BibTex RIS Cite

Mycorrhizal diversity in some species of Dactylorhiza genus Orchidaceae

Year 2017, Volume: 10 Issue: 1, 55 - 64, 15.04.2017

Abstract

The research was designed to identify the mycorrhizal fungi of four of eleven species of Dactylorhiza in Turkey. To isolate and identify of mycorrhizal fungi of Dactylorhiza euxina var euxina, D. osmanica var. osmanica endemic , D. romana subsp. romana and D. urvilleana, the roots of them were collected from three habitats of Black sea region. In additon to, to determine the relationship between color polymorphysim flowers of D. romana subsp. romana and mycorrhizal diversity, the isolations were done from the roots of the pink and yellow flowering individuals of D. romana subsp. romana separately. The isolates were characterized via morphological and molecular methods. For molecular identification, the fungal DNA were extracted from purified fungal culture and fungal ITS regions were PCR amplified using the primer pairs ITS1 and ITS4 and sequenced. Phylogenetic analysis revealed that the majority of Dactylorhiza mycorrhizal fungi are Tulasnellaceae and Ceratobasidiaceae belonging to Basidiomycota. Interestingly, Verpa conica verpa, a member of Morchellaceae, in individual pink flowering plants of D. romana subsp. romana was also found. Tulasnella bifrons were shared by plants of D.euxina var. euxina, D. osmanica var. osmanica and D. urvilleana. Fungal partners of Dactylorhiza species in wet meadows belong to Tulasnellaceae, those of under Quercus scrubs and on the wet forest margins are Ceratobasidiaceae, Morchellaceae and Tulasnellaceae, respectively. These results may indicate that fungal partner s of orchids may vary depending on habitat

