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Bazı endemik ve tıbbi öneme sahip bitki türlerinin uçucu bileşenlerinin yükseltiye bağlı değişimi

Yıl 2024, Cilt: 10 Sayı: 2, 123 - 138
https://doi.org/10.53516/ajfr.1561953

Öz

Giriş ve Hedefler Bu çalışmada, Türkiye’ye özgü 3 endemik bitki türü olan Hypericum aviculariifolium Jaub. & Spach, subsp. depilatum (Freyn & Bornm.) Robson var. depilatum, Stachys cretica L. subsp. anatolica Rech.f. ve Phlomis nissolii L.’nin çiçek ve yapraklarının uçucu bileşenlerinin yükseltiye bağlı değişimleri incelenmiştir.
Yöntemler Tepe Boşluğu – Katı Faz Mikro Ekstraksiyon (Headspace Solid Phase Micro-Extraction-HS-SPME) yöntemi ile 3 tekerrürlü şekilde analiz yapıldı.
Bulgular Analizler sonucunda H. aviculariifolium subsp. depilatum var. depilatum’da 101, S. cretica subsp. anatolica’da 79 ve P. nissolii’de 81 bileşen tespit edilmiştir. H. aviculariifolium subsp. depilatum var. depilatum’da çiçeklerde alt yükseltide trans-Caryophyllene ve Hendecane, üst yükseltide alpha- Pinene ve alpha- Selinene, yapraklarda alt yükseltide Carvacrol ve Thymol, üst yükseltide beta- Elemene ve alpha- Copaene ana bileşen olarak belirlenmiştir. S. cretica subsp. anatolica’da çiçeklerde alt ve üst yükseltide Benzaldehyde ve alpha- Pinene ana bileşen olarak tespit edilmiştir. Yapraklarda alt yükseltide Benzaldehyde ve alpha- Pinene, üst yükseltide Benzaldehyde ve Germacrene D ana bileşen olarak tespit edilmiştir. P. nissolii’de çiçeklerde ve yapraklarda alt ve üst yükseltide trans-Caryophyllene ve Germacrene D ana bileşen olarak saptanmıştır.
Sonuçlar Bitkilerin uçucu bileşenlerindeki bu değişkenliğin yükseltinin yanı sıra coğrafi konum ve genetik yapı gibi diğer çevresel faktörler ile bitkinin hangi kısmının incelendiği (morfolojik yapı) ve kullanılan analiz yöntemi gibi unsurların etkili olduğu görülmüştür. Bu sonuçlar bitkilerin kimyasal profillerinin ekolojik faktörlere bağlı olarak önemli değişimler gösterebileceğini ortaya koymaktadır.

