Türkiye Akdeniz Bölgesindeki Deniz Çayırı Posidonia oceanica'nın Bitki Büyümesi Dikkate Alınarak Ekolojik Dinamiklerinin Değerlendirilmesi
Yıl 2025,
Cilt: 8 Sayı: 1, 49 - 62, 30.06.2025
Ergün Taşkın
,
Furkan Bilgiç
,
Aysu Güreşen
Öz
Homojenliğin mimarları olarak kabul edilen damarlı angiospermler, Akdeniz'deki ekosistemin kompozisyonuna ve işleyişine hakimdir. Deniz çayırlarının ekolojik ve evrimsel dinamiklerini etkileyen faktörlerin anlaşılması koruma amaçları açısından kritik olduğundan, bu çalışmada Kızılada, Fethiye-Göcek Özel Çevre Koruma Bölgesi'ndeki (Muğla, Türkiye) Posidonia oceanica çayırlarının ekolojik dinamiklerini değerlendirmeyi amaçladık. Bitkinin büyüme dinamikleri göz önüne alınarak, hem ortotropik hem de plajiyotropik rizomlarda, yıllık ölçek kalınlığı döngüleri kullanılarak lepidokronolojik analiz yürütüldü. Bölgede P. oceanica çayırlarının üst sınırı 18,7 m derinlikten başlayıp 29,7 m derinlikte sona ermektedir. P. oceanica'nın plajiyotropik rizomlarının üst sınırdan alt sınır derinliğe kadar uzanan bir hat boyunca gelişimi, Türkiye kıyılarında nadiren görülebilmektedir. Ortotrofik ve plajiyotrofik rizomlar arasında büyüme hızları farklı olduğundan, hat üzerindeki çayırın yıllık büyümesi, her iki rizomun ortalaması alınarak hesaplanmıştır. Sonuçlar göz önüne alındığında, P. oceanica'nın yıllık büyüme hızı derinlikle azalmış ve alt sınır derinliğinde minimum olduğu belirlenmiştir. Plajiyotrofik rizom uzamasının ortalama hızı 17,8 mm yıl-1 olarak kaydedilirken, ortotrofik rizomların ortalaması 8,8 mm yıl-1 olarak kaydedilmiştir. Lepidokronolojik analizler, rizomların ortalama yıllık büyüme hızına göre P. oceanica çayırının yaklaşık 2013 yaşında olduğunu doğrulamıştır.
Kaynakça
-
Alcoverro, T., Duarte, C.M., Romero, J. (1995) Annual growth dynamics of Posidonia oceanica: contribution of large scale versus local factors to seasonality. Mar. Ecol. Prog. Ser., 120: 203–210.
-
Arnaud-Haond, S., Duarte, C.M., Diaz-Almela, E., Marba`, N., Sintes, T., Serrao, E. A. (2012) Implications of Extreme Life Span in Clonal Organisms: Millenary Clones in Meadows of the Threatened Seagrass Posidonia oceanica. PLoS ONE 7(2): e30454. doi:10.1371/journal.pone.0030454).
-
Blanco-Murillo, F., Fernández-Torquemada, Y., Garrote-Moreno, A., Sáez, C.A., Sánchez-Lizaso, J.L. (2022) Posidonia oceanica L. (Delile) meadows regression: Long-term affection may be induced by multiple impacts. Marine Environmental Research, 174: 105557. https://doi.org/10.1016/j.marenvres.2022.105557
-
Bonacorsi, M., Pergent-Martini, C., Breand, N., Pergent, G. (2013) Is Posidonia oceanica regression a general feature in the Mediterranean Sea? Mediterranean Marine Science, 14:193–203.
Boudouresque, C.F., Jeudy de Grissac, A., Meinesz, A. (1984) Relations entre le sediment et l'allongement des rhizomes orthotropes de Posidonia oceanica dans la baie d'Elbu (Corse). In: (C. F. Boudouresque, A. Jeudy de Grissac and J. Olivier, eds) International Workshop on Posidonia oceanica Beds. GIS Posidonie Publ. pp. 1852191.