References

  • Bandoni, R. J. (1979). Safranin O as a Rapid Nuclear Stain for Fungi. Mycologia, 71, 873-874.
  • Bidartondo, M. I., Burghardt, B., Gebauer, G., Bruns, T. D., Read, D. J.( 2004). Changing partners in the dark: isotopic and molecular evidence of ectomycorrhizal liaisons betweenforest orchids and trees. Proceedings of the Royal Society of London Series B– Biological Sciences, 271, 1799–1806.
  • Clements, M. A., Muir, H., Cribb, P. J. (1985). A preliminary report on the symbiotic germination of European terrestrial orchids. Kew Bulletin, 41, 437-445.
  • Currah, R. S., Zettler, I. W., McInnis, T. M. (1997). Epulorhiza inquilina sp. nov. from Plantanthera (Orchidaceae) and a key to Epulorhiza species. Mycotaxon, 61, 335–342.
  • Dearnaley, J. D.W. (2007). Further advances in orchid mycorrhizal research. Mycorrhiza, 17, 475–486.
  • Dearnaley, J. D.W., Martos, F., Selosse, M. A. (2012). Orchid mycorrhizas: molecular ecology, physiology, evolution, and conservation aspects, in Fungal associations, Berlin: Springer.
  • Doyle, J. J. (1991). DNA protocols for plants – CTAB total DNA isolation, in Molecular techniques in taxonomy, edited byHewitt G M & Johnston A, (Springer-Verlag, Berlin) 283–293.
  • Dressler, R. (1981). The orchids – natural history and classification, Cambridge: Harvard University Press.
  • Girlanda, M., Selosse, M. A., Cafasso, D., Brilli, F., Delfine, S., Fabbian, R., Ghignone, S., Pinelli, P., Segreto, R., Loreto, F., Cozzolino, S., Perotto, S. (2006). In efficient photosynthesis in the Mediterranean orchid Limodorum abortivum is mirrored by specific association to ectomycorrhizal Russulaceae. Molecular Ecolology, 15, 491-504.
  • Guner, A. (2012). The List of Turkey Plants (Vascular Plants). İstanbul: Namaş.
  • Illyés, Z., Ouanphanivanh, N., Rudnóy, Sz., Orczán, Á.,. Bratek, Z. (2010). The most recent results on orchid mycorrhizal fungi in Hungary. Acta Biologica Hungarica, 61, 68-76.Jacquemyn, H., Brys, R., Cammue, B.P. A., Honnay, O., Lievens, B. (2011). Mycorrhizal associations and reproductive isolation in three closely related Orchis species. Annual Botany, 107, 347–356.
  • Jacquemy, H., Brys, R., Honnay, O., Roldán-Ruiz, I., Lievens, B., Wiegand, T. (2012b). Non-random spatial structuring of orchids in a hybrid zone of three Orchis species. New Phytologist, 193, 454–464.
  • Jacquemyn, H., Brys, R., Merckx, V. S. F. T., Waud, M., Lievens, B., Wiegand, T. (2014). Coexisting orchid species have distinct mycorrhizal communities and display strong spatial segregation. New Phytologist, 202, 616–627.
  • Karaca, G. H., Ozkoc, I., Erpe, I. (2002). Determination of the anastomosis grouping and virulence of Rhizoctonia solani Kühn Isolates associated with bean plants grown in Samsun/Turkey. Pakistan. J. Biol. Sci., 5: 434-437.
  • Kristiansen, K. A., Taylor, D. L., Kjoller, R., Rasmussen, H. N., Rosendahl, S. (2001). Identification of mycorrhizal fungi from single pelotons of Dactylorhiza majalis (Orchidaceae) using single strand conformation polymorphism and mitochondrial ribosomal large subunit DNA sequences. Molecular Ecology, 10, 2089–2093.
  • McCormick, M. K, Whigham, D. F., O’Neill, J. (2004). Mycorrhizal diversity in photosynthetic terrestrial orchids. New Phytologist, 163, 425–438.
  • McCormick, M. K, Whigham, D. F., O’Neill, J. P., Becker, J. J., Werner, S., Bruns, T. D., Taylor, D. L. (2009).
  • Abundance of Corallorhiza odontorhiza (Orchidaceae) within an established population reflects abundance of ectomycorrhizal root tips and fungal community composition. Ecological Monographs, 79, 619–635.
  • Pascual, C. B., Toda, T., Raymondo, A. D., Hyakumachi, M. (2000). Characterization by conventional techniques and PCR of Rhizoctonia solani isolates causing banded leaf sheath blight in maize. Plant Pathology, 49, 108-118.
  • Pellegrino, G., Bellusci, F. (2009). Molecular identification of mycorrhizal fungi in Dactylorhiza sambucina (Orchidaceae). Biologia, 64, 893-897.
  • Rasmussen, H. N. (1995). Terrestrial orchids: From seed to mycotrophic plant, Cambridge: Cambridge University Press.
  • Rasmussen, H. N., Whigham, D. F. (2002). Phenology of roots and mycorrhizae in orchid species differing in phototrophic strategy. New Phytologist, 154, 797-807.
  • Rasmussen, H. N., Rasmussen, F. N. (2009). Orchid mycorrhiza: implications of a mycophagous life style. Oikos, 118, 334–345.
  • Rasmussen, H. N., Rasmussen, F. N. (2014). Seedling mycorrhiza: a discussion of origin and evolution in Orchidaceae. Botanical Journal of Linnean Society, 175, 313–327.
  • Rasmussen, H. N. 2002. Recent developments in the study of orchid mycorrhiza. Plant Soil, 244, 149–163.
  • Ronquist, F., Teslenko, M., Van Der Mark, P., Ayres, D. L., Darling, A., Höhne, S., Larget, B., Liu, L., Suchard, M. A., Huelsenbeck, J. P. (2012). MrBayes 3.2: Efficient Bayesian Phylogenetic Inference and Model Choice Across a Large Model Space. Systematic. Biology, 61, 539–542.
  • Selosse, M. A., Faccio, A., Scappaticci, G., Bonfante, P. (2004). Chlorophyllous and achlorophyllous specimens of Epipactis microphylla (Neottieae, Orchidaceae) are associated with ectomycorrhizal septomycetes, including truffles. Microbial Ecology, 47, 416–426.
  • Shefferson, R. P., Kull, T., Tali, K. (2008). Mycorrhizal interactions of orchids colonizing Estonian mine tailings hills. American Journal of Botany, 95, 156–164.
  • Stark, C., Babık, W., Durka, W. (2009). Fungi from the roots of the common terrestrial orchid Gymnadenia conopsea. Mycological Research, 113, 952-959.
  • Taylor, D. L., Bruns, T. D., Szaro, T. M., Hodges, S. A. (2003). Divergence in mycorrhizal specialization within Hexalectris spicata (Orchidaceae), a nonphotosynthetic desert orchid. American. Journal of Botany, 90, 1168– 1179.
  • Taylor, D. L., McCormick, M. K. (2008). Internal transcribed spacer primers and squnces for improved characterization of Basidiomycetous orchid mycorrhizas. New Phytologist, 177, 1020-1033.
  • Thompson, J. D., Gibson, T. J., Plewniak, F., Jeanmougin, F., Higgins, D. G. (1997). The Clustal X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools. Nucleic Acids Research, 25, 4876–4882.
  • Türkiş, S., Ertürk, Ö. (2015). Distribution of Orchid species in urban and meadow areas of Bartın city (Turkey). Biological Diversity and Conservation, 8, 147-152.
  • Waud, M., Busscheart, P., Lievens, B., Jacquemyn, H. (2016). Specificity and localised distribution of mycorrhizal fungi in the soil may contribute to co-existence of orchid species. Fungal Ecology, 20, 155-165.
  • White, T. J., Bruns, T., Lee, S., Taylor, J. W. (1990). Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics, in PCR protocols: a guide to methods and applications, New York: Academic Press.
  • Xing, X., Gai, X., Liu, Q., Hart, M. M., Guo, S. (2015). Mycorrhizal fungal diversity and community composition in a lithophytic and epiphytic orchid. Mycorrhiza, 25, 289–296.
  • Yukawa, T., Ogura-Tsujita, Y., Shefferson, R. P., Yokoyama, J. (2009). Mycorrhizal diversity in Apostasia (Orchidaceae) indicates the origin and evolution of orchid mycorrhiza. American Journal of Botany, 96, 1997– 2009.
  • Zettler, L. W., Sharma, J., Rasmussen, F. (2004). Mycorrhizal diversity, In Orchid Conservation Malaysia: Natural History Publications.

