135
Views
2
CrossRef citations to date
0
Altmetric
Research Articles

Chemical characterization of the introduced red alga Polyopes lancifolius (Halymeniales, Rhodophyta) from the Gulf of Morbihan, France

, , , , , , , & show all
Pages 616-627 | Received 17 Mar 2022, Accepted 24 Aug 2022, Published online: 18 Sep 2022

REFERENCES

  • Agardh J.G. 1849. Algolosgiska bidrag. Öfversigt af Kongl. Vetenskaps-Adademiens Förhandlingar, Stockholm 6: 79–89.
  • Bedoux G., Hardouin K., Marty C., Taupin L., Vandanjon L. & Bourgougnon N. 2014. Chemical characterization and photoprotective activity measurement of extracts from the red macroalga Solieria chordalis. Botanica Marina 57: 291–301. DOI: 10.1515/bot-2013-0118.
  • Bedoux G., Pliego-Cortés H., Dufau C., Hardouin K., Boulho R., Freile-Pelegrín Y., Robledo D. & Bourgougnon N. 2020. Production and properties of mycosporine-like amino acids isolated from seaweeds. In: Advances in botanical research, vol. 95 (Ed. by N. Bourgougnon), pp 213–245. Elsevier, Amsterdam, Netherlands.
  • Bligh E.G. & Dyer W.J. 1959. A rapid method of total lipid extraction and purification. Canadian Journal of Biochemistry and Physiology 37: 911–917. DOI: 10.1139/y59-099.
  • Blumenkrantz N. & Asboe-Hansen G. 1973. New method for quantitative determination of uronic acids. Analytical Biochemistry 54: 484–489. DOI: 10.1016/0003-2697(73)90377-1.
  • Bouhlal R., Haslin C., Chermann J.C., Colliec-Jouault S., Sinquin C., Simon G., Cerantola S., Riadi H. & Bourgougnon N. 2011. Antiviral activities of sulfated polysaccharides isolated from Sphaerococcus coronopifolius (Rhodophytha, Gigartinales) and Boergeseniella thuyoides (Rhodophyta, Ceramiales). Marine Drugs 9: 1187–1209. DOI: 10.3390/md9071187.
  • Bourgougnon N., Lahaye M., Chermann J.C. & Kornprobst J.M. 1993. Composition and antiviral activities of a sulfated polysaccharide from Schizymenia dubyi (Rhodophyta, Gigartinales). Bioorganic & Medicinal Chemistry Letters 3: 1141–1146. DOI: 10.1016/S0960-894X(00)80303-0.
  • Burlot A.S., Bedoux G. & Bourgougnon N. 2016. Response surface methodology for enzyme-assisted extraction of water-soluble antiviral compounds from the proliferative macroalga Solieria chordalis. Enzyme Engineering 5: Article 1000148. DOI: 10.4172/2329-6674.1000148.
  • Chopin T., Kerin B.F. & Mazerolle R. 1999. Phycocolloid chemistry as a taxonomic indicator of phylogeny in the Gigartinales, Rhodophyceae: a review and current developments using Fourier transform infrared diffuse reflectance spectroscopy. Phycological Research 47: 167–188. DOI: 10.1111/j.1440-1835.1999.tb00297.x.
  • 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. DOI: 10.1016/j.foodchem.2009.07.047.
  • Dubois M., Gilles K., Hamilton J., Rebers P. & Smith F. 1956. Colorimetric method for determination of sugars and related substances. Analytical Chemistry 28: 350–356. DOI: 10.1021/ac60111a017.
  • Duckworth M. & Yaphe W. 1971. The structure of agar: part I. Fractionation of a complex mixture of polysaccharides. Carbohydrate Research 16: 189–197. DOI: 10.1016/S0008-6215(00)86113-3.
  • Fenoradosoa T.A., Delattre C., Laroche C., Wadouachi A., Dulong V., Picton L., Andriamadio P. & Michaud P. 2009. Highly sulphated galactan from Halymenia durvillei (Halymeniales, Rhodophyta), a red seaweed of Madagascar marine coasts. International Journal of Biological Macromolecules 45: 140–145. DOI: 10.1016/j.ijbiomac.2009.04.015.
  • Ferreira J., Hartmann A., Martins-Gomes C., Nunes F.M., Souto E.B., Santos D.L., Abreu H., Pereira R., Pacheco M., Gaivão I. et al. 2021. Red seaweeds strengthening the nexus between nutrition and health: phytochemical characterization and bioactive properties of Grateloupia turuturu and Porphyra umbilicalis extracts. Journal of Applied Phycology 33: 3365–3681. DOI: 10.1007/s10811-021-02529-6.
