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Articles

Characterization and production of tetraspore-derived seedlings of Grateloupia lanceolata (Halymeniales, Rhodophyta) in northeastern China

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Pages 330-339 | Received 07 Jan 2011, Accepted 16 Sep 2011, Published online: 23 Apr 2019

REFERENCES

  • Apel K. & Hirt H. 2004. Reactive oxygen species: metabolism, oxidative stress, and signal transduction. Annual Review of Plant Biology 55: 373–399.
  • Ardré F. & Gayral P. 1961. Quelques Grateloupia de l'Atlantique et du Pacifique. Revue Algologique, Nouvelle Série 6: 38–48.
  • Caliceti M., Argese E., Sfriso A. & Pavoni B. 2002. Heavy metal contamination in the seaweeds of the Venice lagoon. Chemosphere 47: 443–454.
  • Castric-Fey A., Girard A. & Lflardy-Halos M.T. 1993. The distribution of Undaria pinnatifida (Phaeophyceae, Laminariales) on the coast of StMalo (Brittany, France). Botanica Marina 36: 351–358.
  • Chattopadhyay K., Mateu C.G., Mandal P., Pujol C.A., Damonte E.B. & Ray B. 2007. Galactan sulfate of Grateloupia indica: isolation, structural features and antiviral activity. Photochemistry 68: 1428–1435.
  • Chen Y.C. 1999. The ultrastructure of Grateloupia filicina (Halymeniaceae, Rhodophyta) pitplugs. Botanica Marina 42: 531–538.
  • Chiang Y.M. 1993. The developmental sequence of the marine red alga Grateloupia filicina in culture. Korean Journal of Phycology 8: 231–237.
  • Curiel D., Bellemo G., Marzocchi M., Scattolin M. & Parisi G. 1998. Distribution of introduced Japanese macroalgae Undaria pinnatida, Sargassum muticum (Phaeophyta) and Antithamnion pectinatum (Rhodophyta) in the Lagoon of Venice. Hydrobiologia 385: 17–22.
  • Davison I.R. & Pearson G.A. 1996. Stress tolerance in intertidal seaweeds. Journal of Phycology 32: 197–211.
  • Dawson E.Y., Acleto O.C. & Foldvik N. 1964. The seaweeds of Peru. Beihefte Nova Hedwigia 13: 1–111.
  • De Clerck O., Gavio B., Fredericq S., Bárbara I. & Coppejans E. 2005. Systematics of Grateloupia filicina (Halymeniaceae, Rhodophyta), based on rbcL sequence analyses and morphological evidence, including the reinstatement of G. minima and the description of G. capensis sp. nov. Journal of Phycology 41: 391–410.
  • Denis C., Massé A., Fleurence J. & Jaouen P. 2009. Concentration and pre-purification with ultrafiltration of a R-phycoerythrin solution extracted from macro-algae Grateloupia turuturu: process definition and up-scaling. Separation and Purification Technology 69: 37–42.
  • Denis C., Morançais M., Li M., Deniaud E., Gaudin P., Wielgosz-Collin G., Barnathan G., Jaouen P. & Fleurence J. 2010. Study of the chemical composition of edible red macroalgae Grateloupia turuturu from Brittany (France). Food Chemistry 119: 913–917.
  • Doyle J.J. & Doyle J.L. 1987. A rapid DNA isolation procedure for small quantities of fresh leaf tissue. Phytochemical Bulletin 19: 11–15.
  • Egan S., James S., Holmström C. & Kjelleberg S. 2001. Inhibition of algal spore germination by the marine bacterium Pseudoalteromonas tunicate. FEMS Microbiology, Ecology 35: 67–73.
  • Felsenstein J. 1989. PHYLIP — Phylogeny Inference Package (Version 3.65). Cladistics 5: 164–166.
  • Figueroa F.L., Korbee N., de Clerck, O., Bárbara I. & Gall E.A.R. 2007. Characterization of Grateloupia lanceola (Halymeniales, Rhodophyta), an obscure foliose Grateloupia from the Iberian Peninsula, based on morphology, comparative sequence analysis and mycosporine-like amino acid composition. European Journal of Phycology 42: 231–242.
  • Fredericq S., Hommersand M. & Freshwater D.W. 1996. The molecular systematics of some agar-and carrageenan-containing marine red algae based on rbcL sequence analysis. Hydrobiologia 326/327: 125–135.