Kaynakça

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  • Acarer, A. 2024b. Response of black pine (Pinus nigra) in southwestern Anatolia to climate change. BioResources, 19(4), 8594-8607.
  • Adams, R. P. 2017. Identification of essential oil components by gas chromatography/mass spectrometry. 5 online ed. Gruver, TX USA: Texensis Publishing.
  • Akçiçek, E. 2010. A new subspecies of Stachys cretica (section Eriostomum, Lamiaceae) from Turkey. Turkish Journal of Botany, 34(2), 131-136.
  • Akçiçek, E., Güner, Ö. 2022. A new subspecies of Stachys cretica (Lamiaceae) from western Turkey. Phytotaxa, 539(3), 257-264.
  • Akın, B., Bingöl, N. A., Bulman, G. C. 2024. A first approach for the micropropagation of threatened endemic subspecies of Stachys cretica subsp. kutahyensis. Biologia, 1-9.
  • Ayan, A. K., Çırak, C., Kevseroglu, K., Özen, T. 2004. Hypericin in some Hypericum species from Turkey. Asian Journal Plant Sci, 3, 200-202.
  • Bahadori, M. B., Kirkan, B., Sarikurkcu, C. 2019a. Phenolic ingredients and therapeutic potential of Stachys cretica subsp. smyrnaea for the management of oxidative stress, Alzheimer’s disease, hyperglycemia, and melasma. Industrial crops and products, 127, 82-87.
  • Bahadori, M. B., Kirkan, B., Sarikurkcu, C., Ceylan, O. 2019b. Metabolite profiling and health benefits of Stachys cretica subsp. mersinaea as a medicinal food. Industrial Crops and Products, 131, 85-89.
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  • Carev, I., Sarikurkcu, C. 2021. LC-MS/MS profiles and in vitro biological activities of extracts of an endemic species from Turkey: Stachys cretica ssp. anatolica. Plants, 10(6), 1054.
  • Chrysargyris, A., Tomou, E. M., Goula, K., Dimakopoulou, K., Tzortzakis, N., Skaltsa, H. 2023. Sideritis L. essential oils: A systematic review. Phytochemistry, 209, 113607.
  • Çarıkçı, S., Özer, Z., Dereli, S., Açar, D., Gören, A. C., Kılıç, T. 2018. Türkiye'ye Endemik Beş Sideritis Türünün Uçucu Yağ Bileşimi. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 22, 301-305.
  • Çırak, C., Sağlam, B., Ayan, A. K., Kevseroğlu, K. 2006. Morphogenetic and diurnal variation of hypericin in some Hypericum species from Turkey during the course of ontogenesis. Biochemical Systematics and Ecology, 34(1), 1-13.
  • Çırak, C., Radušiene, J., Janulis, V., Ivanauskas, L., Arslan, B. 2007a. Chemical constituents of some Hypericum species growing in Turkey. Journal of Plant Biology, 50, 632-635.
  • Çırak, C., Kevseroğlu, K., Ayan, A. K. 2007b. Breaking of seed dormancy in a Turkish endemic Hypericum species: Hypericum aviculariifolium subsp. depilatum var. depilatum by light and some pre-soaking treatments. Journal of Arid Environments, 68(1), 159-164.
  • Çırak, C., Bertoli, A. 2013. Aromatic profiling of wild and rare species growing in Turkey: Hypericum aviculariifolium Jaub. and Spach subsp. depilatum (Freyn and Bornm.) Robson var. depilatum and Hypericum pruinatum Boiss. and Bal. Natural product research, 27(2), 100-107.
  • Çırak, C., Radusiene, J., Camas, N., Caliskan, O., Odabas, M. S. 2013. Changes in the contents of main secondary metabolites in two Turkish Hypericum species during plant development. Pharmaceutical biology, 51(3), 391-399.
  • Çırak, C., Radusiene, J., Jakstas, V., Ivanauskas, L., Seyis, F., Yayla, F. 2016. Secondary metabolites of seven Hypericum species growing in Turkey. Pharmaceutical biology, 54(10), 2244-2253.
  • Çırak, C., Özcan, A., Yurteri, E., Kurt, D., Seyis, F. 2020. Chemical and morphological diversity among wild populations of Hypericum aviculariifolium Jaub. et Spach subsp. depilatum (Freyn et Bornm.) N. Robson var. depilatum. Acta Botanica Croatica, 79(1), 0-0.
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  • Gülsoy, S., Negiz, M. G., Özdemir, S., Yalçınkaya, B. Ulusan, M. D. 2022a. Impacts of Climate Change on Living Organisms. A. Beram & M. D. Ulusan (Eds.), Forest and Agricultural Studies from Different Perspectives (p. 73-112). Lithuania: SRA Academic Publishing.
  • Gülsoy, S. Özkan, K., Özkan, G. 2022b. Effect of environmental factors on the fruit essential oils of Pistacia terebinthus L. growing wild in Turkey. Cerne, 28, e102994.
  • Güner, A., Aslan, S., Ekim, T., Vural, M. and Babaç, M. T. (edlr.), 2012. Türkiye Bitkileri Listesi (Damarlı Bitkiler). Nezahat Gökyiğit Botanik Bahçesi ve Flora Araştırmaları Derneği Yayını. İstanbul.
  • Güner, Ö. 2022. Stachys istanbulensis (Lamiaceae) a new species from Turkey: evidence from morphological, micromorphological and molecular analysis. Turkish Journal of Botany, 46(6), 624-635.
  • Kırmızıbekmez, H., Montoro, P., Piacente, S., Pizza, C., Dönmez, A., Çalış, İ. 2005. Identification by HPLC‐PAD‐MS and quantification by HPLC‐PAD of phenylethanoid glycosides of five Phlomis species. Phytochemical Analysis: An International Journal of Plant Chemical and Biochemical Techniques, 16(1), 1-6.
  • Kirimer, N., Bașer, K. H. C., Tümen, G. 1995. Carvacrol-rich plants in Turkey. Chemistry of Natural Compound, 31(1), 37-41.
  • Kirimer, N., Başer, K. H. C., Kürkcüoglu, M. 2006. Composition of the Essential Oil of Phlomis nissolii L. Journal of Essential Oil Research, 18(6), 600-601.
  • Kirkan, B. 2019. Antioxidant potential, enzyme inhibition activity, and phenolic profile of extracts from Stachys cretica subsp. vacillans. Industrial crops and products, 140, 111639.
  • Küçük, S., Kürkçüoğlu, M., Köse, Y., Başer, K. 2015. Chemical characterisation of the essential oil of Hypericum aviculariifolium Jaub. & Spach subsp. depilatum (Freyn & Bornm.) Robson var. bourgaei (Boiss.) Robson from Turkey. Natural Volatiles and Essential Oils, 2(2), 52-56.
  • Leblebici, S., Kaygusuz, Ö., Korkmaz, T., Darcan, C. 2016. The antimicrobial activities of the leaves of some endemic Stachys species spreading in West Anatolia, Turkey. Mitteilungen Klosterneuburg, 66(6), 18-28.
  • Maltas, E., Uysal, A., Yildiztugay, E., Aladag, M. O., Yildiz, S., Kucukoduk, M. 2013. Investigation of antioxidant and antibacterial activities of some Hypericum species. Fresenius Environ Bull, 22(3), 862-869.
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Elevation dependent variation of volatile compositions of some endemic and medicinally important plant species