  • Figueroa F.L., Korbee N., de Clerck O., Bárbara I. & Ar Gall E. 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. DOI: 10.1080/09670260701327702.
  • Freile-Pelegrín Y., Azamar J.A. & Robledo D. 2011. Preliminary characterization of carrageenan from the red seaweed Halymenia floresii. Journal of Aquatic Food Product Technology 20: 73–83. DOI: 10.1080/10498850.2010.541590.
  • Godínez-Ortega J., Robledo D., Freile-Pelegrin Y. & Castillo R. 2012. Composición estacional de ácidos grasos de Halymenia floresii (Rhodophyta) de Yucatán, México. Revista Latinoamericana de Quimica 40: 99–105.
  • Gómez-Ordóñez E. & Rupérez P. 2011. FTIR-ATR spectroscopy as a tool for polysaccharide identification in edible brown and red seaweeds. Food Hydrocolloids 25: 1514–1520. DOI: 10.1016/j.foodhyd.2011.02.009.
  • Guibet M., Colin S., Barbeyron T., Genicot S., Kloareg B., Michel G. & Helbert W. 2007. Degradation of λ-carrageenan by Pseudoalteromonas carrageenovora λ-carrageenase: a new family of glycoside hydrolases unrelated to κ- and ι-carrageenases. Biochemical Journal 404: 105–144. DOI: 10.1042/bj20061359.
  • Guiry M.D. & Guiry G.M. 2022. AlgaeBase. World-wide electronic publication, National University of Ireland, Ireland. https://www.algaebase.org; searched on 9 March 2022.
  • Hardouin K., Bedoux G., Burlot A.S., Donnay-Moreno C., Bergé J.P., Nyvall-Collén P. & Bourgougnon N. 2016. Enzyme-assisted extraction (EAE) for the production of antiviral and antioxidant extracts from the green seaweed Ulva armoricana (Ulvales, Ulvophyceae). Algal Research 16: 233–239. DOI: 10.1016/j.algal.2016.03.013.
  • Hyun Y.J., Piao M.J., Kim K.C., Zheng J., Yao C.W., Cha J.W., Kang H.K., Yoo E.S., Koh Y.S., Lee N.H. et al. 2014. Photoprotective effect of a Polyopes affinis (Harvey) Kawaguchi and Wang (Halymeniaceae)–derived ethanol extract on Human keratinocytes. Tropical Journal of Pharmaceutical Research 13: 863–871. DOI: 10.4314/tjpr.v13i6.6.
  • Jaques L.B., Balueux R.E., Dietrich C.P. & Kavanagh L.W. 1968. A microelectrophoresis method for heparin. Canadian Journal of Physiology and Pharmacology 46: 351–360. DOI: 10.1139/y68-055.
  • Jayasooriya R.G.P.T., Nam T.J., Kim G.Y. & Choi Y.H. 2012. Methanol extract of Polyopes lancifolius suppresses tumor necrosis factor-α-induced matrix metalloproteinase-9 expression in T24 bladder carcinoma cells. Tropical Journal of Pharmaceutical Research 11: 405–412. DOI: 10.4314/tjpr.v11i3.9.
  • Jayasooriya R.G.P.T., Jang Y.J., Kang C.H., Dilshara M.G., Moon D.O., Nam T.J., Choi Y.H. & Kim G.Y. 2013. Inhibition of nitric oxide and prostaglandin E2 expression by methanol extract of Polyopes affinis in lipopolysaccharide-stimulated BV2 microglial cells through suppression of Akt-dependent NF-KB activity and MAPK pathway. Tropical Journal of Pharmaceutical Research 12: 63–70. DOI: 10.4314/tjpr.v12i1.11.
  • Jeong J., Yang W., Ahn M., Kim K.C., Hyun J.W., Kim S.H., Moon C. & Shin T. 2011. Protective effect of the methanol extract of Polyopes lancifolia (Harvey) Kawaguchi et Wang against ionizing radiation-induced mouse gastrointestinal injury. Korean Journal of Veterinary Research 51: 177–183. DOI: 10.14405/kjvr.2011.51.3.177.
  • Jouanneau D., Guibet M., Boulenguer P., Mazoyer J., Smietana M. & Helbert W. 2010. New insights into the structure of hybrid κ-/μ-carrageenan and its alkaline conversion. Food Hydrocolloids 24: 452–461. DOI: 10.1016/j.foodhyd.2009.11.012.
