Published April 4, 2024 | Version v1

Morphology and phylogeny of Nitzschia nandorii sp. nov. (Bacillariophyceae), a new small-celled lanceolate species from a post-mining reservoir

  • 1. Universit´e Savoie-Mont Blanc, Thonon les Bains, France|University of Lodz, Łódź, Poland
  • 2. University of Lodz, Łódź, Poland
  • 3. Universit´e Savoie-Mont Blanc, Thonon les Bains, France
  • 4. University of Rzeszów, Rzeszów, Poland

Description

Post-mining reservoirs are distinguished by characteristic environmental conditions where specific diatom communities can be observed. Reservoirs created as a part of the reclamation plan after human mining activities are marked by unique chemical and physical water parameters. In the course of research on the diatoms from Bogdałów reservoir, we examined the taxonomic and morphological diversity of Nitzschia taxa from the section Lanceolatae occurring in a post-mining lignite reservoir. Our study describes a new species of Nitzschia from a post-mining reservoir, Nitzschia nandorii Olszyński, Zakrzewski & Żelazna-Wieczorek, sp. nov. Morphometry and morphology analyses of new species were performed with light and scanning electron microscopy. Chloroplast morphology analysis was conducted with differential interference contrast microscopy and confocal laser scanning microscopy. Molecular data from SSU 18S, rbcL and psbC sequences were obtained from cultures of this taxon. Differential diagnosis of Nitzschia nandorii Olszyński, Zakrzewski & Żelazna-Wieczorek, sp. nov. with co-occurring taxa: N. lacuum and N. alpinobacillum was performed using morphological traits and nMDS analysis of the valves' morphometry.

