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Research Article

Devaleraea titlyanoviorum sp. nov. (Palmariaceae, Rhodophyta) from the Russian coast of the northwestern Pacific Ocean

ORCID Icon, ORCID Icon, &
Pages 25-34 | Received 03 Jul 2020, Accepted 23 Oct 2020, Published online: 02 Dec 2020

REFERENCES

  • Bringloe T.T. & Saunders G.W. 2019. DNA barcoding of the marine macroalgae from Nome, Alaska (Northern Bering Sea) reveals many trans-Arctic species. Polar Biology 42: 851–864. DOI: 10.1007/s00300-019-02478-4.
  • Climatic data on hydrometeorological conditions in nearshore zone of the Sea of Japan: water temperature (RU_RIHMI-WDC_1004). 2020. http://portal.esimo.ru/dataview/viewresource?resourceId=RU_RIHMI-WDC_1004&parameter=tempwater&sea=japan&filter; searched on 18 September 2020 [in Russian].
  • D’Archino R. & Zuccarello G.C. 2020. Foliose species of New Zealand red algae: diversity in the genus Tsengia (Tsengiaceae, Halymeniales), including T. northlandica sp. nov. Phycologia 59: 437–448. DOI: 10.1080/00318884.2020.1796107.
  • Danchenkov M.A., Aubrey D.G. & Feldman K.L. 2003. Oceanography of area close to the Tumannaya river mouth (the Japan Sea). Pacific Oceanography 1: 61–69.
  • Danchenkov M.A., Lobanov Y.B., Riser S.C., Kim K., Takematsu M. & Yoon J.-H. 2006. A history of physical oceanographic research in the Japan/East Sea. Oceanography 19: 18–31. DOI: 10.5670/oceanog.2006.41.
  • Edgar R.C. 2004. MUSCLE: a multiple sequence alignment method with reduced time and space complexity. BMC Bioinformatics 5: 113. DOI: 10.1186/1471-2105-5-113.
  • Felsenstein J. 1981. Evolutionary trees from DNA sequences: a maximum likelihood approach. Journal of Molecular Evolution 17: 368–376. DOI: 10.1007/BF01734359.
  • Guiry M.D. 1982. Devaleraea, a new genus of the Palmariaceae (Rhodophyta) in the North Atlantic and North Pacific. Journal of Marine Biological Association of the United Kingdom 62: 1–13. DOI: 10.1017/S0025315400020063.
  • Guiry M.D. & Guiry G.M. 2020. AlgaeBase. World-wide electronic publication, National University of Ireland, Galway. http://www.algaebase.org; searched on 15 May 2020.
  • Hasegawa M., Kishino H. & Yano T. 1985. Dating of the human-ape splitting by a molecular clock of mitochondrial DNA. Journal of Molecular Evolution 22: 160–174. DOI: 10.1007/BF02101694.
  • Hawkes M.W. & Scagel R.F. 1986. The marine algae of British Columbia and northern Washington: division Rhodophyta (red algae), class Rhodophyceae, order Palmariales. Canadian Journal of Botany 64: 1148–1173. DOI: 10.1139/b86-158.
  • Huelsenbeck J.P. & Ronquist F. 2001. MRBAYES: Bayesian inference of phylogenetic trees. Bioinformatics 17: 754–755. DOI: 10.1093/bioinformatics/17.8.754.
  • Jukes T.H. & Cantor C.R. 1969. Evolution of protein molecules. In: Mammalian protein metabolism (Ed. by H.N. Munro), pp. 21–132. Academic Press, New York, New York, USA. 590 pp. DOI: 10.1016/B978-1-4832-3211-9.50009-7.
  • Kimura M. 1980. A simple method for estimating evolutionary rates of base substitutions through comparative studies of nucleotide sequences. Journal of Molecular Evolution 16: 111–120. DOI: 10.1007/BF01731581.
  • Kumar S., Stecher G., Li M., Knyaz C. & Tamura K. 2018. MEGA X: molecular evolutionary genetics analysis across computing platforms. Molecular Biology and Evolution 35: 1547–1549. DOI: 10.1093/molbev/msy096.
  • Lanfear R., Calcott B., Ho S.Y. & Guindon S. 2012. Partitionfinder: combined selection of partitioning schemes and substitution models for phylogenetic analyses. Molecular Biology and Evolution 29: 1695–1701. DOI: 10.1093/molbev/mss020.
  • Lee H.W. & Kim M.S. 2014. Cryptic species diversity of the red algal genus Callophyllis (Kallymeniaceae, Gigartinales) from Korea. Journal of Ecology and Environment 37: 395–410. DOI: 10.5141/ecoenv.2014.041.
  • Lee I.K. 1978. Studies on Rhodymeniales from Hokkaido. Journal of Faculty of Science, Hokkaido University (Botany) 11: 1–194.