Yıl 2024, Cilt: 10 Sayı: 2, 123 - 138
https://doi.org/10.53516/ajfr.1561953

Öz

Background and aims In this study, the elevation-dependent variations in the volatile components of the flowers and leaves of three endemic plant species native to Türkiye, Hypericum aviculariifolium Jaub. & Spach, subsp. depilatum (Freyn & Bornm.) Robson var. depilatum, Stachys cretica L. subsp. anatolica Rech.f., and Phlomis nissolii L., were investigated.
Methods The analysis was conducted using the Headspace Solid-Phase Micro-Extraction (HS-SPME) method with three replicates.
Results 101 compounds were identified in H. aviculariifolium subsp. depilatum var. depilatum, 79 in S. cretica subsp. anatolica, and 81 in P. nissolii. In H. aviculariifolium subsp. depilatum var. depilatum, the major flower compounds were trans-Caryophyllene and Hendecane at lower altitudes, and alpha-Pinene and alpha-Selinene at higher altitudes; in leaves, Carvacrol and Thymol dominated at lower altitudes, while beta-Elemene and alpha-Copaene were prevalent at higher altitudes. For S. cretica subsp. anatolica, Benzaldehyde and alpha-Pinene were detected as the main compounds at the lower and upper elevations in flowers. In leaves, Benzaldehyde and alpha-pinene were the main constituents at lower elevation, while Benzaldehyde and Germacrene D were the main constituents at upper elevation. In P. nissolii, trans-Caryophyllene and Germacrene D were the main compounds in both flowers and leaves at both altitudes.
Conclusions It has been observed that this variability in plant volatile compounds is affected by other environmental factors such as altitude, geographical location, genetic structure, the parts of the plant examined (morphological structure), and the analysis method used. These results reveal that plant chemical profiles can show significant changes depending on ecological factors.