-
Boudouresque, C.F., Meinesz, A., Pergent, G. (1983) Mesure de la production annuelle de rhizomes dans l’herbier à Posidonia oceanica, à Port-Cros (Var) et Galeria (Corse). Rapp. Comm. Int. Mer. Médit., 28 (3): 135–136.
-
Buia, M.C., Zupo, V., Mazzella, L. (1992) Primary production and growth dynamics in Posidonia oceanica. P.S Z N.I: Mar. Ecol., 13 (1): 2216.
-
Calvo, S., Lovison, G., Pirrotta, M., Di Maida, G., Tomasello, A., Sciandra, M. (2006) Modelling the relationship between sexual reproduction and rhizome growth in Posidonia oceanica (L.) Delile. Mar. Ecol., 27: 361–371.
-
Calvo, S., Orestano, C.F., Tomasello, A. (1995) Distribution, structure and phenology of Posidonia oceanica meadows along sicilian coasts. Gior. Bot. Ital., 129 (1): 3512356.
-
Cebrián, J., Marbà, N., Duarte, C.M. (1994) Estimating leaf age of the seagrass Posidonia oceanica (L.) Delile using the plastochrone interval index. Aquat. Bot., 49: 59–65.
-
De Bodt, S., Maere, S., Van de Peer, Y. (2005) Genome duplication and the origin of angiosperms. Trends Ecol. Evol., 20: 591–597. doi:10.1016/j.tree.2005.07.008
-
Di Maida, G., Tomasello, A., Sciandra, M., Pirrotta, M., Milazzo, M., Calvo, S. (2013) Effect of different substrata on rhizome growth, leaf biometry and shoot density of Posidonia oceanica. Mar. Environ. Res., 87–88: 96–102.
Digiantonio, G., Blum, L., McGlathery, K.J., Van Dijk, K.J., Waycott, M. (2020) Genetic mosaicism and population connectivity of edge-of-range Halodule wrightii populations. Aquat. Bot., 161: 103161. doi:10.1016/j.aquabot.2019.103161.
doi:10.1093/aob/mcv162.
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-
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-
Duarte, C.M., Marbà, N., Agawin, N., Cebrián, J., Enrıquez, S., Fortes, M.D., Gallegos, M.E., Merino, M., Lesen, B., Sand-Jensen, K., Uri, J., Vermaat, J. (1994) Reconstruction of seagrass dynamics: age determination and associated tools for the seagrass ecologist. Mar. Ecol. Progr. Ser., 107: 195–209.
-
Gobert, S., Lepoint, G., Pelaprat, C., Remy, F., Lejeune, P., Richir, J., Abadie, A. (2016) Temporal evolution of sand corridors in a Posidonia oceanica seascape: A 15-years study. Mediterr. Mar. Sci., 17: 777–784.
-
Güreşen, A., Pergent, G., Güreşen, S.O., Aktan, Y. (2020) Evaluating the coastal ecosystem status of two Western and Eastern Mediterranean islands using the seagrass Posidonia oceanica. Ecological Indicators, 108:105734.
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Hammer, Ø., Harper, D.A.T., Ryan, P.D. (2001) PAST: Paleontological statistics software package for education and data analysis. Palaeontologia Electronica, 4(1): 9pp.
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Kuo, J. (2013) Chromosome numbers of the Australian Cymodoceaceae. Plant Syst. Evol., 299: 1443–1448. doi:10.1007/s00606-013-0806-x
-
Lynch, M. (2007) The frailty of adaptive hypotheses for the origins of organismal complexity. Proc. Natl Acad. Sci. USA, 104: 8597–8604. doi:10.1073/pnas. 0702207104
-
Marba, Á.N., Duarte, C.M. (1997) Interannual changes in seagrass (Posidonia oceanica) growth and environmental change in the Spanish Mediterranean littoral zone. Limnol. Oceanogr., 42 (5): 8002810.
-
Marbà, N., Duarte, C.M., Alexandra, A., Cabaço, S. (2004) How do seagrasses grow and spread? In: Borum, J. et al. (Ed.) European seagrasses: an introduction to monitoring and management. pp. 11-18.