  • Lindeberg M.R. & Lindstrom S.C. 2010. Field guide to the seaweeds of Alaska. Fairbanks: Alaska Sea Grant College Program, University of Alaska Fairbanks. 188 pp.
  • Lindstrom S.C. 2008. Cryptic diversity and phylogenetic relationships within the Mastocarpus papillatus species complex (Rhodophyta, Phyllophoraceae). Journal of Phycology 44: 1300–1308. DOI: 10.1111/j.1529-8817.2008.00561.x.
  • Lindstrom S.C., Hughey J.R. & Martone P.T. 2011. New, resurrected and redefined species of Mastocarpus (Phyllophoraceae, Rhodophyta) from the northeast Pacific. Phycologia 50: 661–683. DOI: 10.2216/10-38.1.
  • Lindstrom S.C., Olsen J.L. & Stam W.T. 1996. Recent radiation of the Palmariaceae (Rhodophyta). Journal of Phycology 32: 457–468. DOI: 10.1111/j.0022-3646.1996.00457.x.
  • Macroalgal Herbarium Portal. 2020. https://macroalgae.org/portal/taxa/index.php?taxon=210246; searched on 15 May 2020.
  • Nikitin A.A., Danchenkov M.A., Lobanov V.B. & Yurasov G.I. 2009. Surface circulation and synoptic eddies in the Japan Sea. Izvestia TINRO 157: 158–167. [in Russian]
  • Perestenko L.P. 1973. De speciebus novis Rhodymeniae Grev. et Odonthaliae Lyngb. notula. Novitates Systematicae Plantarum Non Vascularium 10: 61–68. [ in Russian]
  • Perestenko L.P. 1994. Krasnye vodorosli Dal’nevostochnyh morey Rossii (Red Algae of the Far-Eastern Seas of Russia). Olga, St.Petersburg. 331 pp. [ in Russian]
  • Rambaut A. 2016. FigTree, version 1.4.3. http://tree.bio.ed.ac.uk/soft-ware/figtree/.
  • Rambaut A., Drummond A.J., Xie D., Baele G. & Suchard M.A. 2018. Posterior summarization in Bayesian phylogenetics using Tracer 1.7. Systematic Biology 67: 901–904. DOI: 10.1093/sysbio/syy032.
  • Saunders G.W., Jackson C. & Salomaki E.D. 2018. Phylogenetic analyses of transcriptome data resolve familial assignments for genera of the red-algal Acrochaetiales-Palmariales complex (Nemaliophycidae). Molecular Phylogenetics and Evolution 119: 151–159. DOI: 10.1016/j.ympev.2017.11.002.
  • Saunders G.W. & Moore T.E. 2013. Refinements for the amplification and sequencing of red algal DNA barcode and RedToL phylogenetic markers: a summary of current primers, profiles and strategies. Algae 28: 31–43. DOI: 10.4490/algae.2013.28.1.031.
  • Selivanova O.N. 2016. The order Palmariales (Rhodophyta) in the North Pacific area of Russia: taxonomic revision of Halosaccion Kützing and Devaleraea Guiry. Annual Research and Review in Biology 10: 1–14. DOI: 10.9734/ARRB/2016/27267.
  • Selivanova O.N. & Zhigadlova G.G. 2010. Members of the order Palmariales (Rhodophyta) at the Russian Pacific coasts. The genus Palmaria Stackhouse. Russian Journal of Marine Biology 36: 497–506. DOI: 10.1134/S1063074010070035.
  • Shibneva S.Y. & Skriptsova A.V. 2015. Intraspecific morphological variability of marine macrophytes and its determining factors. Russian Journal of Marine Biology 41: 325–334. DOI: 10.1134/S1063074015050120.
  • Skriptsova A.V. & Kalita T.L. 2020. A re-evaluation of Palmaria (Palmariaceae, Rhodophyta) in the North-West Pacific. European Journal of Phycology 55: 266–274. DOI: 10.1080/09670262.2020.1714081.
  • Stamatakis A. 2006. RAxML-VI-HPC: maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed models. Bioinformatics 22: 2688–2690. DOI: 10.1093/bioinformatics/btl446.
  • Suprakovich T.I. 1976. Techeniya (The currents). In: Gidrometerologicheskie usloviashel’fovoi zony Japonskogo morya (Hydrometerological conditions of shelf zone of the Sea of Japan) (Ed. by E.I. Lastovetsky), pp. 244–291. Gidrometeoizdat, Vladivostok. 794 pp. [in Russian]
  • Tamura K. 1992. Estimation of the number of nucleotide substitutions when there are strong transition-transversion and G+C-content biases. Molecular Biology and Evolution 9: 678–687. DOI: 10.1093/oxfordjournals.molbev.a040752.
  • van der Meer J.P. & Bird C.J. 1985. Palmaria mollis stat. nov.: a newly recognized species of Palmaria (Rhodophyceae) from the northeast Pacific coast. Canadian Journal of Botany 63: 398–403. DOI: 10.1139/b85-047.

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