Kaynakça

  • Acarer, A. 2024a. Role of Climate change on oriental spruce (Picea orientalis L.): Modeling and mapping. BioResources, 19(2), 3845-3856.
  • Acarer, A. 2024b. Response of black pine (Pinus nigra) in southwestern Anatolia to climate change. BioResources, 19(4), 8594-8607.
  • Adams, R. P. 2017. Identification of essential oil components by gas chromatography/mass spectrometry. 5 online ed. Gruver, TX USA: Texensis Publishing.
  • Akçiçek, E. 2010. A new subspecies of Stachys cretica (section Eriostomum, Lamiaceae) from Turkey. Turkish Journal of Botany, 34(2), 131-136.
  • Akçiçek, E., Güner, Ö. 2022. A new subspecies of Stachys cretica (Lamiaceae) from western Turkey. Phytotaxa, 539(3), 257-264.
  • Akın, B., Bingöl, N. A., Bulman, G. C. 2024. A first approach for the micropropagation of threatened endemic subspecies of Stachys cretica subsp. kutahyensis. Biologia, 1-9.
  • Ayan, A. K., Çırak, C., Kevseroglu, K., Özen, T. 2004. Hypericin in some Hypericum species from Turkey. Asian Journal Plant Sci, 3, 200-202.
  • Bahadori, M. B., Kirkan, B., Sarikurkcu, C. 2019a. Phenolic ingredients and therapeutic potential of Stachys cretica subsp. smyrnaea for the management of oxidative stress, Alzheimer’s disease, hyperglycemia, and melasma. Industrial crops and products, 127, 82-87.
  • Bahadori, M. B., Kirkan, B., Sarikurkcu, C., Ceylan, O. 2019b. Metabolite profiling and health benefits of Stachys cretica subsp. mersinaea as a medicinal food. Industrial Crops and Products, 131, 85-89.
  • Baytop, T. 1999. Türkiye'de Bitkiler ile Tedavi: Geçmişte ve Bugün. Nobel Tıp Kitabevleri.
  • Bucar, F., Ninov, S., Ionkova, I., Kartnig, T., Schubert-Zsilavecz, M., Asenov, I., Konuklugil, B. 1998. Flavonoids from Phlomis nissolii. Phytochemistry, 48(3), 573-575.
  • Carev, I., Sarikurkcu, C. 2021. LC-MS/MS profiles and in vitro biological activities of extracts of an endemic species from Turkey: Stachys cretica ssp. anatolica. Plants, 10(6), 1054.
  • Chrysargyris, A., Tomou, E. M., Goula, K., Dimakopoulou, K., Tzortzakis, N., Skaltsa, H. 2023. Sideritis L. essential oils: A systematic review. Phytochemistry, 209, 113607.
  • Çarıkçı, S., Özer, Z., Dereli, S., Açar, D., Gören, A. C., Kılıç, T. 2018. Türkiye'ye Endemik Beş Sideritis Türünün Uçucu Yağ Bileşimi. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 22, 301-305.
  • Çırak, C., Sağlam, B., Ayan, A. K., Kevseroğlu, K. 2006. Morphogenetic and diurnal variation of hypericin in some Hypericum species from Turkey during the course of ontogenesis. Biochemical Systematics and Ecology, 34(1), 1-13.
  • Çırak, C., Radušiene, J., Janulis, V., Ivanauskas, L., Arslan, B. 2007a. Chemical constituents of some Hypericum species growing in Turkey. Journal of Plant Biology, 50, 632-635.
  • Çırak, C., Kevseroğlu, K., Ayan, A. K. 2007b. Breaking of seed dormancy in a Turkish endemic Hypericum species: Hypericum aviculariifolium subsp. depilatum var. depilatum by light and some pre-soaking treatments. Journal of Arid Environments, 68(1), 159-164.
  • Çırak, C., Bertoli, A. 2013. Aromatic profiling of wild and rare species growing in Turkey: Hypericum aviculariifolium Jaub. and Spach subsp. depilatum (Freyn and Bornm.) Robson var. depilatum and Hypericum pruinatum Boiss. and Bal. Natural product research, 27(2), 100-107.
  • Çırak, C., Radusiene, J., Camas, N., Caliskan, O., Odabas, M. S. 2013. Changes in the contents of main secondary metabolites in two Turkish Hypericum species during plant development. Pharmaceutical biology, 51(3), 391-399.
  • Çırak, C., Radusiene, J., Jakstas, V., Ivanauskas, L., Seyis, F., Yayla, F. 2016. Secondary metabolites of seven Hypericum species growing in Turkey. Pharmaceutical biology, 54(10), 2244-2253.