-
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-
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-
Mostafa, H.M., Halim, Y. (1995) Phenology, rhizome growth rate and rhizome production of Posidonia oceanica (L.) Delile along a depth gradient: preliminary approach using lepidochronology. Mar. Life, 5 (1):19227.
-
Ohno, S. (1970) Evolution by gene duplication. Berlin, Germany: Springer-Verlag.
-
Ott, J.A. (1980) Growth and production in Posidonia oceanica (L.) Delile. P.S.Z.N. I: Mar. Ecol. 1: 47–64.
-
Peirano, A. (2002) Lepidochronology and internodal length methods for studying Posidonia oceanica growth: are they compatible? Aquatic Botany, 74 (2):175-180, https://doi.org/10.1016/S0304-3770(02)00078-5.
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Evaluation of the Ecological Dynamics of the Seagrass Posidonia oceanica in a Turkish Mediterranean Site Considering the Plant Growth
Yıl 2025,
Cilt: 8 Sayı: 1, 49 - 62, 30.06.2025
Ergün Taşkın
,
Furkan Bilgiç
,
Aysu Güreşen
Öz
Vascular angiosperms considered as architectures of homogeneity, dominate the composition, and ecosystem functioning in the Mediterranean Sea. Since the realisation of the factors influencing the ecological and evolutionary dynamics of seagrasses, is critical for the conservational purposes, we aimed to evaluate the ecological dynamics Posidonia oceanica meadows in Kızılada, Fethiye-Göcek Special Environmental Protected Area (Muğla, Türkiye) in this study. Considering growth dynamics of the plant, lepidochronological analysis using annual cycles of scale thickness, was conducted both on the orthotropic and the plagiotropic rhizomes. The upper limit of P. oceanica meadows, started from a depth of 18.7 m and ended at a depth of 29.7 m in the region. Development of the plagiotropic rhizomes of P. oceanica along a line from the upper limit to the lower limit depth, could be rarely seen in the Turkish coasts. Since the growth rates were different between orthotrophic and plagiotrophic rhizomes, the annual growth of the meadow on the line, was calculated by averaging the both of the rhizomes. Considering the results, the annual growth rate of P. oceanica decreased with depth and was determined to be minimum at the lower limit depth. The average rate of plagiotropic rhizome elongation, was recorded as 17.8 mm yr-1, while the average of orthotrophic rhizomes was recorded as 8.8 mm yr-1. Lepidochronological analyses verified that P. oceanica meadow was estimated to be approximately 2013 years old according to the average annual growth rate of the rhizomes.
Etik Beyan
Compliance with Ethical Standards
Conflict of interest
The authors declared that for this research article, they have no actual, potential or perceived conflict of interest.
Ethical approval
Ethics committee approval is not required.
Funding
Financial support was received for this study.
Data availability
Not applicable.
Consent for publication
Not applicable.
Teşekkür
The present study had been carried out with the Project “Mavi Nefes-Göcek” supported by Garanti BBVA and DenizTemiz Derneği/TURMEPA Foundation. Also, we would like to thank to Republic of Turkey Ministry of Environment, Urbanization and Climate Change, General Directorate of Protection of Natural Assets, and to Esra Merve Taşkın (Eser Deniz Ltd. Şti, Manis) for laboratory analyses support.
Kaynakça
-
Alcoverro, T., Duarte, C.M., Romero, J. (1995) Annual growth dynamics of Posidonia oceanica: contribution of large scale versus local factors to seasonality. Mar. Ecol. Prog. Ser., 120: 203–210.
-
Arnaud-Haond, S., Duarte, C.M., Diaz-Almela, E., Marba`, N., Sintes, T., Serrao, E. A. (2012) Implications of Extreme Life Span in Clonal Organisms: Millenary Clones in Meadows of the Threatened Seagrass Posidonia oceanica. PLoS ONE 7(2): e30454. doi:10.1371/journal.pone.0030454).
-
Blanco-Murillo, F., Fernández-Torquemada, Y., Garrote-Moreno, A., Sáez, C.A., Sánchez-Lizaso, J.L. (2022) Posidonia oceanica L. (Delile) meadows regression: Long-term affection may be induced by multiple impacts. Marine Environmental Research, 174: 105557. https://doi.org/10.1016/j.marenvres.2022.105557
-
Bonacorsi, M., Pergent-Martini, C., Breand, N., Pergent, G. (2013) Is Posidonia oceanica regression a general feature in the Mediterranean Sea? Mediterranean Marine Science, 14:193–203.