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References

  • Bagmet VB, Abdullin SR, Nikulin AY, Nikulin VY, Gontcharov AA (2022) Biology, Genetic Diversity, and Ecology of Nitzschia acidoclinata Lange-Bertalot (Bacillariophyta). Diversity 14(12): 1133. https://doi.org/10.3390/d14121133
  • CEMAGREF (1982) Etude des methodes biologiques quantitatives d'appreciation de la qualite des eaux. Rapport Division Qualite des Eaux Lyon – Agence financiere de Bassin Rhone – Mediterranee – Corse, Pierre-Benite, 28.
  • Cleve PT, Grunow A (1880) Beiträge zur Kenntniss der arctischen Diatomeen. Kongliga Svenska Vetenskaps-Akademiens Handlingar 17: 1–121.
  • Coste M, Boutry S, Tison-Rosebery J, Delmas F (2009) Improvements of the Biological Diatom Index (BDI): Description andefficiency of the new version (BDI-2006). Ecological Indicators 9(4): 621–650. https://doi.org/10.1016/j.ecolind.2008.06.003
  • Dąbek P, Ashworth MP, Witkowski A, Li C, Bornman TG, Gonçalves V, Park J, Khim JS (2017) Towards a multigene phylogeny of the Cymatosiraceae (Bacillariophyta, Mediophyceae) I: Novel taxa within the subfamily Cymatosiroideae based on molecular and morphological data. Journal of Phycology 53(2): 342–360. https://doi.org/10.1111/jpy.12501
  • Grunow A (1881) Über die Arten der Gattung Grammatophora mit Bezug auf die Tafeln LIII und LIIIB in Van Heurck's Synopsis der belgischen Diatomeen. Botanisches Centralblatt 7: 1–15.
  • Guiry GM (2023) AlgaeBase. World-wide electronic publication, National University of Ireland, Galway. https://www.algaebase.org [searched on 15 November 2023]
  • Hassall AH (1845) A history of the British freshwater algae (including descriptions of the Desmideae and Diatomaceae) with upwards of one hundred plates. I. Text. Taylor, Walton, and Maberly, London, 462 pp.
  • Hoang DT, Chernomor O, Von Haeseler A, Minh BQ, Vinh LS (2018) UFBoot2: Improving the Ultrafast Bootstrap Approximation. Molecular Biology and Evolution 35(2): 518–522. https://doi.org/10.1093/molbev/msx281
  • Katoh K, Rozewicki J, Yamada KD (2019) MAFFT online service: Multiple sequence alignment, interactive sequence choice and visualization. Briefings in Bioinformatics 20(4): 1160–1166. https://doi.org/10.1093/bib/bbx108
  • Kawai H, Hanyuda T, Draisma SGA, Wilce RT, Andersen RA (2015) Molecular phylogeny of two unusual brown algae, Phaeostrophion irregulare and Platysiphon glacialis, proposal of the Stschapoviales ord. nov. and Platysiphonaceae fam. nov., and a re-examination of divergence times for brown algal orders. Journal of Phycology 51(5): 918–928. https://doi.org/10.1111/jpy.12332
  • Krammer K, Lange-Bertalot H (1997) Bacillariophyceae. 2 Teil: Bacillariaceae, Epithemiaceae, Surirellaceae. In: Ettl H, Gerloff J, Heynig H, Mollenhauer D (Eds) Süsswasserflora von Mitteleuropa. Spektrum, Akad. Verlag, Jena, 1–610.
  • Lanfear R, Frandsen PB, Wright AM, Senfeld T, Calcott B (2016) PartitionFinder 2: New methods for selecting partitioned models of evolution for molecular and morphological phylogenetic analyses. Molecular Biology and Evolution 34: 772–773. https://doi.org/10.1093/molbev/msw260
  • Lange-Bertalot H (1976) Eine Revision zur Taxonomie der Nitzschiae lanceolatae Grunow. Die "klassischen" bis 1930 beschribenen Süsswasserarten Europas. Nova Hedwigia 28: 253–307.
  • Lange-Bertalot H (1980) New species, combinations and synonyms in the genus Nitzschia. Bacillaria 3: 41–78.
  • Lange-Bertalot H (1993) 85 neue Taxa und über 100 weitere neu definierte Taxa ergänzend zur Süsswasserflora von Mitteleuropa, Vol. 2/1–4. In: Lange-Bertalot H (Ed.) Bibliotheca Diatomologica. Gebrüder Borntraeger Verlag, Berlin, Stuttgart, 1–454.
  • Lange-Bertalot H, Metzeltin D (1996) Indicators of Oligotrophy. 800 taxa representative of three ecologically distinct lake types Carbonate buffered – Oligodystrophic – Weakly buffered soft water. In: Lange-Bertalot H (Ed.) Iconographia Diatomologica Vol. 2. Koeltz Scientific Books, Königstein, 1–390.
  • Lange-Bertalot H, Hofmann G, Werum M, Cantonati M, Kelly MG (2017) Freshwater benthic diatoms of Central Europe: Over 800 common species used in ecological assessment. Koeltz Botanical Books, 1–942.
  • Mann DG, Trobajo R, Sato S, Li C, Witkowski A, Rimet F, Ashworth MP, Hollands RM, Theriot EC (2021) Ripe for reassessment: A synthesis of available molecular data for the speciose diatom family Bacillariaceae. Molecular Phylogenetics and Evolution 158: 106985. https://doi.org/10.1016/j.ympev.2020.106985