  • Kageyama H. & Waditee-Sirisattha R. 2018. Mycosporine-like amino acids as multifunctional secondary metabolites in Cyanobacteria: from biochemical to application aspects. In: Studies in natural products chemistry, vol. 59 (Ed. by Atta-ur-Rahman), pp 153–194. Elsevier, Amsterdam, Netherlands.
  • Kajimura M. 1990. A new species of Polyopes (Halymeniaceae, Rhodophyta) from Hawaii. Botanica Marina 33: 127–131. DOI: 10.1515/botm.1990.33.2.127.
  • Kajimura M. 1993. Morphology and taxonomic placement of Polyopes clarionensis Setchell & Gardner (Halymeniaceae, Rhodophyta). Botanica Marina 36: 555–560. DOI: 10.1515/botm.1993.36.6.555.
  • Karsten U., Barrow K.D. & King R.J. 1993. Floridoside, L-isofloridoside, and D-isofloridoside in the red alga Porphyra columbina. Plant Physiology 103: 485–491. DOI: 10.1104/pp.103.2.485.
  • Kawaguchi S., Wang H.W., Horiguchi T., Lewis J.A. & Masuda M. 2002. Rejection of Sinkoraena and transfer of some species of Carpopeltis and Sinkoraena to Polyopes (Rhodophyta, Halymeniaceae). Phycologia 41: 619–635. DOI: 10.2216/i0031-8884-41-6-619.1.
  • Kawaguchi S., Shimada S., Wang H.W., Faye E.J. & Masuda M. 2003. Polyopes tosaensis Kawaguchi & Masuda, sp. nov. (Halymeniaceae, Rhodophyta) from Japan. European Journal of Phycology 38: 315–324. DOI: 10.1080/09670260310001612583.
  • Kim K.Y., Nguyen T.H., Kurihara H. & Kim S.M. 2010. α-glucosidase inhibitory activity of bromophenol purified from the red alga Polyopes lancifolia. Journal of Food Science 45: 145–150. DOI: 10.1111/j.1750-3841.2010.01629.x.
  • Kim M.-J., Kim K.-B.-W.-R., Park S.-H., Park S.-Y., Choi H.-D., Choi J.-S., Jang M.-R., Im M.-H. & Ahn D.-H. 2017. Anti-inflammatory effect of ethanolic extract from Polyopes affinis through suppression of NF-κB and MAPK activation in LPS-stimulated RAW 264.7 cells. Journal of the Korean Society of Food Science and Nutrition 46: 537–544. DOI: 10.3746/jkfn.2017.46.5.537.
  • Kim S.Y., Cho C.H., Yang E.C., Yoon H.S. & Kim M.S. 2021. Complete mitochondrial genome of Polyopes lancifolius and comparison with related species in Halymeniales (Rhodophyta). Mitochondrial DNA Part B 6: 1365–1366. DOI: 10.1080/23802359.2021.1908866.
  • Knutsen S.H., Myslabodski D.E., Larsen B. & Usov A.I. 1994. A modified system of nomenclature for red algal galactans. Botanica Marina 37: 163–170. DOI: 10.1515/botm.1994.37.2.163.
  • La Barre S., Roullier C. & Boustie J. 2014. Mycosporine-like amino acids (MAAs) in biological photosystems. In: Outstanding marine molecules (Ed. by S. La Barre & J.M. Kornprobst), pp 333–360. John Wiley & Sons, Hoboken, New Jersey, USA. DOI: 10.1002/9783527681501.ch15.
  • Lahaye M. & Rochas C. 1991. Chemical structure and physico-chemical properties of agar. Hydrobiologia 221: 137–148. DOI: 10.1007/BF00028370.
  • Lalegerie F., Lajili S., Bedoux G., Taupin L., Stiger-Pouvreau V. & Connan S. 2019. Photo-protective compounds in red macroalgae from Brittany: considerable diversity in mycosporine-like amino acids (MAAs). Marine Environmental Research 147: 37–48. DOI: 10.1016/j.marenvres.2019.04.001.
  • Lee H.-B., Lewis J.A., Kraft G.T. & Lee I.K. 1997. Sinkoraena gen. nov. (Halymeniaceae, Rhodophyta) from Korea, Japan, and southern Australia. Phycologia 36: 103–113. DOI: 10.2216/i0031-8884-36-2-103.1.
  • Lee D.-S., Park W.S., Heo S.-J., Cha S.-H., Kim D., Jeon Y.-J., Park S.-G., Seo S.-K., Choi J.S., Park S.-J. et al. 2011. Polyopes affinis alleviates airway inflammation in a murine model of allergic asthma. Journal of Biosciences 36: 869–877. DOI: 10.1007/s12038-011-9152-8.