Dactylorhiza cinsine Orchidaceae dahil bazı türlerin mikorizal çeşitliliği

Year 2017, Volume: 10 Issue: 1, 55 - 64, 15.04.2017

Abstract

Bu araştırma, Türkiye’deki onbir Dactylorhiza türünden dördünün mikorizal çeşitliliğini belirlemek için yapılmıştır. Dactylorhiza euxina var euxina, D. osmanica var. osmanica endemic , D. romana subsp. romana ve D. urvilleana türlerinin mikorizal funguslarını izole etmek ve tanımlamak için, bu türlerin kökleri Karadeniz Bölgesinde üç farklı habitatdan toplanmıştır. Buna ilave olarak, D. romana subsp. romana’nın çiçeklerindeki renk polimorfizmi ve fungal çeşitlilik arasındaki ilişkiyi belirlemek için sarı ve pembe çiçekli bireylerin köklerinden ayrı ayrı izolasyonlar yapılmıştır. İzolatlar morfolojik ve moleküler yöntemlerle tanımlanmıştır. Moleküler tanımlama için, saf fungus kültüründen DNA ekstrakte edildi ve fungal ITS bölgeleri, ITS1 ve ITS 4 primer zincirleri kullanılarak PCR ile çoğaltılıp sekansları yapılmıştır. Filogenetik analizler, Dactylorhiza türlerinin mikorizal funguslarının çoğunluğunun Basidiomycota’ya ait Tulasnellaceae ve Ceratobasidiaceae familyalarından olduğunu ortaya koydu. İlginç olarak, D. romana subsp. romana’nın pembe çiçekli bireylerinin köklerinde Morchellaceae familyasına ait Verpa conica verpa bulundu. Tulasnella bifrons, D.euxina var. euxina, D. osmanica var. osmanica ve D. urvilleana türlerinin köklerinde ortak olarak bulunmuştur. Bu araştırmanın sonuçlarına göre, nemli çayırlardaki Dactylorhiza türlerinin fungal partnerlerinin Tulasnella’ya, meşe ormanı altındaki ve nemli orman kenarlarındakilerin Ceratobasidiaceae, Morchellaceae ve Tulasnellaceae ‘ye ait oldukları belirlendi. Bu sonuçlar, orkidelerin fungal partnerlerinin habitata bağlı olarak değişebileceğini işaret etmektedir

