Published June 30, 2021 | Version v1
Journal article Restricted

An analysis of variations in morphological characteristics, essential oil content, and genetic sequencing among and within major Iranian Juniper (Juniperus spp.) populations

  • 1. * & Department of Horticulture, Faculty of Plant Production, Gorgan University of Agricultural Sciences and Natural Resources, Gorgan, Iran

Description

Ghorbanzadeh, Amir, Ghasemnezhad, Azim, Sarmast, Mostafa Khoshhal, Ebrahimi, Samad Nejad (2021): An analysis of variations in morphological characteristics, essential oil content, and genetic sequencing among and within major Iranian Juniper (Juniperus spp.) populations. Phytochemistry (112737) 186: 1-10, DOI: 10.1016/j.phytochem.2021.112737, URL: http://dx.doi.org/10.1016/j.phytochem.2021.112737

Files

Restricted

The record is publicly accessible, but files are restricted to users with access.

Linked records

Additional details

Identifiers

LSID
urn:lsid:plazi.org:pub:FF88FFA65513FFBEFFC9FFD8FFF6FFE7

References

  • Abdel-Kader, M.S., Hamad, A.M., Alanazi, M.T., Alanazi, A.H., Ali, R., Foudah, A.I., Alqarni, M.H., 2019. Characterization and hepatoprotective evaluation of sesquiterpenes and diterpenes from the aerial parts of Juniperus sabina L. Saudi Pharmaceut. J. 27, 920-929. https://doi.org/10.1016/j.jsps.2019.06.006.
  • Adams, R.P., 2018. The composition of the leaf essential oils of J . sabina var . balkanensis : chemotypes high in trans-sabinyl acetate and methyl eugenol discovered in three natural populations. Phytologia 100, 43-50.
  • Adams, R.P., 2014. Junipers of the World: the Genus Juniperus. Trafford Publishing.
  • Adams, R.P., 2007. Identification of Essential Oil Components by Gas Chromatography/ mass Spectrometry. Allured publishing corporation Carol Stream, IL. https://doi. org/10.1021/jasms.8b01049.
  • Adams, R.P., Morris, J.A., Pandey, R.N., Schwarzbach, A.E., 2005. Cryptic speciation between Juniperus deltoides and Juniperus oxycedrus (Cupressaceae) in the mediterranean. Biochem. Systemat. Ecol. 33, 771-787. https://doi.org/10.1016/j. bse.2005.01.001.
  • Adams, R.P., Pandey, R.N., 2003. Analysis of Juniperus Communis and its Varieties Based on DNA Fingerprinting, vol. 31, pp. 1271-1278. https://doi.org/10.1016/ S0305-1978(03)00036-X.
  • Adams, R.P., Schwarzbach, A.E., 2016 (Apr 1, 2016 Phytologia 98 (2), 100-111, 98.
  • Al-Refahi, A., Marvie Mohadjer, M.R., Stimm, B., 2002. Verbreitung, okologie, nutzung & vermehrung der baumwacholder. Allg. Forst Zeitschrift Der Wald 16, 1-4.
  • Andrade, E.H.A., Alves, C.N., Guimartaes, E.F., Carreira, L.M.M., Maia, J.G.S., 2011. Variability in essential oil composition of Piper dilatatum L.C. Rich. Biochem. Systemat. Ecol. 39, 669-675. https://doi.org/10.1016/j.bse.2011.05.021.
  • Avci, A.B., Bilir, N., 2014. Variation in essential oil content and composition of crimean juniper ( Juniperus excelsa ) berries during the growth periods. J. Essent. Oil Bear. Plants 17, 478-485. https://doi.org/10.1080/0972060X.2014.895183.
  • Aydin, E., Turkez, H., Geyiko˘glu, F., 2013. Antioxidative, anticancer and genotoxic properties of α- pinene on N2a neuroblastoma cells. Biologia (Bratisl) 68, 10004-11009. https://doi.org/10.2478/s11756-013-0230-2.
  • British-Pharmacopeia, 1998. No Title, vol. 2 (Londan).
  • Carslaw, N., 2013. A mechanistic study of limonene oxidation products and pathways following cleaning activities. Atmos. Environ. 80, 507-513. https://doi.org/ 10.1016/j.atmosenv.2013.08.034.
  • Dahmane, D., Dob, T., Chelghoum, C., 2015. Chemical composition of essential oils of Juniperus communis L. obtained by hydrodistillation and microwave-assisted hydrodistillation. J. Mater. Environ. Sci. 6, 1253-1259.
  • Dawson, F.A., 1994. The Amazing Terpenes. Naval Stores Review.
  • Douaihy, B., Vendramin, G., Machon, N., Bou-Dagher, K.M., 2011. Genetic Diversity and Population Structure of Juniperus Excelsa M. Bieb. In the East Mediterranean Region (Ann Bot Plants).