  • Lourenço S.O., Barbarino E., De-Paula J.C., da Pereira L.O.S. & Marquez U.M.L. 2002. Amino acid composition, protein content and calculation of nitrogen-to-protein conversion factors for 19 tropical seaweeds. Phycological Research 50: 233–241. DOI: 10.1046/j.1440-1835.2002.00278.x.
  • Magdugo R. 2020. Marine seaweeds with economic importance in the Philippines: valuation of six species Caulerpa racemosa (Forsskål), Ulva fasciata (Delile), Sargassum polycystum (C. Agardh), Sargassum ilicifolium (Turner) C. Agardh, Halymenia durvillei (Bory de Saint-Vincent), and Halymenia dilatata (Zanardini) from the Philippines. PhD thesis. Université Bretagne Sud, Vannes, France. 276 pp.
  • Mahmood W., Khan M.H.R. & Yee T. 2014. Effects of reaction temperature on the synthesis and thermal properties of carrageenan ester. Journal of Physical Science 25: 123–138.
  • Miller I.J. & Blunt J.W. 2005. The structure of the galactan from Aeodes nitidissima (Halymeniales, Rhodophyta). Botanica Marina 48: 137–142. DOI: 10.1515/BOT.2005.014.
  • Miller I.J. 2005. The structure of the polysaccharide from Grateloupia intestinalis in New Zealand. Botanica Marina 48: 143–147. DOI: 10.1515/BOT.2005.015.
  • Min S.W. & Han J.S. 2013. Effect of Polyopes lancifolia extract on oxidative stress in human umbilical vein endothelial cells induced by high glucose. Preventive Nutrition and Food Science 18: 38–44. DOI: 10.3746/pnf.2013.18.1.038.
  • Min S.W. & Han J.S. 2014. Polyopes lancifolia extract, a potent α-glucosidase inhibitor, alleviates postprandial hyperglycemia in diabetic mice. Preventive Nutrition and Food Science 19: 5–9. DOI: 10.3746/pnf.2014.19.1.005.
  • Min S.W., Park M.H. & Han J.S. 2014. Polyopes lancifolia extracts protect INS-1 pancreatic β cells against high glucose level induced apoptosis. Food Science and Biotechnology 23: 633–640. DOI: 10.1007/s10068-014-0086-4.
  • Mineur F., De Clerck O., Le Roux A., Maggs C.A. & Verlaque M. 2010. Polyopes lancifolius (Halymeniales, Rhodophyta), a new component of the Japanese marine flora introduced to Europe. Phycologia 49: 86–96. DOI: 10.2216/09-45.1.
  • Munier M., Dumay J., Morançais M., Jaouen P. & Fleurence J. 2013. Variation in the biochemical composition of the edible seaweed Grateloupia turuturu Yamada harvested from two sampling sites on the Brittany coast (France): the influence of storage method on the extraction of the seaweed pigment R-phycoerythrin. Journal of Chemistry 2013: Article 568548. DOI: 10.1155/2013/568548.
  • Pacheco D., Cotas J., Domingues A., Ressurreição S., Bahcevandziev K. & Pereira L. 2021. Chondracanthus teedei var. lusitanicus: the nutraceutical potential of an unexploited marine resource. Marine Drugs 19: Article 570. DOI: 10.3390/md19100570.
  • Pliego-Cortés H., Bedoux G., Boulho R., Taupin L., Freile-Pelegrín Y., Bourgougnon N. & Robledo D. 2019. Stress tolerance and photoadaptation to solar radiation in Rhodymenia pseudopalmata (Rhodophyta) through mycosporine-like amino acids, phenolic compounds, and pigments in an integrated multi-trophic aquaculture system. Algal Research 41: Article 101542. DOI: 10.1016/j.algal.2019.101542.
  • Pliego-Cortés H., Hardouin K., Bedoux G., Marty C., Cérantola S., Freile-Pelegrín Y., Robledo D. & Bourgougnon N. 2022. Sulfated polysaccharides from seaweed strandings as renewable source for potential antivirals against Herpes simplex Virus 1. Marine Drugs 20: Article 116. DOI: 10.3390/md20020116.
  • Popper Z.A., Michel G., Hervé C., Domozych D.S., Willats W.G.T., Tuohy M.G., Kloareg B. & Stengel D.B. 2011. Evolution and diversity of plant cell walls: from algae to flowering plants. Annual Review of Plant Biology 62: 567–590. DOI: 10.1146/annurev-arplant-042110-103809.
