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2024 | OriginalPaper | Buchkapitel

8. Ulvane

verfasst von : Ololade Olatunji

Erschienen in: Aquatische Biopolymere

Verlag: Springer International Publishing

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Zusammenfassung

Ulvane sind sulfatierte Polysaccharide, die in den Zellwänden von Grünalgen neben anderen Zellwandpolysacchariden vorkommen. Ihre Polymerstruktur ist gekennzeichnet durch sich wiederholende Einheiten von Disacchariden aus sulfatierter Rhamnose mit anderen Einheiten von entweder Uronsäure, Guluronsäuren oder Xylose. Sie sind lösliche Polysaccharide; daher ist ihr Extraktionsprozess im Vergleich zu anderen unlöslichen Polysacchariden relativ mild. Ulvane werden aus Ulva-Spezies der Grünalgen extrahiert. Diese Arten von Grünalgen als Rohstoffe für die Biopolymerproduktion haben den Vorteil, dass sie in vielfältigeren Lebensräumen wachsen und eine schnelle Wachstumsrate aufweisen. Die Extraktion von Ulvanen ist eine Möglichkeit, die überschüssige Ressource Grünalgen, die oft zu Algenblüten führt, zur Herstellung von hochwertigen bioaktiven Polymeren zu nutzen.

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Literatur
Zurück zum Zitat Adrien A, Bonnet A, Dufour D, Baudouin S, Maugard T, Bridiau N (2017) Pilot production of ulvans from Ulva sp. and their effects on hyaluronan and collagen production in cultured dermal fibroblasts. Carbohyd Polym 157:1306–1314CrossRef Adrien A, Bonnet A, Dufour D, Baudouin S, Maugard T, Bridiau N (2017) Pilot production of ulvans from Ulva sp. and their effects on hyaluronan and collagen production in cultured dermal fibroblasts. Carbohyd Polym 157:1306–1314CrossRef
Zurück zum Zitat Aguilar-Briseno JA, Cruz-Suarez LE, Sassi JF, Ricque-Marie D, Zapata-Benavides P, Gamboa EM, Rodriguez-Padilla C, Trejo-Avila LM (2015) Sulphated polysaccharides from ulva clathrata and cladosiphon okamuranus Seaweeds both inhibit viral attachment/entry and cell-cell fusion, in NDV Infection. Marine Drugs 13(2):697–712PubMedPubMedCentralCrossRef Aguilar-Briseno JA, Cruz-Suarez LE, Sassi JF, Ricque-Marie D, Zapata-Benavides P, Gamboa EM, Rodriguez-Padilla C, Trejo-Avila LM (2015) Sulphated polysaccharides from ulva clathrata and cladosiphon okamuranus Seaweeds both inhibit viral attachment/entry and cell-cell fusion, in NDV Infection. Marine Drugs 13(2):697–712PubMedPubMedCentralCrossRef
Zurück zum Zitat Ali MM, Agha FG (2009) Amelioration of streptozotocin-induced diabetes mellitus, oxidative stress and dyslipidemia in rats by tomato extract lycopene. Scand J Clin Lab Inv 69:371–379CrossRef Ali MM, Agha FG (2009) Amelioration of streptozotocin-induced diabetes mellitus, oxidative stress and dyslipidemia in rats by tomato extract lycopene. Scand J Clin Lab Inv 69:371–379CrossRef
Zurück zum Zitat Berri M, Slugocki C, Olivier M, Helloin E, Jacques I, Salmon H, Demais H, Le Goff M, Nyvall P, Collen (2016) Marine-sulfated polysaccharides extract of Ulva armoricana green algae exhibits an antimicrobial activity and stimulates cytokine expression by intestinal epithelial cells. J Appl Phycol 28:2999–3008CrossRef Berri M, Slugocki C, Olivier M, Helloin E, Jacques I, Salmon H, Demais H, Le Goff M, Nyvall P, Collen (2016) Marine-sulfated polysaccharides extract of Ulva armoricana green algae exhibits an antimicrobial activity and stimulates cytokine expression by intestinal epithelial cells. J Appl Phycol 28:2999–3008CrossRef
