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Madra Çayı (Türkiye)’nın Epilitik Diyatom Kompozisyonu

Year 2025, In Press Articles, 1 - 15
https://doi.org/10.52998/trjmms.1634821

Abstract

ÖZET

Türkiye’nin Kuzey Ege Nehir Havzası’nda yer alan Madra Çayı, Madra Dağı (1.343 m.)'nın Güneybatı yamaçlarından doğar ve Balıkesir ili sınırları içerisinden Ege denizine dökülür. Bu çalışmada, Su Çerçeve Direktifi (SÇD) yöntemleri kullanılarak Madra Çayı’nın epilitik diyatom kompozisyonu incelenerek, Türkiye tatlısu alg florasının belirlenmesine katkılar sağlamak amaçlanmıştır. Bu amaçla, 2015 ve 2016 yılları arasında, araştırma sahamızda seçilen 7 istasyondan mevsimsel diyatom örneklemeleri yapılmıştır. Örnekleme periyodu süresince, Madra Çayı’nda 44 cinse ait toplamda 100 epilitik diyatom türü teşhis edilmiştir. Çalışma sonucunda, Navicula (13 tür), Gomphonema (5 tür), Nitzschia (5 tür) ve Surirella (5 tür) en fazla türle temsil edilen cinsler olmuştur. Bu çalışma ile Madara Çayı’nın epilitik diyatom toplulukları ilk kez ayrıntılı olarak incelenmiştir. Epilitik diyatomların varlık-yokluk verisi baz alınarak yapılan hiyerarşik kümelenme analizine (Bray-Curtis) göre, seçilen istasyonlar arasındaki tür kompozisyonu benzerliği %50’nin üzerinde bulunmuştur. Madra Çayı' nın epilitik diyatom kompozisyonunun, çoğunlukla ötrofik ve kısmen de oligo-mezotrofik ortamlara uyumlu türlerden oluştuğu değerlendirilmiştir.

Anahtar sözcükler: Biyoçeşitlilik, Alg florası, Epilitik, Diyatomlar, Madra Çayı, SÇD.

Ethical Statement

Bu çalışma için etik kurul iznine gerek yoktur

Project Number

2014-TYL-SUÜF-0020

References

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  • Kıvrak, E., Uygun, A., Kalyoncu, H. (2012). Akarçay’ın (Afyonkarahisar, Türkiye) Su Kalitesini Değerlendirmek için Diyatome İndekslerinin Kullanılması. Afyon Kocatepe Üniversitesi Fen ve Mühendislik Bilimleri Dergisi, 12(2), 27-38.
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Epilithic Diatom Composition of Madra Stream (Türkiye)

Year 2025, In Press Articles, 1 - 15
https://doi.org/10.52998/trjmms.1634821

Abstract

ABSTRACT

Madra Stream, located in the Northern Aegean River Basin of Türkiye, rises from the southwestern slopes of Madra Mountain (1.343 m.) and flows into the Aegean Sea within the borders of Balıkesir province. In this study, we aimed to contribute to the determination of the freshwater algal flora of Türkiye by investigating the epilithic diatom composition of Madra Stream using Water Framework Directive (WFD) methods. For this purpose, seasonal diatom sampling was conducted at seven stations selected within the study area between 2015 and 2016. During the sampling period, a total of 100 epilithic diatom species belonging to 44 genera were identified in Madra Stream. The results of the study revealed that Navicula (13 species), Gomphonema (5 species), Nitzschia (5 species), and Surirella (5 species) were the genera with the highest number of species. The epilithic diatom communities of the Madara Stream were examined in detail for the first time with this study. According to the hierarchical cluster analysis (Bray-Curtis) based on the presence-absence data of epilithic diatoms, the species composition similarity between the selected stations was found to be over 50%. It was concluded that the epilithic diatom composition of Madra Stream primarily consists of species adapted to eutrophic and, to a lesser extent, oligo-mesotrophic running water environments.