  • Çırak, C., Özcan, A., Yurteri, E., Kurt, D., Seyis, F. 2020. Chemical and morphological diversity among wild populations of Hypericum aviculariifolium Jaub. et Spach subsp. depilatum (Freyn et Bornm.) N. Robson var. depilatum. Acta Botanica Croatica, 79(1), 0-0.
  • Davis, P.H. 1967. Flora of Turkey and the East Aegean Islands. Edinburg University Press, Vol: 2, Edinburg, s. 400.
  • Ergun, M., Ergun, N., Ozbay, N. 2016. Analysis of volatile constituents of Sideritis pisidica Boiss. & Heldr. Z Arznei Gewurzpla, 21, 68-72.
  • Eruygur, N., Kirci, D., Ayaz, F., Dogu, S., Bagci, Y. 2022. Biological activities of three Phlomis species. J. Res. Pharm, 26, 255-262.
  • Goren, A. C., Piozzi, F., Akcicek, E., Kılıç, T., Çarıkçı, S., Mozioğlu, E., Setzer, W. N. 2011. Essential oil composition of twenty-two Stachys species (mountain tea) and their biological activities. Phytochemistry Letters, 4(4), 448-453.
  • Gülsoy, S., Çıvğa, A. 2016. Diken ardıç (Juniperus oxycedrus L. subsp. oxycedrus) kozalaklarının uçucu yağ özellikleri ve çevresel faktörlerle ilişkileri. Turkish Journal of Forestry, 17(2), 142-152.
  • Gülsoy, S., Negiz, M. G., Özdemir, S., Yalçınkaya, B. Ulusan, M. D. 2022a. Impacts of Climate Change on Living Organisms. A. Beram & M. D. Ulusan (Eds.), Forest and Agricultural Studies from Different Perspectives (p. 73-112). Lithuania: SRA Academic Publishing.
  • Gülsoy, S. Özkan, K., Özkan, G. 2022b. Effect of environmental factors on the fruit essential oils of Pistacia terebinthus L. growing wild in Turkey. Cerne, 28, e102994.
  • Güner, A., Aslan, S., Ekim, T., Vural, M. and Babaç, M. T. (edlr.), 2012. Türkiye Bitkileri Listesi (Damarlı Bitkiler). Nezahat Gökyiğit Botanik Bahçesi ve Flora Araştırmaları Derneği Yayını. İstanbul.
  • Güner, Ö. 2022. Stachys istanbulensis (Lamiaceae) a new species from Turkey: evidence from morphological, micromorphological and molecular analysis. Turkish Journal of Botany, 46(6), 624-635.
  • Kırmızıbekmez, H., Montoro, P., Piacente, S., Pizza, C., Dönmez, A., Çalış, İ. 2005. Identification by HPLC‐PAD‐MS and quantification by HPLC‐PAD of phenylethanoid glycosides of five Phlomis species. Phytochemical Analysis: An International Journal of Plant Chemical and Biochemical Techniques, 16(1), 1-6.
  • Kirimer, N., Bașer, K. H. C., Tümen, G. 1995. Carvacrol-rich plants in Turkey. Chemistry of Natural Compound, 31(1), 37-41.
  • Kirimer, N., Başer, K. H. C., Kürkcüoglu, M. 2006. Composition of the Essential Oil of Phlomis nissolii L. Journal of Essential Oil Research, 18(6), 600-601.
  • Kirkan, B. 2019. Antioxidant potential, enzyme inhibition activity, and phenolic profile of extracts from Stachys cretica subsp. vacillans. Industrial crops and products, 140, 111639.
  • Küçük, S., Kürkçüoğlu, M., Köse, Y., Başer, K. 2015. Chemical characterisation of the essential oil of Hypericum aviculariifolium Jaub. & Spach subsp. depilatum (Freyn & Bornm.) Robson var. bourgaei (Boiss.) Robson from Turkey. Natural Volatiles and Essential Oils, 2(2), 52-56.
  • Leblebici, S., Kaygusuz, Ö., Korkmaz, T., Darcan, C. 2016. The antimicrobial activities of the leaves of some endemic Stachys species spreading in West Anatolia, Turkey. Mitteilungen Klosterneuburg, 66(6), 18-28.
  • Maltas, E., Uysal, A., Yildiztugay, E., Aladag, M. O., Yildiz, S., Kucukoduk, M. 2013. Investigation of antioxidant and antibacterial activities of some Hypericum species. Fresenius Environ Bull, 22(3), 862-869.
  • Mennini, T., Gobbi, M. 2004. The antidepressant mechanism of Hypericum perforatum. Life Sciences, 75(9), 1021-1027.
  • Mills, G. A., Walker, V. 2000. Headspace solid-phase microextraction procedures for gas chromatographic analysis of biological fluids and materials. Journal of Chromatography A, 902(1), 267-287.
  • Morshedloo, M. R., Ebadi, A., Maggi, F., Fattahi, R., Yazdani, D., Jafari, M. 2015. Chemical characterization of the essential oil compositions from Iranian populations of Hypericum perforatum L. Industrial Crops and Products, 76, 565-573.
