ault BJ, Merchant JA, Fernan-dez-Caldaz E (1993) Inhaled aeroallergen and storage mite reactivity in a Winsconsin farmer nested case-control study. Am Rev Respir Dis 147: 354-358 https://doi.org/10.1164/ajrccm/147.2.354
  15. Stewart GA (1995) Dust mite allergens. Clin Rev Allergy Immunol 13: 135-150
  16. Won HJ, Han CH, Kim YH, Kwon HJ, Kim BW, Choi JS, Kim KH (2006) Induction of apoptosis in human acute leukemia Jurkat T cells by Albizzia julibrissin extract is mediated via mitochondria-dependent caspase-3 activation. J Ethnopharmacol 106: 383-389 https://doi.org/10.1016/j.jep.2006.01.027
  17. Yang JY, Lee HS (2013) Changes in acaricidal potency by introducing functional radicals and an acaricidal constituent isolated from Schizonepeta tenuifolia. J Agri Food Chem 61: 11511-11516 https://doi.org/10.1021/jf404586k
  18. Zheng L, Zheng J, Zhao Y, Wang B, Wu L, Liang H (2006) Three anti-tumor saponins from Albizia julibrissin. Bioorg Med Chem Lett 16: 2765-2768 https://doi.org/10.1016/j.bmcl.2006.02.009