References

  • Bandoni, R. J. (1979). Safranin O as a Rapid Nuclear Stain for Fungi. Mycologia, 71, 873-874.
  • Bidartondo, M. I., Burghardt, B., Gebauer, G., Bruns, T. D., Read, D. J.( 2004). Changing partners in the dark: isotopic and molecular evidence of ectomycorrhizal liaisons betweenforest orchids and trees. Proceedings of the Royal Society of London Series B– Biological Sciences, 271, 1799–1806.
  • Clements, M. A., Muir, H., Cribb, P. J. (1985). A preliminary report on the symbiotic germination of European terrestrial orchids. Kew Bulletin, 41, 437-445.
  • Currah, R. S., Zettler, I. W., McInnis, T. M. (1997). Epulorhiza inquilina sp. nov. from Plantanthera (Orchidaceae) and a key to Epulorhiza species. Mycotaxon, 61, 335–342.
  • Dearnaley, J. D.W. (2007). Further advances in orchid mycorrhizal research. Mycorrhiza, 17, 475–486.
  • Dearnaley, J. D.W., Martos, F., Selosse, M. A. (2012). Orchid mycorrhizas: molecular ecology, physiology, evolution, and conservation aspects, in Fungal associations, Berlin: Springer.
  • Doyle, J. J. (1991). DNA protocols for plants – CTAB total DNA isolation, in Molecular techniques in taxonomy, edited byHewitt G M & Johnston A, (Springer-Verlag, Berlin) 283–293.
  • Dressler, R. (1981). The orchids – natural history and classification, Cambridge: Harvard University Press.
  • Girlanda, M., Selosse, M. A., Cafasso, D., Brilli, F., Delfine, S., Fabbian, R., Ghignone, S., Pinelli, P., Segreto, R., Loreto, F., Cozzolino, S., Perotto, S. (2006). In efficient photosynthesis in the Mediterranean orchid Limodorum abortivum is mirrored by specific association to ectomycorrhizal Russulaceae. Molecular Ecolology, 15, 491-504.
  • Guner, A. (2012). The List of Turkey Plants (Vascular Plants). İstanbul: Namaş.
  • Illyés, Z., Ouanphanivanh, N., Rudnóy, Sz., Orczán, Á.,. Bratek, Z. (2010). The most recent results on orchid mycorrhizal fungi in Hungary. Acta Biologica Hungarica, 61, 68-76.Jacquemyn, H., Brys, R., Cammue, B.P. A., Honnay, O., Lievens, B. (2011). Mycorrhizal associations and reproductive isolation in three closely related Orchis species. Annual Botany, 107, 347–356.
  • Jacquemy, H., Brys, R., Honnay, O., Roldán-Ruiz, I., Lievens, B., Wiegand, T. (2012b). Non-random spatial structuring of orchids in a hybrid zone of three Orchis species. New Phytologist, 193, 454–464.
  • Jacquemyn, H., Brys, R., Merckx, V. S. F. T., Waud, M., Lievens, B., Wiegand, T. (2014). Coexisting orchid species have distinct mycorrhizal communities and display strong spatial segregation. New Phytologist, 202, 616–627.
  • Karaca, G. H., Ozkoc, I., Erpe, I. (2002). Determination of the anastomosis grouping and virulence of Rhizoctonia solani Kühn Isolates associated with bean plants grown in Samsun/Turkey. Pakistan. J. Biol. Sci., 5: 434-437.
  • Kristiansen, K. A., Taylor, D. L., Kjoller, R., Rasmussen, H. N., Rosendahl, S. (2001). Identification of mycorrhizal fungi from single pelotons of Dactylorhiza majalis (Orchidaceae) using single strand conformation polymorphism and mitochondrial ribosomal large subunit DNA sequences. Molecular Ecology, 10, 2089–2093.
  • McCormick, M. K, Whigham, D. F., O’Neill, J. (2004). Mycorrhizal diversity in photosynthetic terrestrial orchids. New Phytologist, 163, 425–438.
  • McCormick, M. K, Whigham, D. F., O’Neill, J. P., Becker, J. J., Werner, S., Bruns, T. D., Taylor, D. L. (2009).
  • Abundance of Corallorhiza odontorhiza (Orchidaceae) within an established population reflects abundance of ectomycorrhizal root tips and fungal community composition. Ecological Monographs, 79, 619–635.