  • Özdemir, S., Gülsoy, S., Mert, A. 2020. Predicting the effect of climate change on the potential distribution of Crimean Juniper. Kastamonu University Journal of Forestry Faculty, 20(2), 133-142.
  • Özen, T., Ayan, A. K., Çırak, C., Kevseroglu, K. 2005. Total Phenol Content of Some Hypericum Species Growing in Turkey. Chemistry of Natural Compounds, 41(2), 232-233.
  • Öztürk, M., Duru, M. E., Aydoğmuş Öztürk, F., Harmandar, M., Mahlıçlı, M., Kolak, U., Ulubelen, A. 2009. GC-MS analysis and antimicrobial activity of essential oil of Stachys cretica subsp. smyrnaea. Natural Product Communications, 4(1), 1934578X0900400124.
  • Rios, J. L. 2016. Chapter 1- Essential Oils: What They Are and How the Terms Are Used and Defined. In V. R. Preedy (Ed.), Essential Oils in Food Preservation, Flavor and Safety (pp. 3-10). Academic Press.
  • Saddiqe, Z., Naeem, I., Maimoona, A. 2010. A review of the antibacterial activity of Hypericum perforatum L. Journal of Ethnopharmacology, 131(3), 511-521.
  • Sarikurkcu, C., Uren, M. C., Tepe, B., Cengiz, M., Kocak, M. S. 2014. Phenolic content, enzyme inhibitory and antioxidative activity potentials of Phlomis nissolii and P. pungens var. pungens. Industrial Crops and Products, 62, 333-340.
  • Sarikurkcu, C., Uren, M. C., Kocak, M. S., Cengiz, M., Tepe, B. 2016. Chemical composition, antioxidant, and enzyme inhibitory activities of the essential oils of three Phlomis species as well as their fatty acid compositions. Food Science and Biotechnology, 25, 687-693.
  • Satıl, F., Açar, M. 2020. Ethnobotanical use of Stachys L. (Lamiaceae) taxa in Turkey. International Journal of Nature and Life Sciences, 4(2), 66-86.
  • Simin, T., Davie-Martin, C. L., Petersen, J., Hoye, T. T., Rinnan, R. 2022. Impacts of elevation on plant traits and volatile organic compound emissions in deciduous tundra shrubs. Science of the Total Environment, 837, 155783.
  • Skaltsa, H. D., Demetzos, C., Lazari, D., Sokovic, M. 2003. Essential oil analysis and antimicrobial activity of eight Stachys species from Greece. Phytochemistry, 64(3), 743-752.
  • Şerbetçi, T., Demirci, B., Güzel, Ç. B., Kültür, Ş., Ergüven, M., Başer, K. H. C. 2010. Essential oil composition, antimicrobial and cytotoxic activities of two endemic Stachys cretica subspecies (Lamiaceae) from Turkey. Natural Product Communications, 5(9), 1934578X1000500907.
  • Thuiller, W., Albert, C., Araújo, M. B., Berry, P. M., Cabeza, M., Guisan, A., Hickler, T., Midgley, G. F., Paterson, J., Schurr, F. M., Sykes, M. T., Zimmermann, N. E. 2008. Predicting global change impacts on plant species’ distributions: future challenges. Perspectives in plant ecology, evolution and systematics, 9(3-4), 137-152.
  • Toplan, G. G., Taşkın, T., Kara, E. M., Genç, G. E. 2021. Antioxidant and antimicrobial activities of various extracts from Stachys cretica subsp. bulgarica Rech. f., Stachys byzantina K. Koch and Stachys thirkei K. Koch. Istanbul Journal of Pharmacy, 51(3), 341-347.
  • Vecerova, K., Klem, K., Veselá, B., Holub, P., Grace, J., Urban, O. 2021. Combined effect of altitude, season and light on the accumulation of extractable terpenes in Norway spruce needles. Forests, 12(12), 1737.
  • Yüce, E., Bagcı, E. 2012. The essential oils of the aerial parts of two Hypericum taxa (Hypericum triquetrifolium and Hypericum aviculariifolium subsp. depilatum var. depilatum (Clusiaceae)) from Turkey. Natural product research, 26(21), 1985-1990.
  • Zhang, Z., Pawliszyn, J. 1993. Headspace solid-phase microextraction. Analytical chemistry, 65(14), 1843-1852.
  • Akay, A. E., 2006. Minimizing total costs of forest roads with computer-aided design model. Sadhana- Academy Proceedings in Engineering Sciences, 31(5), 621–633.
Toplam 57 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Orman Ekosistemleri
Bölüm Makaleler
Yazarlar

