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http://dx.doi.org/10.4490/algae.2013.28.4.307

Taxonomy and phylogeny of the genus Cryptomonas (Cryptophyceae, Cryptophyta) from Korea  

Choi, Bomi (Department of Biology, Chungnam National University)
Son, Misun (Yeongsan River Environment Research Center)
Kim, Jong Im (Department of Biology, Chungnam National University)
Shin, Woongghi (Department of Biology, Chungnam National University)
Publication Information
ALGAE / v.28, no.4, 2013 , pp. 307-330 More about this Journal
Abstract
The genus Cryptomonas is easily recognized by having two flagella, green brownish color, and a swaying behavior. They have relatively simple morphology, and limited diagnostic characters, which present a major difficulty in differentiating between species of the genus. To understand species delineation and phylogenetic relationships among Cryptomonas species, the nuclear-encoded internal transcribed spacer 2 (ITS2), partial large subunit (LSU) and small subunit ribosomal DNA (rDNA), and chloroplast-encoded psbA and LSU rDNA sequences were determined and used for phylogenetic analyses, using Bayesian and maximum likelihood methods. In addition, nuclear-encoded ITS2 sequences were predicted to secondary structures, and were used to determine nine species and four unidentified species from 47 strains. Sequences of helix I, II, and IIIb in ITS2 secondary structure were very useful for the identification of Cryptomonas species. However, the helix IV was the most variable region across species in alignment. The phylogenetic tree showed that fourteen species were monophyletic. However, some strains of C. obovata had chloroplasts with pyrenoid while others were without pyrenoid, which used as a key character in few species. Therefore, classification systems depending solely on morphological characters are inadequate, and require the use of molecular data.
Keywords
Cryptomonas; Cryptophyta; morphology; phylogeny; taxonomy;
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1 Butcher, R. W. 1967. An introductory account of the smaller algae of British coastal waters. Part IV: Cryptophyceae. Fishery Investigations, Series IV. Ministry of Agriculture, Fisheries and Food, Her Majesty's Stationary Office, London, 54 pp.
2 Bourelly, P. 1970. Les algues d'eau douce: initiation a la systematique. Tome III: Les algues blues et rouges. Les Eugleniens, Peridinienset Cryptomonadines. Editions N. Boubee & Cie, Paris, 512 pp.
3 Brett, S. J. & Wetherbee, R. 1986. A comparative study of periplast structure in Cryptomonas cryophila and C. ovata (Cryptophyceae). Protoplasma 131:23-31.   DOI
4 Clay, B. L., Kugrens, P. & Lee, R. E. 1999. A revised classification of the Cryptophyta. Bot. J. Linn. Soc. 131:131-151.   DOI   ScienceOn
5 Deane, J. A., Strachan, I. M., Saunders, G. W., Hill, D. R. A. & McFadden, G. I. 2002. Cryptomonad evolution: nuclear 18S rDNA phylogeny versus cell morphology and pigmentation. J. Phycol. 38:1236-1244.   DOI   ScienceOn
6 Dujardin, F. 1841. Histoire naturelle des Zoophytes. Infusoires, comprenant la physiologie et la classification de ces Animaux, et la maniere de les etudier a l'aide du microscope. Librairie Encyclopedique de Roret, Paris, 295 pp.
7 Ehrenberg, C. G. 1831. Symbolae physicae seu icones et descriptiones animalium evertebratorum sepositis insectis quae ex itinere per Africanumborealem et Asiam occidentalem Friderici Guilelmi Hemprich et Christiani Godofredi Ehrenberg medicinae et chirurgiae doctorum studio novae aut illustratae redierunt. Mittler, Berlin, pp. 1-2.
8 Ehrenberg, C. G. 1832. Uber die Entwickelung und Lebensdauer der Infusionsthiere; nebst ferneren Beiträgen zu einer Vergleichung ihrer organischen Systeme. Abh. K. Akad. Wiss. Berl. Phys. Kl. 1831:1-154.
9 Ehrenberg, C. G. 1838. Die Infusionsthierschen als volkommene Organismen. Ein Blick in das tiefere organische Leben der Natur. Leopold Voss, Leipzig, 548 pp.
10 Faust, M. A. 1974. Structure of the periplast Cryptomonas ovata var. palustris. J. Phycol. 10:121-124.
11 Guillard, R. R. L. 1975. Culture of phytoplankton for feeding marine invertebrates. In Smith, W. L. & Chanley, M. H. (Eds.) Culture of Marine Invertebrate Animals. Plenum Press, New York, pp. 26-60.