Zurück zum Zitat Berri M, Olivier M, Holbert S, Dupont J, Demais H, Le Goff M, Nyvall Collen P (2017) Ulvan from Ulva armoricana (Chlorophyta) activates the P13K/Akt signalling pathway via TLR4 to induce intestinal cytokine production. Algal Res 28:39–47CrossRef Berri M, Olivier M, Holbert S, Dupont J, Demais H, Le Goff M, Nyvall Collen P (2017) Ulvan from Ulva armoricana (Chlorophyta) activates the P13K/Akt signalling pathway via TLR4 to induce intestinal cytokine production. Algal Res 28:39–47CrossRef
Zurück zum Zitat Bird RB, Stewart WE, Lightfoot EN (2005) Transport phenomena, 2 Aufl. Wiley-India, New Delhi, S 270 Bird RB, Stewart WE, Lightfoot EN (2005) Transport phenomena, 2 Aufl. Wiley-India, New Delhi, S 270
Zurück zum Zitat Castro R, Piazzon MC, Zarra I, Leiro J, Noya M, Lamas J (2006) Stimulation of turbot phagocytes by ulva rigida C. agardh polysaccharides. Aquaculture 254:9–20CrossRef Castro R, Piazzon MC, Zarra I, Leiro J, Noya M, Lamas J (2006) Stimulation of turbot phagocytes by ulva rigida C. agardh polysaccharides. Aquaculture 254:9–20CrossRef
Zurück zum Zitat Chen D, Wu XZ, Wen ZY (2008) Sulphated polysaccharides and immune response: promoters or inhibitors. Panminerva Med 50:177–183PubMed Chen D, Wu XZ, Wen ZY (2008) Sulphated polysaccharides and immune response: promoters or inhibitors. Panminerva Med 50:177–183PubMed
Zurück zum Zitat Cho M, Yang C, Kim SM, You S (2010) Molecular characterization and biological activities of water-soluble sulfated polysaccharides from Enteromorpha prolifera. Food Sci Biotechnol 19:525–533CrossRef Cho M, Yang C, Kim SM, You S (2010) Molecular characterization and biological activities of water-soluble sulfated polysaccharides from Enteromorpha prolifera. Food Sci Biotechnol 19:525–533CrossRef
Zurück zum Zitat Fernández-Díaz C, Coste O, Malta EJ (2017) Polymer chitosan nanoparticles functionalized with Ulva ohnoi extracts boost in vitro ulvan immunostimulant effect in Solea senegalensis macrophages. Algal Res 26:135–142CrossRef Fernández-Díaz C, Coste O, Malta EJ (2017) Polymer chitosan nanoparticles functionalized with Ulva ohnoi extracts boost in vitro ulvan immunostimulant effect in Solea senegalensis macrophages. Algal Res 26:135–142CrossRef
Zurück zum Zitat Glasson CRK, Sims IM, Carnachan SM, de Nys R, Magnusson M (2017) A cascading biorefinery process targeting sulfated polysaccharides (ulvan) from Ulva ohnoi. Algal Res 27:383–391CrossRef Glasson CRK, Sims IM, Carnachan SM, de Nys R, Magnusson M (2017) A cascading biorefinery process targeting sulfated polysaccharides (ulvan) from Ulva ohnoi. Algal Res 27:383–391CrossRef
Zurück zum Zitat Hussein UK, Mahmoud HM, Farrag AG, Bishayee A (2015) Chemoprevention of diethylnitrosamine-initiated and phenobarbital-promoted hepatocarcinogenesis in rats by sulfated polysaccharides and aqueous extract of Ulva lactuca. Integr Cancer Ther 14:525–545PubMedCrossRef Hussein UK, Mahmoud HM, Farrag AG, Bishayee A (2015) Chemoprevention of diethylnitrosamine-initiated and phenobarbital-promoted hepatocarcinogenesis in rats by sulfated polysaccharides and aqueous extract of Ulva lactuca. Integr Cancer Ther 14:525–545PubMedCrossRef