  • Pascual, C. B., Toda, T., Raymondo, A. D., Hyakumachi, M. (2000). Characterization by conventional techniques and PCR of Rhizoctonia solani isolates causing banded leaf sheath blight in maize. Plant Pathology, 49, 108-118.
  • Pellegrino, G., Bellusci, F. (2009). Molecular identification of mycorrhizal fungi in Dactylorhiza sambucina (Orchidaceae). Biologia, 64, 893-897.
  • Rasmussen, H. N. (1995). Terrestrial orchids: From seed to mycotrophic plant, Cambridge: Cambridge University Press.
  • Rasmussen, H. N., Whigham, D. F. (2002). Phenology of roots and mycorrhizae in orchid species differing in phototrophic strategy. New Phytologist, 154, 797-807.
  • Rasmussen, H. N., Rasmussen, F. N. (2009). Orchid mycorrhiza: implications of a mycophagous life style. Oikos, 118, 334–345.
  • Rasmussen, H. N., Rasmussen, F. N. (2014). Seedling mycorrhiza: a discussion of origin and evolution in Orchidaceae. Botanical Journal of Linnean Society, 175, 313–327.
  • Rasmussen, H. N. 2002. Recent developments in the study of orchid mycorrhiza. Plant Soil, 244, 149–163.
  • Ronquist, F., Teslenko, M., Van Der Mark, P., Ayres, D. L., Darling, A., Höhne, S., Larget, B., Liu, L., Suchard, M. A., Huelsenbeck, J. P. (2012). MrBayes 3.2: Efficient Bayesian Phylogenetic Inference and Model Choice Across a Large Model Space. Systematic. Biology, 61, 539–542.
  • Selosse, M. A., Faccio, A., Scappaticci, G., Bonfante, P. (2004). Chlorophyllous and achlorophyllous specimens of Epipactis microphylla (Neottieae, Orchidaceae) are associated with ectomycorrhizal septomycetes, including truffles. Microbial Ecology, 47, 416–426.
  • Shefferson, R. P., Kull, T., Tali, K. (2008). Mycorrhizal interactions of orchids colonizing Estonian mine tailings hills. American Journal of Botany, 95, 156–164.
  • Stark, C., Babık, W., Durka, W. (2009). Fungi from the roots of the common terrestrial orchid Gymnadenia conopsea. Mycological Research, 113, 952-959.
  • Taylor, D. L., Bruns, T. D., Szaro, T. M., Hodges, S. A. (2003). Divergence in mycorrhizal specialization within Hexalectris spicata (Orchidaceae), a nonphotosynthetic desert orchid. American. Journal of Botany, 90, 1168– 1179.
  • Taylor, D. L., McCormick, M. K. (2008). Internal transcribed spacer primers and squnces for improved characterization of Basidiomycetous orchid mycorrhizas. New Phytologist, 177, 1020-1033.
  • Thompson, J. D., Gibson, T. J., Plewniak, F., Jeanmougin, F., Higgins, D. G. (1997). The Clustal X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools. Nucleic Acids Research, 25, 4876–4882.
  • Türkiş, S., Ertürk, Ö. (2015). Distribution of Orchid species in urban and meadow areas of Bartın city (Turkey). Biological Diversity and Conservation, 8, 147-152.
  • Waud, M., Busscheart, P., Lievens, B., Jacquemyn, H. (2016). Specificity and localised distribution of mycorrhizal fungi in the soil may contribute to co-existence of orchid species. Fungal Ecology, 20, 155-165.
  • White, T. J., Bruns, T., Lee, S., Taylor, J. W. (1990). Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics, in PCR protocols: a guide to methods and applications, New York: Academic Press.
  • Xing, X., Gai, X., Liu, Q., Hart, M. M., Guo, S. (2015). Mycorrhizal fungal diversity and community composition in a lithophytic and epiphytic orchid. Mycorrhiza, 25, 289–296.
  • Yukawa, T., Ogura-Tsujita, Y., Shefferson, R. P., Yokoyama, J. (2009). Mycorrhizal diversity in Apostasia (Orchidaceae) indicates the origin and evolution of orchid mycorrhiza. American Journal of Botany, 96, 1997– 2009.
  • Zettler, L. W., Sharma, J., Rasmussen, F. (2004). Mycorrhizal diversity, In Orchid Conservation Malaysia: Natural History Publications.
There are 38 citations in total.