  • Freshwater D.W., Fredericq S., Butler B.S., Hommersand M.H. & Chase M.W. 1994. A gene phylogeny of the red algae (Rhodophyta) based on plastid rbcL. Proceedings of the National Academy of Sciences of the United States of America 91: 7281–7285.
  • Freshwater D.W., Fredericq S. & Hommersand M.H. 1995. A molecular phylogeny of the Gelidiales (Rhodophyta) based on analysis of plastid rbcL nucleotide sequences. Journal of Phycology 31: 616–632.
  • Fujiwara-Arasaki T., Mino N. & Kuroda M. 1984. The protein value in human nutrition of edible marine algae in Japan. Hydrobiologia 116/117: 513–516.
  • Garcia-Jimenez P., Robaina R.R., Luque A. & Tsekos I. 1996. Glycerol activated cellular division and biosynthetic activity during growth and morphogenesis of carpospore seedlings of Grateloupia doryphora (Cryptonemiales, Rhodophyta). Phycologia 35: 261–269.
  • Garcia-Jimenez P., Geraldino P.J.L., Boo S.M. & Robaina R.R. 2008. Red alga Grateloupia imbricata (Halymeniaceae), a species introduced into the Canary Islands. Phycological Research 56: 166–171.
  • Gavio B. & Fredericq S. 2002. Grateloupia turuturu (Halymeniaceae, Rhodophyta) is the correct name of the non-native species in the Atlantic known as Grateloupia doryphora. European Journal of Phycology 37: 349–359.
  • Hommersand M.H. & Fredericq S. 2003. Biogeography of the marine red algae of the South Africa West coast: a molecular approach. In: Proceeding of the 17th International Seaweed Symposium (Ed. by A.R.O. Chapman, R.J. Anderson, V.J. Vreeland & I.R. Davison), pp. 325–336. Oxford university Press, Cape Town.
  • Hughey J.R., Silva P.C. & Hommersand M.H. 2001. Solving taxonomic and nomenclatural problems in Pacific Gigartinaceae (Rhodophyta) using DNA from type material. Journal of Phycology 37: 1091–1109.
  • Iima M., Kinoshita T., Kawaguchi S. & Migita S. 1995. Cultivation of Grateloupia acuminata (Halymeniaceae, Rhodophyta) by regeneration from cut fragments of basal crusts and upright thalli. Journal of Applied Phycology 7: 583–588.
  • Inderjit, Chapman D., Ranelletti M. & Kaushik S. 2006. Invasive marine algae: an ecological perspective. Botanical Review 72: 153–178.
  • Kaas R. 1998. The seaweed resources of France. In: Seaweed resources of the world (Ed. by A.T. Critchley & M. Ohno), pp. 233–244. Japan International Cooperation Agency, Yokusuka.
  • Kawaguchi S., Wang H.W., Horiguchi T. & Masuda M. 2001. A comparative study of the red alga Grateloupia filicina (Halymeniaceae) from the northwestern pacific and Mediterranean with the description of Grateloupia asiatica sp. Nov. Journal of Phycology 37: 433–442.
  • Kraft G.T. 1977. The morphology of Grateloupia intestinalis from New Zealand, with some thoughts on generic criteria within the family Cryptonemiaceae (Rhodophyta). Phycologia 16: 43–51.
  • Kumari P., Kumar M., Gupta V., Reddy C.R. & Jha B. 2010. Tropical marine macroalgae as potential sources of nutritionally important PUFAs. Food Chemistry 120: 749–757.
  • Lima M., Kinoshita T. & Kawaguchi S. 1995. Cultivation of Grateloupia acuminata (Halymeniaceae, Rhodophyta) by regeneration from cut fragments of basal crusts and upright thalli. Journal of Applied Phycology 7: 583–588.
  • McLachlan J. 1979. Growth media marine. In: Handbook of phycological methods. Culture methods and growth measurements (Ed. by J.R. Stein), pp. 25–51. Cambridge University Press, Cambridge, UK.
  • Miller K.A., Hughey J.R. & Gabrielson P.W. 2009. Research note: First report of the Japanese species Grateloupia lanceolata (Halymeniaceae, Rhodophyta) from California, USA. Phycological Research 57: 238–241.
