Expanding our knowledge of Synurales (Chrysophyceae) in Florida, United States: Proposing three novel Mallomonas taxa
Jazyk angličtina Země Spojené státy americké Médium print-electronic
Typ dokumentu časopisecké články
Grantová podpora
e-INFRA 90254
Ministry of Education, Youth and Sports of the Czech Republic
23-06881S
Czech Science Foundation
260723
Charles University Science Foundation
PubMed
40728039
PubMed Central
PMC12547635
DOI
10.1111/jpy.70062
Knihovny.cz E-zdroje
- Klíčová slova
- Florida, Synurales, adaptation, biodiversity hotspot, electron microscopy, new species, phylogeny, siliceous scales, taxonomy,
- MeSH
- biodiverzita * MeSH
- fylogeneze MeSH
- sekvenční analýza DNA MeSH
- transmisní elektronová mikroskopie MeSH
- Publikační typ
- časopisecké články MeSH
- Geografické názvy
- Florida MeSH
We conducted a survey of Synurales diversity in Florida (United States), focusing on two established hotspots-Ocala National Forest and Myakka River State Park-and two previously unexplored sites-Manatee Lake and Lake Lee. Using transmission electron microscopy (TEM), we identified 69 species, increasing the total number recorded from Florida to 90. Among these, three species-Mallomonas cornea sp. nov., M. laureana sp. nov., and M. joergenii sp. nov.-have been newly described based on detailed morphological and molecular analyses. We have also proposed a new combination, M. poseidonii comb. et stat. nov., and established a new section, Corneae sect. nov., based on molecular phylogenetics. Our findings revealed an independent emergence of ribbed scale shield ornamentation in M. joergenii sp. nov. and suggested that internal scale reticulation in M. laureana sp. nov. may be an adaptation to high UV irradiance in tropical environments. This study underscores the value of DNA sequence data in resolving taxonomic ambiguities, elucidating evolutionary patterns, and enhancing species recovery from type localities.
Faculty of Science Department of Botany Charles University Prague Czech Republic
Faculty of Science Humanities and Education Technical University of Liberec Liberec Czech Republic
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Adl, S. M. , Bass, D. , Lane, C. E. , Lukeš, J. , Schoch, C. L. , Smirnov, A. , Agatha, S. , Berney, C. , Brown, M. W. , Burki, F. , Cárdenas, P. , Čepička, I. , Chistyakova, L. , Del Campo, J. , Dunthorn, M. , Edvardsen, B. , Eglit, Y. , Guillou, L. , Hampl, V. , … Zhang, Q. (2019). Revisions to the classification, nomenclature, and diversity of eukaryotes. Journal of Eukaryotic Microbiology, 66(1), 4–119. 10.1111/jeu.12691 PubMed DOI PMC
Andersen, R. A. (1987). Synurophyceae classis nov., a new class of algae. American Journal of Botany, 74(3), 337–353. 10.1002/j.1537-2197.1987.tb08616.x DOI
Andersen, R. A. , Graf, L. , Malakhov, Y. , & Yoon, H. S. (2017). Rediscovery of the DOI
Barreto, S. (2001). Three new DOI
Blumthaler, M. , Ambach, W. , & Ellinger, R. (1997). Increase in solar UV radiation with altitude. Journal of Photochemistry and Photobiology B: Biology, 39(2), 130–134. 10.1016/S1011-1344(96)00018-8 DOI
Caron, D. A. , & Countway, P. D. (2009). Hypotheses on the role of the protistan rare biosphere in a changing world. Aquatic Microbial Ecology, 57(3), 227–238. 10.3354/ame01352 DOI
Carty, S. , & Wujek, D. E. (2003). A new species of
Cavalier‐Smith, T. (2004). Only six kingdoms of life. Proceedings of the Royal Society B: Biological Sciences, 271(1545), 1251–1262. 10.1098/rspb.2004.2705 PubMed DOI PMC
Čertnerová, D. , Čertner, M. , & Škaloud, P. (2019). Molecular phylogeny and evolution of phenotype in silica‐scaled chrysophyte genus PubMed DOI
Dillard, G. E. (2007). Freshwater algae of the southeastern United States part 8: Chrysophyceae, Xanthophyceae, Cryptophyceae and Dinophyceae. Gebrüder Borntraeger Verlag.
Dürrschmidt, M. (1983). Three new species of DOI
Gavrilova, O. V. , Nogina, N. V. , & Voloshko, L. N. (2005). Scale structures and growth characteristics of
Guiry, M. D. , & Guiry, G. M. (2024). AlgaeBase. World‐Wide Electronic Publication, National University of Ireland. https://www.algaebase.org; searched on 29 November 2024.