Boudouresque, C.F., Jeudy de Grissac, A., Meinesz, A. (1984) Relations entre le sediment et l'allongement des rhizomes orthotropes de Posidonia oceanica dans la baie d'Elbu (Corse). In: (C. F. Boudouresque, A. Jeudy de Grissac and J. Olivier, eds) International Workshop on Posidonia oceanica Beds. GIS Posidonie Publ. pp. 1852191.
-
Boudouresque, C.F., Meinesz, A., Pergent, G. (1983) Mesure de la production annuelle de rhizomes dans l’herbier à Posidonia oceanica, à Port-Cros (Var) et Galeria (Corse). Rapp. Comm. Int. Mer. Médit., 28 (3): 135–136.
-
Buia, M.C., Zupo, V., Mazzella, L. (1992) Primary production and growth dynamics in Posidonia oceanica. P.S Z N.I: Mar. Ecol., 13 (1): 2216.
-
Calvo, S., Lovison, G., Pirrotta, M., Di Maida, G., Tomasello, A., Sciandra, M. (2006) Modelling the relationship between sexual reproduction and rhizome growth in Posidonia oceanica (L.) Delile. Mar. Ecol., 27: 361–371.
-
Calvo, S., Orestano, C.F., Tomasello, A. (1995) Distribution, structure and phenology of Posidonia oceanica meadows along sicilian coasts. Gior. Bot. Ital., 129 (1): 3512356.
-
Cebrián, J., Marbà, N., Duarte, C.M. (1994) Estimating leaf age of the seagrass Posidonia oceanica (L.) Delile using the plastochrone interval index. Aquat. Bot., 49: 59–65.
-
De Bodt, S., Maere, S., Van de Peer, Y. (2005) Genome duplication and the origin of angiosperms. Trends Ecol. Evol., 20: 591–597. doi:10.1016/j.tree.2005.07.008
-
Di Maida, G., Tomasello, A., Sciandra, M., Pirrotta, M., Milazzo, M., Calvo, S. (2013) Effect of different substrata on rhizome growth, leaf biometry and shoot density of Posidonia oceanica. Mar. Environ. Res., 87–88: 96–102.
Digiantonio, G., Blum, L., McGlathery, K.J., Van Dijk, K.J., Waycott, M. (2020) Genetic mosaicism and population connectivity of edge-of-range Halodule wrightii populations. Aquat. Bot., 161: 103161. doi:10.1016/j.aquabot.2019.103161.
doi:10.1093/aob/mcv162.
Duarte, C.M. (1991) Allometric scaling of seagrass form and productivity. Mar. Ecol. Progr. Ser., 77: 289–300.
-
Duarte, C.M., Chiscano, C.L. (1999) Seagrass biomass and production: a reassessment. Aquat. Bot., 65: 159–174.
-
Duarte, C.M., Marbà, N., Agawin, N., Cebrián, J., Enrıquez, S., Fortes, M.D., Gallegos, M.E., Merino, M., Lesen, B., Sand-Jensen, K., Uri, J., Vermaat, J. (1994) Reconstruction of seagrass dynamics: age determination and associated tools for the seagrass ecologist. Mar. Ecol. Progr. Ser., 107: 195–209.
-
Gobert, S., Lepoint, G., Pelaprat, C., Remy, F., Lejeune, P., Richir, J., Abadie, A. (2016) Temporal evolution of sand corridors in a Posidonia oceanica seascape: A 15-years study. Mediterr. Mar. Sci., 17: 777–784.
-
Güreşen, A., Pergent, G., Güreşen, S.O., Aktan, Y. (2020) Evaluating the coastal ecosystem status of two Western and Eastern Mediterranean islands using the seagrass Posidonia oceanica. Ecological Indicators, 108:105734.
-
Hammer, Ø., Harper, D.A.T., Ryan, P.D. (2001) PAST: Paleontological statistics software package for education and data analysis. Palaeontologia Electronica, 4(1): 9pp.