Keywords: Biodiversity, Algal flora, Epilithic, Diatoms, Madra stream, WFD

Project Number

2014-TYL-SUÜF-0020

References

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  • Atalay, I. (2008). Relict and endemic plant species reflecting climatic changes in Anatalia. In: Ecology and Environment FUrom Carpathians to Taurus Mountain. Proccedings of 5th Turkey-Romanian Academic Seminar. Eds. I. Atalay, R. Efe, M. Ielenicz and D. Balteanu. pp. 7-30.
  • Bixby, R.J., Jahn, R. (2005). Hannaea arcus (Ehrenberg) RM Patrick: lectotypification and nomenclatural history. Diatom Research, 20(2), 219-226. doi: 10.1080/0269249X.2005.9705632.
  • Blanco, S., Álvarez, I., Cejudo, C. (2008). A test on different aspects of diatom processing techniques. Journal of Applied Phycology, 20(4), 445-450. doi:10.1007/s10811-007-9292-2.
  • CEN 13946. (2003). Water quality. Guidance standard for the routine sampling and pretreatment of benthic diatoms from rivers.
  • Chudaev, D.A., Kupreeva, M.D., Gololobova, M.A. (2015). On the studies of the species of Navicula Bory sensu stricto (Diatomophyceae) of Moskva River. Moscow University Biological Sciences Bulletin, 70(2), 91-98. doi: 10.3103/S0096392514040038.
  • Cleve-Euler, A. (1951). Die Diatomeen von Schweden und Finnland. I. Kungelige Svenska Vetenskapsakademiens Handlingar, Ser.4,2, 1-163.
  • Field, C.B., Behrenfeld, M.J., Randerson, J.T., Falkowski, P. (1998). Primary production of the biosphere: integrating terrestrial and oceanic components. Science, 281(5374), 237-240. doi: 10.1126/science.281.5374.237.
  • Finlay, B.J., Monaghan, E.B., Maberly, S.C. (2002). Hypothesis: the rate and scale of dispersal of freshwater diatom species is a function of their global abundance. Protist, 153, 261–273. doi: 10.1078/1434-4610-00103.
  • Gemici, Y., Seçmen, Ö., Ekim, T., Leblebici, E. (1992). Türkiye'de Endemizm ve İzmir Yöresinin Bazı Endemikleri. Ege Coğrafya Dergisi, 6 (1), 61-83.
  • Guiry, M.D., Guiry, G.M. (2025). AlgaeBase. World-wide electronic publication, University of Galway. https://www.algaebase.org; searched on 15 Şubat 2025.
  • Hartley B., Barber H.G., Carter J.R., Sims P.A. (1996). An Atlas of British diatoms. Biopress, Bristol, 601pp.
  • Hickel, B., Håkansson, H. (1987). Dimorphism in Cyclostephanos dubius (Bacillariophyta) and the morphology of initial valves. Diatom research, 2(1), 35-46. doi: 10.1080/0269249X.1987.9704983.
  • Hustedt, F. (1930). Bacillariophyta (Diatomeae). In: Die Siisswasser-Flora Mitteleuropas (A. Pascher, ed.), 10, 2nd.Ed. 466 pp. Gustav Fischer, Jena.
  • Ivanov, P., Kirilova, E., Ector, L. (2006). Diatom species composition from the River Iskar in the Sofia region, Bulgaria. Advances in phycological studies Festschrift in honour of Prof. Dobrina Temniskova-Topalova, 167-190.
  • Kalbe, L. (1982). Untersuchungen zur Variabilitat der Zellgrosse der Diatomeen Stephanodiscus dubius (Fricke) Hust. und Stephanodiscus astraea (Ehr.) Grunow. Limnologica (Berlin), 14, 35-42.
  • Kargıoğlu, M., Serteser, A., Kıvrak, E., İçağa, Y., Konuk, M. (2012). Relationships between epipelic diatoms, aquatic macrophytes, and water quality in Akarçay Stream, Afyonkarahisar, Turkey. Oceanological and Hydrobiological Studies, 41(1), 74-84. doi: 10.2478/s13545-012-0009-z.
  • Kelly, M.G. (2003). Short term dynamics of diatoms in an upland stream and implications for monitoring eutrophication. Environmental Pollution, 125, 117–122. doi:10.1016/S0269-7491(03)00075-7.