  • Rodrigues D., Freitas A.C., Pereira L., Rocha-Santos T.A.P., Vasconcelos M.W., Roriz M., Rodríguez-Alcalá L.M., Gomes A.M.P. & Duarte A.C. 2015. Chemical composition of red, brown and green macroalgae from Buarcos bay in Central West Coast of Portugal. Food Chemistry 183: 197–207. DOI: 10.1016/j.foodchem.2015.03.057.
  • Saito R.M. & de Oliveira E.C. 1990. Chemical screening of Brazilian marine algae producing carrageenans. Hydrobiologia 204–205: 585–588. DOI: 10.1007/BF00040291.
  • Saunders G. & Kraft G. 1996. Small-subunit rRNA gene sequences from representatives of selected families of the Gigartinales and Rhodymeniales (Rhodophyta). 2. Recognition of the Halymeniales ord.nov. Canadian Journal of Botany 74: 694–707. DOI: 10.1139/B96-088.
  • Sen A.K., Das A.K., Sarkar K.K., Siddhanta A.K., Takano R., Kamei K. & Hara S. 2002. An agaroid-carrageenan hybrid type backbone structure for the antithrombotic sulfated polysaccharide from Grateloupia indica Boergensen (Halymeniales, Rhodophyta). Botanica Marina 45: 331–338. DOI: 10.1515/BOT.2002.033.
  • Smith P.K., Krohn R.I., Hermanson G.T., Mallia A.K., Gartner F.H., Provenzano M.D., Fujimoto E.K., Goeke N.M., Olson B.J. & Klenk D.C. 1985. Measurement of protein using bicinchoninic acid. Analytical Biochemistry 150: 76–85. DOI: 10.1016/0003-2697(85)90442-7.
  • Stiger-Pouvreau V. & Thouzeau P. 2015. Marine species introduced on the French channel-Atlantic coasts: a review of main biological invasions and impacts. Open Journal of Ecology 5: 227–257. DOI: 10.4236/oje.2015.55019.
  • Stiger-Pouvreau V., Bourgougnon N. & Deslandes E. 2016. Carbohydrates from seaweeds. In: Seaweed in health and disease prevention (Ed. by J. Fleurence & I. Levine), pp 223–274. Academic Press, Cambridge, Massachusetts, USA. DOI: 10.1016/B978-0-12-802772-1.00008-7.
  • Sun Y., Zhang N., Zhou J., Dong S., Zhang X., Guo L. & Guo G. 2020. Distribution, contents, and types of mycosporine-like amino acids (MAAs) in marine macroalgae and a database for MAAs based on these characteristics. Marine Drugs 18: Article 43. DOI: 10.3390/md18010043.
  • Talarico L.B., Zibetti R.G.M., Faria P.C.S., Scolaro L.A., Duarte M.E.R., Noseda M.D., Pujol C.A. & Damonte E.B. 2004. Anti-herpes simplex virus activity of sulfated galactans from the red seaweeds Gymnogongrus griffithsiae and Cryptonemia crenulata. International Journal of Biological Macromolecules 34: 63–71. DOI: 10.1016/j.ijbiomac.2004.03.002.
  • Thunberg C.P. 1793. Tekning och Beskrifning på en stor Ostronsort ifrån Japan. Kongliga Vetenskaps Academiens Nya Handlingar 14: 140–142.
  • van de Velde F., Knutsen S.H., Usov A.I., Rollema H.S. & Cerezo A.S. 2002. 1H and 13C high resolution NMR spectroscopy of carrageenans: application in research and industry. Trends in Food Science & Technology 13: 73–92. DOI: 10.1016/S0924-2244(02)00066-3.
  • Verma P., Kumar M., Mishra G. & Sahoo D. 2017. Multivariate analysis of fatty acid and biochemical constitutes of seaweeds to characterize their potential as bioresource for biofuel and fine chemicals. Bioresource Technology 226: 132–144. DOI: 10.1016/j.biortech.2016.11.044.
  • Yaphe W. & Arsenault G.P. 1965. Improved resorcinol reagent for the determination of fructose, and of 3,6-anhydrogalactose in polysaccharides. Analytical Biochemistry 13: 143–148. DOI: 10.1016/0003-2697(65)90128-4.
  • Yu Y., Jia X., Wang W., Jin Y., Liu W., Wang D., Mao Y., Xie C. & Liu T. 2021. Floridean starch and floridoside metabolic pathways of Neoporphyra haitanensis and their regulatory mechanism under continuous darkness. Marine Drugs 19: Article 664. DOI: 10.3390/md19120664.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.