  • Robaina R.R., Garcia P., Garcia-Reina G. & Luque A. 1990. Morphogenetic effect of glycerol on tissue cultures of the red seaweed Grateloupia doryphora. Journal of Applied Phycology 2: 137–143.
  • Serrão E.A., Alice L.A. & Brawley S.H. 1999. Evolution of the Fucaceae (Phaeophyta) inferred from nrDNA-ITS. Journal of Phycology 35: 382–394.
  • Shao K., Wang J. & Zhou B. 2004. Production and application of filaments of Grateloupia turuturu (Halymeniaceae, Rhodophyta). Journal of Applied Phycology 16: 431–437.
  • Tamura K., Dudley J., Nei M. & Kumar S. 2007. MEGA4: molecular evolutionary genetics analysis (MEGA) software version 4.0. Molecular Biology and Evolution 24: 1596–1599.
  • Thompson J.D., Gibson T.J., Plewniak F., Jeanmougin F. & Higgins D.G. 1997. The ClustalX windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools. Nucleic Acids Research 25: 4876–4882.
  • Tseng C.K. 1983. Common seaweeds of China. Science Press, Beijing.
  • Veena C.K., Josephine A., Preetha S.P. & Varalakshmi P. 2006. Beneficial role of sulfated polysaccharides from edible seaweed Fucus vesiculosus in experimental hyperoxaluria. Food Chemistry 100: 1552–1559.
  • Verlaque M. 2001. Checklist of the macroalgae of Thau Lagoon (Hérault, France), a hot spot of marine specie introduction in Europe. Oceanologica Acta 24: 29–49.
  • Verlaque M., Brannock P.M., Komatsu T., Villalardbohnsack M. & Marston M. 2005. The genus Grateloupia C. Agardh (Halymeniaceae, Rhodophyta) in the Thau Lagoon (France, Mediterranean): a case study of marine plurispecific introductions. Phycologia 44: 477–496.
  • Wang C., Bligh S.W.A., Shi S.S., Wang Z.T., Hu Z.B., Crowder J., Branford-White C. & Vella C. 2007. Structural features and anti-HIV-1 activity of novel polysaccharides from red algae Grateloupia longifolia and Grateloupia filicina. International Journal of Biological Macromolecules 41: 369–375.
  • Wang H. & Qi G. 2009. Preliminary research of Grateloupia from Liaoning coast. Journal of Liaoning Normal University 32: 231–234. (In Chinese with abstract in English).
  • Wang H.W., Kawaguchi S., Horiguchi T. & Masuda M. 2000. Reinstatement of Grateloupia catenata (Rhodophyta, Halymeniaceae) on the basis of morphology and rbcL sequences. Phycologia 39: 228–237.
  • Wang H.W., Kawaguchi S., Horiguchi T. & Masuda M. 2001. A morphological and molecular assessment of the genus Prionitis J. A gardh (Halymeniaceae, Rhodophyta). Phycological Research 49: 251–261.
  • Wilkes R.J., McIvor L.M. & Guiry M.D. 2005. Using rbcL sequence data to reassess the taxonomic position of some Grateloupia and Dermocorynus species (Halymeniaceae, Rhodophyta) from the north-eastern Atlantic. European Journal of Phycology 40: 53–60.
  • Xia B.M. 2004. Flora algarum marinarum sinicarum Tomus II Rhodophyta No. III Gelidiales Cryptonemiales Hildenbrandiales. Science Press, Beijing.
  • Yang E.C. & Boo S.M. 2004. Evidence for two independent lineages of Griffithsia (Ceramiaceae, Rhodophyta) based on plastid protein-coding psaA, psbA, and rbcL gene sequences. Molecular Phylogenetics and Evolution 31: 680–688.
  • Ye N.H., Wang H.X. & Wang G.C. 2005. Formation and early development of tetraspores of Gracilaria lemaneiformis (Gracilaria, Gracilariaceae) under laboratory conditions. Aquaculture 254: 219–226.
  • Yokoya N.S. & Handro W. 1996. Effects of auxins and cytokinins on tissue culture of Grateloupia dichotoma (Gigartinales, Rhodophyta). Hydrobiologia 327: 393–400.
  • Zhang Z.Y., Wei H.X., Han Y.X. & Wang G.S. 2007. Induction and seedling incubation of filaments from crusts of sea weed Grateloupia filicina. Journal of Dalian Fishery University 22: 164–169. (In Chinese with abstract in English).

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