  • El Omari, K., Hamze, M., Alwan, S., Osman, M., Jama, C., Chihib, N.E., 2019. In-vitro evaluation of the antibacterial activity of the essential oils of Micromeria barbata, Eucalyptus globulus and Juniperus excelsa against strains of Mycobacterium tuberculosis (including MDR), Mycobacterium kansasii and Mycobacterium gordonae. J. Infect. Public Health 1016-1019. https://doi.org/10.1016/j.jiph.2019.01.058.
  • Evergetis, E., Michaelakis, A., Papachristos, D.P., Badieritakis, E., Kapsaski-Kanelli, V.N., Haroutounian, S.A., 2016. Seasonal variation and bioactivity of the essential oils of two Juniperus species against Aedes (Stegomyia) albopictus (Skuse, 1894). Parasitol. Res. 115, 2175-2183. https://doi.org/10.1007/s00436-016-4959-8.
  • Farhat, P., Siljak-yakovlev, S., Adams, R.P., Dagher, M.B., Robert, T., Farhat, P., Siljak-yakovlev, S., Adams, R.P., Bou, M., Cupressaceae, L., Adams, R.P., 2019. Genome size variation and polyploidy in the geographical range of Juniperus sabina L . ( Cupressaceae ) Genome size variation and polyploidy in the geographical range of Juniperus. Bot. Lett. 166, 134-143. https://doi.org/10.1080/ 23818107.2019.1613262.
  • Gao, H., Huang, X., Yang, T., Chang, K., 2019. Juniperus communis suppresses melanoma tumorigenesis by inhibiting tumor growth and inducing. Apoptosis 47, 1-21. https://doi.org/10.1142/S0192415X19500605.
  • Hojjati, F., Sereshti, H., Hojjati, M., 2019. Leaf essential oils and their application in systematics of Juniperus excelsa complex in Iran. Biochem. Systemat. Ecol. 84, 29-34. https://doi.org/10.1016/j.bse.2019.03.004.
  • Huang, H.-T., Lin, C.-C., Kuo, T.-C., Chen, S.-J., Huang, R.-N., 2019. Phytochemical composition and larvicidal activity of essential oils from herbal plants. Planta 250, 59-68. https://doi.org/10.1007/s00425-019-03147-w.
  • Kasaian, J., Behravan, J., Hassany, M., Emami, S.A., Shahriari, F., Khayyat, M.H., 2011. Molecular characterization and RAPD analysis of Juniperus species from Iran. Genet. Mol. Res. 10, 1069-1074. https://doi.org/10.4238/vol10-2gmr1021.
  • Kermani, M., Marashi, H., Mellati, F., 2010. Study of genetic variation of Juniperus polycarpus from Tandure National Park of Iran using RAPD markers. Iran. J. Rangelands For. Plant Breed. Genet. Res. 18, 115-124 (in persian).
  • Khanavi, M., Enayati, A., Reza, M., Ardekani, S., Razkenari, E.K., Eftekhari, M., 2019. Cytotoxic activity of Juniperus excelsa M . Bieb . Leaves essential oil in breast cancer cell lines. Res. J. Pharmacogn. 6, 1-7. https://doi.org/10.22127/rjp.2019.84313.
  • Kusuhara, M., Urakami, K., Masuda, Y., Zangiacomi, V., Ishii, H., Tai, S., Maruyama, K., Yamaguchi, K., 2012. Fragrant environment with α- pinene decreases tumor growth in mice. Biomed. Res. 33, 57-61. https://doi.org/10.2220/biomedres.33.57.
  • Leite, A.M., Lima, E. de O., Souza, E.L. de, Diniz, M., Trajano, V.N., Medeiros, I.A. de, 2007. Inhibitory effect of beta-pinene, alpha-pinene and eugenol on the growth of potential infectious endocarditis causing Gram-positive bacteria. Rev. Bras. Ciencias Farm. 43, 121-126. https://doi.org/10.1590/S1516-93322007000100015.
  • Manninen, A.-M., Tarhanen, S., Vuorinen, M., Kainulainen, P., 2002. Comparing the variation of needle and wood terpenoids in Scots pine provenances. J. Chem. Ecol. 28, 211-228. https://doi.org/10.1023/A:1013579222600.
  • Mansory, R., Marvie, M., Reza, M., Assadi, M., Zobeiri, M., Etemad, V., 2013.
  • Mehrabi, S., Checknezhad, H., Mehrabi, A., Vaziri, A., 2019. Effects of the Hydrophilic Extract of Juniperus Excelsa on Renal Function in Male Wistar Rats, vol. 7,
  • Meloni, M., Perini, D., Filigheddu, R., Binelli, G., 2006. Genetic variation in five Mediterranean populations of Juniperus phoenicea as revealed by inter-simple sequence repeat (ISSR) markers. Ann. Bot. 97, 299-304. https://doi.org/10.1093/ aob/mcj024.
  • Orˇci´c, D., Jovin, E., Couladis, M., 2010. Essential oil of Myrtus communis L. as a potential antioxidant and antimutagenic agents. Molecules 15, 2759-2770. https:// doi.org/10.3390/molecules15042759.
  • Moghaddam, M., Ghasemi Pirbalouti, A., Farhadi, N., 2018. Seasonal variation in Juniperus polycarpos var. turcomanica essential oil from northeast of Iran. J. Essent. Oil Res. 30, 225-231. https://doi.org/10.1080/10412905.2018.1427637.