12 Guillard, R. R. L. & Ryther, J. H. 1962. Studies of marine planktonic diatoms. I. Cyclotella nana Hustedt and Detonula confervacea (Cleve) Gran. Can. J. Microbiol. 8:229-239.   DOI   ScienceOn
13 Hill, D. R. A. 1991. A revised circumscription of Cryptomonas (Cryptophyceae) based on examination of Australian strains. Phycologia 30:170-188.   DOI
14 Hill, D. R. A. & Rowan, K. S. 1989. The biliproteins of the Cryptophyceae. Phycologia 28:455-463.   DOI
15 Hoef-Emden, K. 2007. Revision of the genus Cryptomonas (Cryptophyceae) ІІ: incongruences between the classical morphospecies concept and molecular phylogeny in smaller pyrenoid-less cells. Phycologia 46:402-428.   DOI
16 Huelsenbeck, J. P. & Ronquist, F. 2001. MRBAYES: Bayesian inference of phylogenetic trees. Bioinformatics 17:754-755.   DOI   ScienceOn
17 Hoef-Emden, K., Marin, B. & Melkonian, M. 2002. Nuclear and nucleomorph SSU rDNA phylogeny in the Cryptophyta and the evolution of cryptophyte diversity. J. Mol. Evol. 55:161-179.   DOI
18 Hoef-Emden, K. & Melkonian, M. 2003. Revision of the genus Cryptomonas (Cryptophyceae): a combination of molecular phylogeny and morphology provides insights into a long-hidden dimorphism. Protist 154:371-409.   DOI   ScienceOn
19 Huber-Pestalozzi, G. 1950. Das Phytoplankton des Susswassers. 3. Teil. Cryptophyceen, Chloromonadinen, Peridineen. E. Schweizerbart'sche Verlagsbuchhandlung (Erwin Nagele), Stuttgart, 310 pp.
20 Javornicky, P. 2003. Taxonomic notes on some freshwater planktonic Cryptophyceae based on light microscopy. Hydrobiologia 502:271-283.   DOI   ScienceOn
21 Kim, J. -H., Boo, S. M. & Shin, W. 2007. Two freshwater cryptomonads new to Korea: Cryptomonas marssonii and C. pyrenoidifera. Algae 22:147-152.   과학기술학회마을   DOI   ScienceOn
22 Marin, B., Klingberg, M. & Melkonian, M. 1998. Phylogenetic relationships among the Cryptophyta: analyses of nuclear-encoded SSU rRNA sequences support the monophyly of extant plastid-containing lineages. Protist 149:265-276.   DOI   ScienceOn
23 Mathews, D. H. 2004. Using an RNA secondary structure partition function to determine confidence in base pairs predicted by free energy minimization. RNA 10:1178-1190.   DOI   ScienceOn
24 Pascher, A. 1913. Die Susswasserflora Deutschlands, Osterreichs und der Schweiz. Heft 2: Flagellatae II. Chrysomonadinae, Eugleninae, Chloromonadinae und gefarbte Flagellaten unsicherer Stellung. Gustav Fischer, Jena, pp. 96-114.
25 Schiller, J. 1925. Die planktontischen Vegetationen des adriatischen Meeres. B. Chrysomonadina, Heterokontae, Cryptomonadina, Eugleninae, Volvocales. I. Systematischer Teil. Arch. Protistenkd. 53:59-123.
26 Posada, D. & Crandall, K. A. 1998. MODELTEST: testing the model of DNA substitution. Bioinformatics 14:817-818.   DOI   ScienceOn
27 Pringsheim, E. G. 1944. Some aspects of taxonomy in the Cryptophyceae. New Phytol. 43:143-150.   DOI   ScienceOn
28 Pringsheim, E. G. 1968. Zur Kenntnis der Cryptomonaden des Susswassers. Nova Hedwigia 16:367-401.
29 Schiller, J. 1929. Neue Chryso- und Cryptomonaden aus Altwassern der Donau bei Wien. Arch. Protistenkd. 66:436-458.
30 Schiller, J. 1957. Untersuchungen an den planktischen Protophyten des Neusiedlersees 1950-1954. II. Teil. Burgenlandisches Landesmuseum, Eisenstadt, 44 pp.
31 Schultz, J., Maisel, S., Gerlach, D., Muller, T. & Wolf, M. 2005. A common core of secondary structure of the internal transcribed spacer 2 (ITS2) throughout the eukaryota. RNA 11:361-364.   DOI   ScienceOn
32 Skuja, H. 1939. Beitrag zur Algenflora Lettlands. Vol. 2. Acta Horti Bot. Univ. Latv. 11/12:41-169.
33 Skuja, H. 1948. Taxonomie des Phytoplanktons einiger Seen in Uppland, Sweden. Symb. Bot. Ups. 9:1-399.
34 Skuja, H. 1956. Taxonomische und biologische Studien über das Phytoplankton schwedischer Binnengewasser. Nova Acta Regiae Soc. Sci. Ups. Ser. IV 16:1-404.
35 Smith, S. W., Overbeek, R., Woese, C. R., Gilbert, W. & Gillevet, P. M. 1994. The genetic data environment and expandable GUI for multiple sequence analysis. Comput. Appl. Biosci. 10:671-675.
36 Zuker, M. 2003. Mfold web server for nucleic acid folding and hybridization prediction. Nucleic Acids Res. 31:3406-3415.   DOI   ScienceOn
37 Son, M. S. 2009. Taxonomic study on the genus Cryptomonas from Korea. Chungnam National University Press, Daejeon, 54 pp.
38 Stamatakis, A. 2006. RAxML-VI-HPC: maximum likelihoodbased phylogenetic analyses with thousands of taxa and mixed models. Bioinformatics 22:2688-2690.   DOI   ScienceOn
39 Starmach, K. 1974. Flora Slodkowodna Polski, Tom 4. Cryptophyceae, Dinophyceae, Raphidophyceae. Polska Akademia Nauk Instytut Botaniki, Warsaw, 520 pp