Ayşegül Tekeş 0000-0003-4515-7258

Sermin Göksu Karagöz 0000-0001-8186-7201

Musa Denizhan Ulusan 0000-0001-9040-5025

Erken Görünüm Tarihi 12 Aralık 2024
Yayımlanma Tarihi
Gönderilme Tarihi 7 Ekim 2024
Kabul Tarihi 24 Kasım 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 10 Sayı: 2

Kaynak Göster

APA Tekeş, A., Göksu Karagöz, S., & Ulusan, M. D. (2024). Bazı endemik ve tıbbi öneme sahip bitki türlerinin uçucu bileşenlerinin yükseltiye bağlı değişimi. Anadolu Orman Araştırmaları Dergisi, 10(2), 123-138. https://doi.org/10.53516/ajfr.1561953
AMA Tekeş A, Göksu Karagöz S, Ulusan MD. Bazı endemik ve tıbbi öneme sahip bitki türlerinin uçucu bileşenlerinin yükseltiye bağlı değişimi. AOAD. Aralık 2024;10(2):123-138. doi:10.53516/ajfr.1561953
Chicago Tekeş, Ayşegül, Sermin Göksu Karagöz, ve Musa Denizhan Ulusan. “Bazı Endemik Ve tıbbi öneme Sahip Bitki türlerinin uçucu bileşenlerinin yükseltiye bağlı değişimi”. Anadolu Orman Araştırmaları Dergisi 10, sy. 2 (Aralık 2024): 123-38. https://doi.org/10.53516/ajfr.1561953.
EndNote Tekeş A, Göksu Karagöz S, Ulusan MD (01 Aralık 2024) Bazı endemik ve tıbbi öneme sahip bitki türlerinin uçucu bileşenlerinin yükseltiye bağlı değişimi. Anadolu Orman Araştırmaları Dergisi 10 2 123–138.
IEEE A. Tekeş, S. Göksu Karagöz, ve M. D. Ulusan, “Bazı endemik ve tıbbi öneme sahip bitki türlerinin uçucu bileşenlerinin yükseltiye bağlı değişimi”, AOAD, c. 10, sy. 2, ss. 123–138, 2024, doi: 10.53516/ajfr.1561953.
ISNAD Tekeş, Ayşegül vd. “Bazı Endemik Ve tıbbi öneme Sahip Bitki türlerinin uçucu bileşenlerinin yükseltiye bağlı değişimi”. Anadolu Orman Araştırmaları Dergisi 10/2 (Aralık 2024), 123-138. https://doi.org/10.53516/ajfr.1561953.
JAMA Tekeş A, Göksu Karagöz S, Ulusan MD. Bazı endemik ve tıbbi öneme sahip bitki türlerinin uçucu bileşenlerinin yükseltiye bağlı değişimi. AOAD. 2024;10:123–138.
MLA Tekeş, Ayşegül vd. “Bazı Endemik Ve tıbbi öneme Sahip Bitki türlerinin uçucu bileşenlerinin yükseltiye bağlı değişimi”. Anadolu Orman Araştırmaları Dergisi, c. 10, sy. 2, 2024, ss. 123-38, doi:10.53516/ajfr.1561953.
Vancouver Tekeş A, Göksu Karagöz S, Ulusan MD. Bazı endemik ve tıbbi öneme sahip bitki türlerinin uçucu bileşenlerinin yükseltiye bağlı değişimi. AOAD. 2024;10(2):123-38.