Zurück zum Zitat Jaswir I, Monsur HA (2011) Anti-inflammatory compounds of macro algae origin: a review. J Med Plant Res 5:7146–7154 Jaswir I, Monsur HA (2011) Anti-inflammatory compounds of macro algae origin: a review. J Med Plant Res 5:7146–7154
Zurück zum Zitat Jiao LL, Li X, Li TB, Jiang P, Zhang LX, Wu MJ, Zhang LP (2009) Characterization and anti-tumor activity of alkali-extracted polysaccharide from Enteromorpha intestinalis. Int Immunopharmacol 9(3):324–329PubMedCrossRef Jiao LL, Li X, Li TB, Jiang P, Zhang LX, Wu MJ, Zhang LP (2009) Characterization and anti-tumor activity of alkali-extracted polysaccharide from Enteromorpha intestinalis. Int Immunopharmacol 9(3):324–329PubMedCrossRef
Zurück zum Zitat Karnjanaprakorn S, Tabarsa M, Chou M, You SG (2012) Characterization and immunomodulatory activities of sulfated polysaccharides from Capsosiphon fulvescens. Int J Biol Macromol 51:720–729CrossRef Karnjanaprakorn S, Tabarsa M, Chou M, You SG (2012) Characterization and immunomodulatory activities of sulfated polysaccharides from Capsosiphon fulvescens. Int J Biol Macromol 51:720–729CrossRef
Zurück zum Zitat Kidgell JT, Magnusson M, de Nys R, Glasson CRK (2019) Ulvan: a systematic review of extraction, composition and function 39(101422):1–20 Kidgell JT, Magnusson M, de Nys R, Glasson CRK (2019) Ulvan: a systematic review of extraction, composition and function 39(101422):1–20
Zurück zum Zitat Kim JK, Cho MI, Karnjanaprakorn S, Shin IS, You SG (2011a) In vitro and in vivo immunomodulatory activity of sulfated polysaccharides from Enteromorpha prolifera. Int J Biol Macromol 49:1051–1058PubMedCrossRef Kim JK, Cho MI, Karnjanaprakorn S, Shin IS, You SG (2011a) In vitro and in vivo immunomodulatory activity of sulfated polysaccharides from Enteromorpha prolifera. Int J Biol Macromol 49:1051–1058PubMedCrossRef
Zurück zum Zitat Kim S-K, Thomas NV, Li X (2011b) Anticancer compounds from marine macroalgae and their application as medicinal foods. Adv Food Nutr Res 64:213–224PubMedCrossRef Kim S-K, Thomas NV, Li X (2011b) Anticancer compounds from marine macroalgae and their application as medicinal foods. Adv Food Nutr Res 64:213–224PubMedCrossRef
Zurück zum Zitat Lahaye M (1998) NMR spectroscopic characterisation of oligosaccharides from two Ulva rigida ulvan samples (Ulvales, Chlorophyta) degraded by a lyase. Carbohydr Res 314:1–12PubMedCrossRef Lahaye M (1998) NMR spectroscopic characterisation of oligosaccharides from two Ulva rigida ulvan samples (Ulvales, Chlorophyta) degraded by a lyase. Carbohydr Res 314:1–12PubMedCrossRef
Zurück zum Zitat Lahaye M, Robic A (2007) Structure and functional properties of Ulvan, a polysaccharide from green seaweeds. Biomacromol 8:1765–1774CrossRef Lahaye M, Robic A (2007) Structure and functional properties of Ulvan, a polysaccharide from green seaweeds. Biomacromol 8:1765–1774CrossRef
Zurück zum Zitat Leiro JM, Castro R, Arranz JA, Lamas J (2007) Immunomodulating activities of acidic sulphated polysaccharides obtained from the seaweed Ulva rigida C. agardh. Int Immunopharmacol 7:879–888PubMedCrossRef Leiro JM, Castro R, Arranz JA, Lamas J (2007) Immunomodulating activities of acidic sulphated polysaccharides obtained from the seaweed Ulva rigida C. agardh. Int Immunopharmacol 7:879–888PubMedCrossRef