  • Kelly, M.G., Cazaubon, A., Coring, E., Dell'Uomo, A., Ector, L., Goldsmith, B., Kwandrans, J. (1998). Recommendations for the routine sampling of diatoms for water quality assessments in Europe. Journal of applied Phycology, 10 (2), 215-224 doi: 10.1023/A:1008033201227.
  • Kelly, M.G., Whitton, B.A. (1995). The Trophic Diatom Index: a new index for monitoring eutrophication in rivers. Journal of Applied Phycology, 7, 433–444. doi: 10.1007/BF00003802.
  • Keser, N. (2013). Murat Dağı’nda Endemizme Etki Eden Topografik Faktörler (İç Batı Anadolu). Electronic Turkish Studies, 8(12): 711-736. doi: 10.7827/TurkishStudies.5741.
  • Kıvrak, E., Uygun, A., Kalyoncu, H. (2012). Akarçay’ın (Afyonkarahisar, Türkiye) Su Kalitesini Değerlendirmek için Diyatome İndekslerinin Kullanılması. Afyon Kocatepe Üniversitesi Fen ve Mühendislik Bilimleri Dergisi, 12(2), 27-38.
  • Kobayasi, H., Mayama, S. (1989). Evaluation of river water quality by diatoms. The Korean Journal of Phycology, 4(2), 121-133.
  • Kóvacs, C., Kahlert, M., Padisák, J. (2006). Benthic diatom communities along pH and P gradients in Hungarian and Swedish streams. Journal of Applied Phycology, 18, 105–117. doi: 10.1007/s10811-006-9080-4.
  • Krammer, K. (2000). Diatoms of Europe: Diatoms of the European Inland Waters and Comparable Habitats. Volume 1: The Genus Pinnularia. H. Lange-Bertalot (Ed.). ARG Gantner Verlag KG., 217 plates,703 p.
  • Krammer, K. (2002). Diatoms of Europe: Diatoms of the European Inland Waters and Comparable Habitats. Volume 3: Cymbella. H. Lange-Bertalot (Ed.). ARG Gantner Verlag KG., 194 plates, 584 p.
  • Krammer, K. (2003). Diatoms of Europe: Diatoms of the European Inland Waters and Comparable Habitats. Volume 4: Cymbopleura, Delicata, Navicymbula, Gomphocymbellopsis, Afrocymbella. A.R.G. Gantner Verlag K.G., 164 plates, 530 p.
  • Krammer, K., Lange-Bertalot, H. (1986). Bacilllaiophyceae, Band 2/1,1. Teil: Naviculaceae. Süßwasserflora von Mitteleuropa. H. Ettl, J. Gerloff, H. Heynig and D. Mollenhauer (Editors). Gustav FischerVerlag, Stuttgart.
  • Krammer, K., Lange-Bertalot, H. (1987). Morphology and taxonomy of Surirella ovalis and related taxa. Diatom Research, 2(1), 77-95. doi: 10.1080/0269249X.1987.9704986.
  • Krammer, K., Lange-Bertalot, H. (1988). Süßwasserflora von Mitteleuropa T. 2/2 Bacillariophyceae. Bacillariaceae, Epithemiaceae, Surirellaceae – Stuttgart, Jena 596 p. (in German).
  • Krammer, K., Lange-Bertalot, H. (1991a). Süßwasserflora von Mitteleuropa T. 2/3 Bacillariophyceae. Centrales, Fragilariaceae, Eunotiaceae – Stuttgart, Jena 578 p. (in German).
  • Krammer, K., Lange-Bertalot, H. (1991b). Süßwasserflora von Mitteleuropa T. 2/4 Bacillariophyceae. Achnanthaceae – Stuttgart, Jena 438 p. (in German).
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There are 60 citations in total.

Details

Primary Language Turkish
Subjects Aquaculture and Fisheries (Other)
Journal Section Research Article
Authors

Haşim Sömek 0000-0003-4281-9738

Gülşah Coşkunışık Mart 0009-0007-1278-5019

Project Number 2014-TYL-SUÜF-0020
Early Pub Date March 5, 2025
Publication Date
Submission Date February 10, 2025
Acceptance Date February 21, 2025
Published in Issue Year 2025 In Press Articles

Cite

APA Sömek, H., & Coşkunışık Mart, G. (2025). Madra Çayı (Türkiye)’nın Epilitik Diyatom Kompozisyonu. Turkish Journal of Maritime and Marine Sciences1-15. https://doi.org/10.52998/trjmms.1634821

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