-
Hillman, K., Walker, D.I., Larkum, A.W.D., McComb, A.J. (1989) Productivty and nutrient limitation. In: Larkum. A. W. D., McComb, A. J., Shepherd, S. A. (eds.) Biology of seagrasses A treatise on the biology of seagrasses with special reference to the Australian region. Elsevier, Amsterdam, p. 635-685.
-
Jiao, Y., Wickett, N. J., Ayyampalayam, S., Chanderbali, A. S., Landherr, L., Ralph, P. E., Tomsho, L.P., Hu, Y. Liang, H. Soltis, P.S., Soltis, D. E., Clifton, S. W., Schlarbaum, S. E., Schuster, S. C., Ma, H., Leebens-Mack, J., Depamphilis, C. W. (2011) Ancestral polyploidy in seed plants and angiosperms. Nature, 473: 97–100. doi:10.1038/nature09916
-
Kuo, J. (2013) Chromosome numbers of the Australian Cymodoceaceae. Plant Syst. Evol., 299: 1443–1448. doi:10.1007/s00606-013-0806-x
-
Lynch, M. (2007) The frailty of adaptive hypotheses for the origins of organismal complexity. Proc. Natl Acad. Sci. USA, 104: 8597–8604. doi:10.1073/pnas. 0702207104
-
Marba, Á.N., Duarte, C.M. (1997) Interannual changes in seagrass (Posidonia oceanica) growth and environmental change in the Spanish Mediterranean littoral zone. Limnol. Oceanogr., 42 (5): 8002810.
-
Marbà, N., Duarte, C.M., Alexandra, A., Cabaço, S. (2004) How do seagrasses grow and spread? In: Borum, J. et al. (Ed.) European seagrasses: an introduction to monitoring and management. pp. 11-18.
-
Mossé, R.A. (1984) Les ecailles des rhizomes plagiotropes de Posidonia oceanica: étude des variations cycliques. In: Boudouresque, C.F., Jeudy de Grissac, A., Olivier, J. (Eds.), International Workshop on Posidonia oceanica beds, Vol. 1. GIS Posidonie Publ., Marseille, France, pp. 217–226.
-
Mosse, R.A. (1984) Recherches lepidochronologiques sur Posidonia oceanica: Rhizomes plagiotropes et orthotropes des herbiers profonds de Port-Cros (Mediterranée, France). Trav. Sci. Pare Nat. Port-Cros, 10: 87–107.
-
Mostafa, H.M., Halim, Y. (1995) Phenology, rhizome growth rate and rhizome production of Posidonia oceanica (L.) Delile along a depth gradient: preliminary approach using lepidochronology. Mar. Life, 5 (1):19227.
-
Ohno, S. (1970) Evolution by gene duplication. Berlin, Germany: Springer-Verlag.
-
Ott, J.A. (1980) Growth and production in Posidonia oceanica (L.) Delile. P.S.Z.N. I: Mar. Ecol. 1: 47–64.
-
Peirano, A. (2002) Lepidochronology and internodal length methods for studying Posidonia oceanica growth: are they compatible? Aquatic Botany, 74 (2):175-180, https://doi.org/10.1016/S0304-3770(02)00078-5.
-
Pergent, G. (1987) Recherches lepidichronologiques chez Posidonia oceanica (Potamogetonaceae). Fluctuations des parametres anatomiques et morphologiques des e Âcailles des rhizomes. The Áse Doct. Oce Âanol., Univ. Aix Marseille II. 853 pp.
-
Pergent, G. (1990) Lepidochronological analyses of the seagrass Posidonia oceanica (L.) Delile: a standardized approach. Aquat. Bot., 37: 39–54.
-
Pergent, G., Boudouresque, C.F., Crouzet, A., Meinesz, A. (1989) Cyclic changes along Posidonia oceanica rhizomes (lepidochronology): present state and perspectives. P. S. Z N.I: Mar. Ecol., 10 (3): 2212230.
-
Pergent, G., Pergent-Martini, C. (1990) Some applications of lepidochronological analysis in the seagrass Posidonia oceanica. Bot. Mar., 33: 299-310.
-
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