Details

Primary Language Turkish
Journal Section Research Article
Authors

Yasemin Ozdener Kompe This is me

Vildan Akın Mutlu This is me

Publication Date April 15, 2017
Published in Issue Year 2017 Volume: 10 Issue: 1

Cite

APA Ozdener Kompe, Y., & Akın Mutlu, V. (2017). Dactylorhiza cinsine Orchidaceae dahil bazı türlerin mikorizal çeşitliliği. Biological Diversity and Conservation, 10(1), 55-64.

❖  Abstracted-Indexed in
Web of Science {Zoological Records Indexed] Clavariate Analytic, Medical Reads (RRS), CrossRef;10.46309/biodicon.

❖ Libraries
Aberystwyth University; All libraries; Bath University; Birmingham University; Cardiff University; City University London; CONSER (Not UK Holdings); Edinburgh University; Essex University; Exeter University; Eskişehir Technical University Library; EZB Electronic Journals Library; Feng Chia University Library; GAZİ Gazi University Library; Glasgow University; HEC-National Digital Library; Hull University; Imperial College London; Kaohsinug Medical University Library; ANKOS; Anadolu University Library; Lancaster University; Libros PDF; Liverpool University; London Metropolitan University; London School of Economics and Political Science; Manchester University; National Cheng Kung University Library; National ILAN University Library; Nottingham University; Open University; Oxford University; Queen Mary,University of London;Robert Gordon University; Royal Botanic Gardens, Kew; Sheffield Hallam University; Sheffield University; Shih Hsin University Library; Smithsonian Institution Libraries; Southampton University; Stirling University; Strathclyde University; Sussex University; The National Agricultural Library (NAL); The Ohio Library and Information NetWork; Trinity College Dublin; University of Washington Libraries; Vaughan Memorial Library; York University..

❖ The article processing is free.

❖ Web of Science-Clarivate Analytics, Zoological Record
❖ This journal is a CrossRef;10.46309/biodicon. member

❖ Please visit ” http:// www.biodicon.com“ ; "https://dergipark.org.tr/en/pub/biodicon"   for instructions about articles and all of the details about journal


❖  Correspondance Adres: Prof. Ersin YÜCEL, Sazova Mahallesi, Ziraat Caddesi, No.277 F Blok, 26005 Tepebaşı-Eskişehir/Türkiye
E-posta / E-mail: biodicon@gmail.com;
Web Address: http://www.biodicon.com;   https://dergipark.org.tr/en/pub/biodicon
❖ Biological Diversity and Conservation/ Biyolojik Çeşitlilik ve Koruma
❖ ISSN 1308-5301 Print; ISSN 1308-8084 Online
❖ Start Date Published 2008
© Copyright by Biological Diversity and Conservation/Biyolojik Çeşitlilik ve Koruma-Available online at www.biodicon.com/All rights reserved
Publisher : ERSİN YÜCEL (https://www.ersinyucel.com.tr/)
❖ This journal is published three numbers in a year. Printed in Eskişehir/Türkiye.
❖ All sorts of responsibilities of the articles published in this journal are belonging to the authors
Editör / Editor-In-Chief : Prof.Dr. Ersin YÜCEL, https://orcid.org/0000-0001-8274-7578