Zurück zum Zitat Li J, Jiang F, Chi Z, Han D, Yu L, Liu C (2018a) Development of Enteromorpha prolifera polysaccharide-based nanoparticles for delivery of curcumin to cancer cells. Int J Biol Macromol 112:413–421PubMedCrossRef Li J, Jiang F, Chi Z, Han D, Yu L, Liu C (2018a) Development of Enteromorpha prolifera polysaccharide-based nanoparticles for delivery of curcumin to cancer cells. Int J Biol Macromol 112:413–421PubMedCrossRef
Zurück zum Zitat Li W, Wang K, Jiang N, Liu X, Wan M, Chang X, Liu D, Qi H, Liu S (2018b) Antioxidant and antihyperlipidemic activities of purified polysaccharides from Ulva pertusa. J Appl Phycol 30(4):2619–2627CrossRef Li W, Wang K, Jiang N, Liu X, Wan M, Chang X, Liu D, Qi H, Liu S (2018b) Antioxidant and antihyperlipidemic activities of purified polysaccharides from Ulva pertusa. J Appl Phycol 30(4):2619–2627CrossRef
Zurück zum Zitat Lopes N, Ray S, Espada SF, Bomfim WA, Ray B, Faccin-Galhardi LC, Linhares REC, Nozawa C (2017) Green seaweed Enteromorpha compressa (Chlorophyta, Ulvaceae) derived sulphated polysaccharides inhibit herpes simplex virus. Int J Biol Macromol 102:605–612PubMedCrossRef Lopes N, Ray S, Espada SF, Bomfim WA, Ray B, Faccin-Galhardi LC, Linhares REC, Nozawa C (2017) Green seaweed Enteromorpha compressa (Chlorophyta, Ulvaceae) derived sulphated polysaccharides inhibit herpes simplex virus. Int J Biol Macromol 102:605–612PubMedCrossRef
Zurück zum Zitat Michel G, Czjzek C (2014) Polysaccharide-degrading enzymes from marine bacteria. Marine enzymes for biocatalysis: Sources, biocatalytic characteristics and bioprocesses of marine enzymes. Woodhead Publishing Ser Biomed 5:429–464 Michel G, Czjzek C (2014) Polysaccharide-degrading enzymes from marine bacteria. Marine enzymes for biocatalysis: Sources, biocatalytic characteristics and bioprocesses of marine enzymes. Woodhead Publishing Ser Biomed 5:429–464
Zurück zum Zitat Misurcova L, Skrivankova S, Samek D, Ambrozova J, Machu L (2012) Health benefits of algal polysaccharides in human nutrition. Adv Food Nutr Res 66:75–145PubMedCrossRef Misurcova L, Skrivankova S, Samek D, Ambrozova J, Machu L (2012) Health benefits of algal polysaccharides in human nutrition. Adv Food Nutr Res 66:75–145PubMedCrossRef
Zurück zum Zitat Peasura N, Laohakunjit N, Kerdchoechuen O, Vongsawasdi P, Chao LK (2016) Assessment of biochemical and immunomodulatory activity of sulphated polysaccharides from Ulva intestinalis. Int J Biol Macromol 91:269–277PubMedCrossRef Peasura N, Laohakunjit N, Kerdchoechuen O, Vongsawasdi P, Chao LK (2016) Assessment of biochemical and immunomodulatory activity of sulphated polysaccharides from Ulva intestinalis. Int J Biol Macromol 91:269–277PubMedCrossRef
Zurück zum Zitat Pengzhan Y, Quanbin Z, Hong Z, Xizhen N, Zhien L (2004) Preparation of polysaccharides in different molecular weights from Ulva pertusa Kjellman (Chlorophyta). Chin J Oceanol Limnol 22:381–385CrossRef Pengzhan Y, Quanbin Z, Hong Z, Xizhen N, Zhien L (2004) Preparation of polysaccharides in different molecular weights from Ulva pertusa Kjellman (Chlorophyta). Chin J Oceanol Limnol 22:381–385CrossRef