Gusev, E. , Ignatenko, M. , & Yatsenko‐Stepanova, T. (2024). DOI
Gusev, E. , Kapustin, D. , Martynenko, N. , & Kulikovskiy, M. (2022). Diversity of silica‐scaled Chrysophytes (Stramenopiles: Chrysophyceae) from Indonesian Papua. Diversity, 14(9), 726. 10.3390/d14090726 DOI
Gusev, E. , & Martynenko, N. (2022). Diversity of silica‐scaled chrysophytes in Central Vietnam. Water, 14(1), 65. 10.3390/w14010065 DOI
Gusev, E. , Martynenko, N. , Shkurina, N. , Huan, P. T. , Dien, T. D. , & Thanh, N. T. H. (2023). An annotated checklist of algae from the order Synurales (Chrysophyceae) of Viet Nam. Diversity, 15(2), 183. 10.3390/d15020183 DOI
Gusev, E. , Shkurina, N. , & Huan, P. T. (2023). DOI
Gusev, E. S. (2012). A new species of the genus Mallomonas (Synurophyceae), DOI
Gusev, E. S. , Kapustin, D. A. , Doan‐Nhu, H. , & Nguyen‐Ngoc, L. (2016). Two new species of the genus DOI
Gusev, E. S. , & Kulikovskiy, M. S. (2020). Two new species of genus DOI
Gusev, E. S. , Martynenko, N. A. , Podunay, Y. A. , & Kuzmin, D. V. (2024). Morphology, phylogenetic position and distribution of DOI
Hao, J. , Nan, F. , Lü, J. , Liu, Q. , Liu, X. , Xie, S. , & Feng, J. (2024). Morphology and phylogenetic placement of DOI
Jadrná, I. , Siver, P. A. , & Škaloud, P. (2021). Morphological evolution of silica scales in the freshwater genus PubMed DOI
Kapustin, D. A. , Gusev, E. S. , & Kulikovskiy, M. S. (2019). DOI
Katoh, K. , & Standley, D. M. (2013). Mafft multiple sequence alignment software version 7: Improvements in performance and usability. Molecular Biology and Evolution, 30, 772–780. 10.1093/molbev/mst010 PubMed DOI PMC
Knotek, P. , & Škaloud, P. (2023). The effect of patterned structures on the mechanical resistance of microscopic silica scales. Fottea, 23(2), 190–200. 10.5507/fot.2023.007 DOI
Kristiansen, J. (2002). The genus
Li, H. , & Durbin, R. (2009). Fast and accurate short read alignment with burrows–wheeler transform. Bioinformatics, 25, 1754–1760. 10.1093/bioinformatics/btp324 PubMed DOI PMC
Ma, C. X. , & Wei, Y. X. (2013). A new species of the genus DOI
Malavasi, V. , Pusztai, M. , Jadrná, I. , Škvorová, Z. , & Škaloud, P. (2024). Morphological diversity and phylogeny of the palmelloid chrysophyte genera DOI
Martynenko, N. A. , Shkurina, N. A. , & Gusev, E. S. (2024). Description of the new species DOI
Němcová, Y. , Knotek, P. , Jadrná, I. , Černajová, I. , & Škaloud, P. (2024). Nanopatterns on silica scales of PubMed DOI
Němcová, Y. , Kreidlová, J. , Kosová, A. , & Neustupa, J. (2012). Lakes and pools of Aquitaine region (France)–a biodiversity hotspot of Synurales in Europe. Nova Hedwigia, 95(1–2), 1–24. 10.1127/0029-5035/2012/0036 DOI
Němcová, Y. , Neustupa, J. , Kvíderová, J. , & Řezáčová‐Škaloudová, M. (2010). Morphological plasticity of silica scales of DOI
Němcová, Y. , & Pichrtová, M. (2012). Shape dynamics of silica scales (Chrysophyceae, Stramenopiles) associated with pH. Fottea, Olomouc, 12(2), 281–291. 10.5507/fot.2012.020 DOI
Neustupa, J. , & Němcová, Y. (2007). A geometric morphometric study of the variation in scales of DOI
Piątek, J. (2015). DOI
Piątek, J. , & Łukaszek, M. (2016). DOI
Pinseel, E. , Sabbe, K. , Verleyen, E. , & Vyverman, W. (2024). A new dawn for protist biogeography. Global Ecology and Biogeography, 33, e13925. 10.1111/geb.13925 DOI
Pollman, C. D. , & Canfield, D. E., Jr. (1991). Florida. In Charles D. F. (Ed.), Acidic deposition and aquatic ecosystems (pp. 365–416). Springer‐Verlag.