  • Morales EA, Vis ML (2007) Epilithic Diatoms (Bacillariophyceae) from Cloud Forest and Alpine Streams in Bolivia, South America. Proceedings. Academy of Natural Sciences of Philadelphia 156(1): 123–155. https://doi.org/10.1635/0097-3157(2007)156[123:EDBFCF]2.0.CO;2
  • Olszyński RM, Żelazna-Wieczorek J (2018) Aulacoseira pseudomuzzanensis sp. nov. and other centric diatoms from post iron ore mining reservoirs in Poland. Diatom Research 33(2): 155–185. https://doi.org/10.1080/0269249X.2018.1509886
  • Olszyński RM, Szczepocka E, Żelazna-Wieczorek J (2019) Critical multi-stranded approach for determining the ecological values of diatoms in unique aquatic ecosystems of anthropogenic origin. PeerJ 2019: e8117. https://doi.org/10.7717/peerj.8117
  • Orlikowski D, Szwed L (2009) Wodny kierunek rekultywacji w KWB "Adamów" SA – inwestycją w przyszłość regionu. Górnictwo i Geoinżynieria 33: 351–361.
  • Orlikowski D, Szwed L (2011) Zagospodarowanie terenów pogórniczych KWB "ADAMÓW" SA w Turku ⎯ krajobraz przed rozpoczęciem działalności górniczej i po jej zakończeniu. Górnictwo i Geoinżynieria 35: 225–240.
  • Rimet F, Kermarrec L, Bouchez A, Hoffmann L, Ector L, Medlin LK (2011) Molecular phylogeny of the family Bacillariaceae based on 18S rDNA sequences: Focus on freshwater Nitzschia of the section Lanceolatae. Diatom Research 26(3): 273–291. https://doi.org/10.1080/0269249X.2011.597988
  • Ronquist F, Teslenko M, Van Der Mark P, Ayres DL, Darling A, Höhna S, Larget B, Liu L, Suchard MA, Huelsenbeck JP (2012) MrBayes 3.2: Efficient Bayesian Phylogenetic Inference and Model Choice Across a Large Model Space. Systematic Biology 61(3): 539–542. https://doi.org/10.1093/sysbio/sys029
  • Rovira L, Trobajo R, Sato S, Ibáñez C, Mann DG (2015) Genetic and Physiological Diversity in the Diatom Nitzschia inconspicua. The Journal of Eukaryotic Microbiology 62(6): 815–832. https://doi.org/10.1111/jeu.12240
  • Rumrich U, Lange-Bertalot H, Rumrich M (2000) Diatoms of the Andes from Venezuela to Patagonia/Tierra del Fuego and two additional contributions. In: Lange-Bertalot H (Ed.) Iconographia Diatomologica. A.R.G. Gantner Verlag Kommanditgesellschaft, Ruggell, 1–673.
  • Sienkiewicz E, Gąsiorowski M, Sekudewicz I, Kowalewska U, Matoušková Š (2023) Responses of diatom composition and teratological forms to environmental pollution in a post-mining lake (SW Poland). Environmental Science and Pollution Research International 30(51): 110623–110638. https://doi.org/10.1007/s11356-023-30113-7
  • Stachowski P, Kraczkowska K, Liberacki D, Oliskiewicz-Krzywicka A (2018) Water Reservoirs as an Element of Shaping Water Resources of Post-Mining Areas. Journal of Ecological Engineering 19(4): 217–225. https://doi.org/10.12911/22998993/89658
  • Theriot EC, Ashworth MP, Nakov T, Ruck E, Jansen RK (2015) Dissecting signal and noise in diatom chloroplast protein encoding genes with phylogenetic information profiling. Molecular Phylogenetics and Evolution 89: 28–36. https://doi.org/10.1016/j.ympev.2015.03.012
  • Trifinopoulos J, Nguyen LT, von Haeseler A, Minh BQ (2016) W-IQ-TREE: A fast online phylogenetic tool for maximum likelihood analysis. Nucleic Acids Research 44(W1): W232–W235. https://doi.org/10.1093/nar/gkw256
  • Tudesque L, Rimet F, Ector L (2008) A new taxon of the section Nitzschiae Lanceolatae Grunow: Nitzschia costei sp. nov. compared to N. fonticola Grunow, N. macedonica Hustedt, N. tropica Hustedt and related species. Diatom Research 23(2): 483–501. https://doi.org/10.1080/0269249X.2008.9705771
  • Van Dam H, Mertens A, Sinkeldam J (1994) A coded checklist and ecological indicator values of freshwater diatoms from The Netherlands. Netherlands Journal of Aquatic Ecology 28(1): 117–133. https://doi.org/10.1007/BF02334251
  • Żelazna-Wieczorek (2011) Diatom flora in springs of Łódź Hills (Central Poland). Biodiversity, taxonomy, and temporal changes of epipsammic diatom assemblages in springs affected by human impact. In: Witkowski A (Ed.) Diatom Monographs 13. A.R.G. Gantner Verlag K.G., Ruggell, Liechtenstein, 1–419.
  • Żelazna-Wieczorek J, Olszyński RM (2016) Taxonomic revision of Chamaepinnularia krookiformis Lange–Bertalot et Krammer with a description of Chamaepinnularia plinskii sp. nov. Fottea 16(1): 112–121. https://doi.org/10.5507/fot.2016.001
  • Żelazna-Wieczorek J, Olszyński RM, Nowicka-Krawczyk P (2015) Half a century of research on diatoms in athalassic habitats in central Poland. Oceanological and Hydrobiological Studies 44(1): 51–67. https://doi.org/10.1515/ohs-2015-0006