Zurück zum Zitat Qi H, Zhao T, Zhang Q, Li Z, Zhao Z, Xing R (2005) Antioxidant activity of different molecular weight sulfated polysaccharides from Ulva pertusa Kjellman (Chlorophyta). J Appl Phycol 17(6):527–534CrossRef Qi H, Zhao T, Zhang Q, Li Z, Zhao Z, Xing R (2005) Antioxidant activity of different molecular weight sulfated polysaccharides from Ulva pertusa Kjellman (Chlorophyta). J Appl Phycol 17(6):527–534CrossRef
Zurück zum Zitat Qi H, Huang L, Liu X, Liu D, Zhang Q, Liu S (2012) Antihyperlipidemic activity of high sulfate content derivative of polysaccharide extracted from Ulva pertusa (Chlorophyta). Carbohydr Polym 87:1637–1640CrossRef Qi H, Huang L, Liu X, Liu D, Zhang Q, Liu S (2012) Antihyperlipidemic activity of high sulfate content derivative of polysaccharide extracted from Ulva pertusa (Chlorophyta). Carbohydr Polym 87:1637–1640CrossRef
Zurück zum Zitat Qi XH, Mao WJ, Chen Y, Chen YL, Zhao CQ, Li N, Wang CY (2013) Chemical characteristics and anticoagulant activities of two sulfated polysaccharides from Enteromorpha linza (Chlorophyta). J Oceanogr Univ China 12:175–182CrossRef Qi XH, Mao WJ, Chen Y, Chen YL, Zhao CQ, Li N, Wang CY (2013) Chemical characteristics and anticoagulant activities of two sulfated polysaccharides from Enteromorpha linza (Chlorophyta). J Oceanogr Univ China 12:175–182CrossRef
Zurück zum Zitat Reisky L, Stanetty C, Mihovilovic MD, Schweder T, Hehemann JH, Bornscheuer UT (2018) Biochemical characterization of an ulvan lyase from the marine flavobacterium Formosa agariphila KMM 3901T. Appl Microbiol Biotechnol 102(16):6987–6996PubMedCrossRef Reisky L, Stanetty C, Mihovilovic MD, Schweder T, Hehemann JH, Bornscheuer UT (2018) Biochemical characterization of an ulvan lyase from the marine flavobacterium Formosa agariphila KMM 3901T. Appl Microbiol Biotechnol 102(16):6987–6996PubMedCrossRef
Zurück zum Zitat Rioux L, Turgeon SL (2015) Seaweed carbohydrates. In: Tiwari BK, Troy DJ (Hrsg) Seaweed sustainability: food and non-food application. Academic Press, S 141–192 Rioux L, Turgeon SL (2015) Seaweed carbohydrates. In: Tiwari BK, Troy DJ (Hrsg) Seaweed sustainability: food and non-food application. Academic Press, S 141–192
Zurück zum Zitat Robic A, Rondeau-Mouro C, Sassi JF, Lerat Y, Lahaye M (2009) Structure and interactions of ulvan in the cell wall of the marine green algae Ulva rotundata (Ulvales, Chlorophyceae). Carbohyd Polym 77:206–216CrossRef Robic A, Rondeau-Mouro C, Sassi JF, Lerat Y, Lahaye M (2009) Structure and interactions of ulvan in the cell wall of the marine green algae Ulva rotundata (Ulvales, Chlorophyceae). Carbohyd Polym 77:206–216CrossRef
Zurück zum Zitat Rybak A, Messyasz B, Laska R (2012) Freshwater Ulva (Chlorophyta) as a bioaccumulator of selected heavy metals (Cd, Ni and Pb) and alkaline earth metals (Ca and Mg). Chemosphere 89(9):1066–1076PubMedCrossRef Rybak A, Messyasz B, Laska R (2012) Freshwater Ulva (Chlorophyta) as a bioaccumulator of selected heavy metals (Cd, Ni and Pb) and alkaline earth metals (Ca and Mg). Chemosphere 89(9):1066–1076PubMedCrossRef