Pusztai, M. , & Škaloud, P. (2019). Elucidating the evolution and diversity of DOI
Ronquist, F. , Teslenko, M. , Van Der Mark, P. , Ayres, D. L. , Darling, A. , Höhna, 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. 10.1093/sysbio/sys029 PubMed DOI PMC
Safronova, T. V. , Gusev, E. S. , & Thi, L. N. (2024). Description of the new species DOI
Schindelin, J. , Arganda‐Carreras, I. , Frise, E. , Kaynig, V. , Longair, M. , Pietzsch, T. , Preibisch, S. , Rueden, C. , Saalfeld, S. , Schmid, B. , & Tinevez, J. Y. (2012). Fiji: An open‐source platform for biological‐image analysis. Nature Methods, 9(7), 676–682. 10.1038/nmeth.2019 PubMed DOI PMC
Siver, P. A. (1989). The separation of
Siver, P. A. (1991). The biology of Mallomonas: Morphology, taxonomy and ecology. Kluwer Academic Publishers.
Siver, P. A. (1994). DOI
Siver, P. A. (1999). Morphological observations of Synurophycean algae from some acidic habitats, including the description of a sub‐specific taxon. Nordic Journal of Botany, 19(1), 121–127. 10.1111/j.1756-1051.1999.tb01908.x DOI
Siver, P. A. (2002a). Two new species of DOI
Siver, P. A. (2002b). Two new taxa in the section DOI
Siver, P. A. , & Lott, A. M. (2006). Further observations on the scaled Chrysophycean and Synurophycean flora of the Ocala National Forest, Florida, U.S.A. Nordic Journal of Botany, 24(2), 211–233. 10.1111/j.1756-1051.2004.tb00835.x DOI
Siver, P. A. , & Lott, A. M. (2012). Fossil species of DOI
Siver, P. A. , & Skogstad, A. (1988). Morphological variation and ecology of DOI
Siver, P. A. , Skogstad, A. , & Němcova, Y. (2019). Endemism, palaeoendemism and migration: The case for the ‘European endemic’, DOI
Siver, P. A. , & Wujek, D. E. (1993). Scaled Chrysophyceae and Synurophyceae from Florida: IV. The flora of lower Lake Myakka and Lake Tarpon. Florida Scientist, 56(2), 109–117. http://www.jstor.org/stable/24320611
Siver, P. A. , & Wujek, D. E. (1999). Scaled Chrysophyceae and Synurophyceae from Florida, USA: VI. Observations on the flora from waterbodies in the Ocala National Forest. Nova Hedwigia, 68(1), 75–92. 10.1127/nova.hedwigia/68/1999/75 DOI
Škaloud, P. , Kristiansen, J. , & Škaloudová, M. (2013). Developments in the taxonomy of silica‐scaled chrysophytes – From morphological and ultrastructural to molecular approaches. Nordic Journal of Botany, 31(4), 385–402. 10.1111/j.1756-1051.2013.00119.x DOI
Škaloud, P. , Škaloudová, M. , Jadrná, I. , Bestová, H. , Pusztai, M. , Kapustin, D. , & Siver, P. A. (2020). Comparing morphological and molecular estimates of species diversity in the freshwater genus PubMed DOI
Stamatakis, A. (2014). RAxML version 8: A tool for phylogenetic analysis and post‐analysis of large phylogenies. Bioinformatics, 30, 1312–1313. 10.1093/bioinformatics/btu033 PubMed DOI PMC
Vigna, M. S. , & Kristiansen, J. (2005). DOI
Weisse, T. (2017). Functional diversity of aquatic ciliates. European Journal of Protistology, 61, 331–358. 10.1016/j.ejop.2017.04.001 PubMed DOI
Whelden, R. M. (1941). Some observations on freshwater algae of Florida. Journal of the Elisha Mitchell Scientific Society, 57(2), 261–272. https://www.jstor.org/stable/24332908
Wujek, D. E. (1983). A new fresh‐water species of DOI
Wujek, D. E. (1984). Chrysophyceae (Mallomonadaceae) from Florida. Florida Scientist, 47(3), 161–170.
Wujek, D. E. , & Bland, R. G. (1988). DOI
Wujek, D. E. , & Bland, R. G. (1991). Chrysophyceae (Mallomonadaceae and Paraphysomonadaceae) from Florida. III. Additions to the flora. Florida Scientist, 54(1), 41–48.
Wujek, D. E. , Cook, J. L. , & Wright, E. M. (2004). Identification, ecology, and distribution of silica‐scale bearing chrysophytes from the Carolinas. III. Coastal plain region. Journal of the North Carolina Academy of Science, 120(1), 1–25.
Wujek, D. E. , & De Bicudo, C. E. (1993). Scale‐bearing chrysophytes from the state of Sao Paulo, Brazil. Nova Hedwigia, 56(1–2), 247–257. PubMed
Wujek, D. E. , & Moghadan, L. S. (2001). Scaled chrysophytes from Florida. VII. Observations on the flora from the southeast. Florida Scientist, 64(4), 274–282.
Wujek, D. E. , & Siver, P. A. (1997). Studies on Florida Chrysophyceae (Paraphysomonadaceae) and Synurophyceae (Mallomonadaceae). V. The flora of north‐central Florida. Florida Scientist, 60(1), 21–27. http://www.jstor.org/stable/24320736