  • Nikoli´c, B., Vasilijevi´c, B., Ciri ´c ´, A., Miti´c-Culafi ´c ´, D., Cvetkovic ´, S., Dˇzamic ´, A., Kneˇzevi´c- Vukˇcevi´c, J., 2019. Bioactivity of Juniperus communis essential oil and postdistillation waste: assessment of selective toxicity against food contaminants. Arch. Biol. Sci. 71, 235-244. https://doi.org/10.2298/ABS181217005N.
  • Peakall, R., Smouse, P.E., 2006. Genalex 6: genetic analysis in Excel. Population genetic software for teaching and research. Mol. Ecol. Notes 6, 288-295. https://doi.org/ 10.1111/j.1471-8286.2005.01155.x.
  • Flora Iranica. In: Rechinger, K. (Ed.), 1963. Flora des iranischen Hochlandes und der umrahmenden Gebirge. Graz, Austria.
  • Rohlf, F.J., 1998. NTSYS-pc, Numerical Taxonomy and Multivariate System. Exeter Software, New York, version 2.0.
  • Salamon, I., Petruska, P., 2017. Quality of juniper essential oil (oleum juniperi) in the south Slovakia and it' s curative and industrial utilization. Indian J. Pharm. Educ. Res. 51, s479-s482. https://doi.org/10.5530/ijper.51.3s.70.
  • Sarmast, M.K., Mosavizadeh, S.J., Sharifani, M., 2018. Evaluation of Juniperus spp. genetic diversity in northern Iran using ISSR markers. Ecol. Iran. For. 6, 14-20. https://doi.org/10.29252/ifej.6.11.14 (in perisan).
  • Khui, M., 2012. RAPD fingerprint to appraise the genetic fidelity of in vitro propagated Araucaria excelsa R. Br. var. glauca Plantlets. Mol. Biotechnol. 50, 181-188. https://doi.org/10.1007/s12033-011-9421-7.
  • Seca, A., Silva, A., 2005. The chemical composition of the Juniperus Genus (1970-2004). Recent Prog. Med. Plants 401-522. https://doi.org/10.13140/2.1.2803.8088.
  • Semiz, G., Heijari, J., Isik, K., Holopainen, J.K., 2007. Variation in needle terpenoids among Pinus sylvestris L. (Pinaceae) provenances from Turkey. Biochem. Systemat. Ecol. 35, 652-661. https://doi.org/10.1016/j.bse.2007.05.013.
  • Siegel, C.S., Stevenson, F.O., Zimmer, E.A., 2017. Evaluation and comparison of FTA card and CTAB DNA extraction methods for non-agricultural taxa. Appl. Plant Sci. 5, 1600109. https://doi.org/10.3732/apps.1600109.
  • Silva, A.C.R. da, Lopes, P.M., Azevedo, M.M.B. de, Costa, D.C.M., Alviano, C.S., Alviano, D.S., 2012. Biological activities of a-pinene and β- pinene enantiomers. Molecules 17, 6305-6316. https://doi.org/10.3390/molecules17066305.
  • Su, B., Fu, Y., Wang, Y., Jin, L., Chakraborty, R., 2001. Genetic diversity and population history of the red panda (Ailurus fulgens) as inferred from mitochondrial DNA sequence variations. Mol. Biol. Evol. 18, 1070-1076. https://doi.org/10.1093/ oxfordjournals.molbev.a003878.
  • Unlu, M., Vardar-Unlu, G., Vural, N., Donmez, E., Cakmak, O., 2008. Composition and antimicrobial activity of Juniperus excelsa essential oil. Chem. Nat. Compd. 44, 129-131. https://doi.org/10.1007/s10600-008-0040-x.
  • Vasic, P., Krivosej, Z., Topuzovic, M., Dubak, D., Prodanovic, D., 2014. Morphological - anatomical characteristics of two common junipers (Juniperus communis and Juniperus oxycedrus) from the area of mountain kopaonik in Serbia. Agric. For. 60, 91-104.
  • Xu, H., Zhang, D., Li, J., 2019. Antibacterial nanoparticles with universal adhesion function based on dopamine and eugenol. J. Bioresour. Bioprod. 4, 177-182. https://doi.org/10.12162/jbb.v4i3.006.
  • Zeraib, A., Ramdani, M., Boudjedjou, L., Chalard, P., Figuredo, G., 2014. Chemical composition and antibacterial activity of Juniperus thurifera L . essential oils. J. BioSci. Biotech. 3, 147-154. https://doi.org/10.15171/PS.2018.35.
  • Zhang, Y., Wu, D., Kuang, S., Qing, M., Ma, Y., Yang, T., Wang, T., Li, D., 2019. Chemical composition, antioxidant, antibacterial and cholinesterase inhibitory activities of three Juniperus species. Nat. Prod. Res. 1-5. https://doi.org/10.1080/ 14786419.2019.1579811.
  • Zheljazkov, V.D., Astatkie, T., Jeliazkova, E., 2013. Year-round variations in essential oil content and composition of male and female juniper. Hortscience 48, 883-886. https://doi.org/10.21273/HORTSCI.48.7.883.