Zurück zum Zitat Scharnweber D, Hubner L, Rother S, Hempel U, Anderegg U, Samsonov SA, Pisabarro MT, Hofbauer L, Schnabelrauch M, Franz S, Simon J, Hintze V (2015) Glycosaminoglycan derivatives: promising candidates for the design of functional biomaterials. J Mater Sci Mater Med 26(9):232–249PubMedCrossRef Scharnweber D, Hubner L, Rother S, Hempel U, Anderegg U, Samsonov SA, Pisabarro MT, Hofbauer L, Schnabelrauch M, Franz S, Simon J, Hintze V (2015) Glycosaminoglycan derivatives: promising candidates for the design of functional biomaterials. J Mater Sci Mater Med 26(9):232–249PubMedCrossRef
Zurück zum Zitat Shao Q, He Y, Jiang, S (2011) Molecular dynamics simulation study of ion interactions with zwitterions. J Phys Chem B 115:8358–8363PubMedCrossRef Shao Q, He Y, Jiang, S (2011) Molecular dynamics simulation study of ion interactions with zwitterions. J Phys Chem B 115:8358–8363PubMedCrossRef
Zurück zum Zitat Song J, Chen X, Liu X, Zhang F, Hu L, Yue Y, Li K, Li P (2016) Characterization and comparison of the structural features, immune-modulatory and anti-avian influenza virus activities conferred by three algal sulfated polysaccharides. Mar Drugs 14(1):4CrossRef Song J, Chen X, Liu X, Zhang F, Hu L, Yue Y, Li K, Li P (2016) Characterization and comparison of the structural features, immune-modulatory and anti-avian influenza virus activities conferred by three algal sulfated polysaccharides. Mar Drugs 14(1):4CrossRef
Zurück zum Zitat Tabarsa M, Han JH, Kim CY, You SG (2012) Molecular characteristics and immunomodulatory activities of water-soluble sulfated polysaccharides from Ulva pertusa. J Med Food 15:135–144PubMedCrossRef Tabarsa M, Han JH, Kim CY, You SG (2012) Molecular characteristics and immunomodulatory activities of water-soluble sulfated polysaccharides from Ulva pertusa. J Med Food 15:135–144PubMedCrossRef
Zurück zum Zitat Tabarsa M, You s, Dabaghian EH, Surayot U (2018) Water-soluble polysaccharides from Ulva intestinalis: molecular properties, structural elucidation and immunomodulatory activities. J Food Drug Anal 26:599–608PubMedCrossRef Tabarsa M, You s, Dabaghian EH, Surayot U (2018) Water-soluble polysaccharides from Ulva intestinalis: molecular properties, structural elucidation and immunomodulatory activities. J Food Drug Anal 26:599–608PubMedCrossRef
Zurück zum Zitat Varnier AL, Sanchez L, Vatsa P, Boudesocque L, Garcia-Brugger A, Rabenoelina F, Sorokin A, Renault JH, Kauffmann S, Pugin A, Clement C, Baillieul F, Dorey S (2009) Bacterial rhamnolipids are novel MAMPs conferring resistance to Botrytis cinerea in grapevine. Plant Cell Environ 32:178–193PubMedCrossRef Varnier AL, Sanchez L, Vatsa P, Boudesocque L, Garcia-Brugger A, Rabenoelina F, Sorokin A, Renault JH, Kauffmann S, Pugin A, Clement C, Baillieul F, Dorey S (2009) Bacterial rhamnolipids are novel MAMPs conferring resistance to Botrytis cinerea in grapevine. Plant Cell Environ 32:178–193PubMedCrossRef
Zurück zum Zitat Wang XX, Chen Y, Wang JJ, Liu ZX, Zhao SG (2014) Antitumor activity of sulfated polysaccharide from Enteromorpha intestinalis targeted against hepatoma through mitochondrial pathway. Tumor Biol 35:1641–1647PubMedCrossRef Wang XX, Chen Y, Wang JJ, Liu ZX, Zhao SG (2014) Antitumor activity of sulfated polysaccharide from Enteromorpha intestinalis targeted against hepatoma through mitochondrial pathway. Tumor Biol 35:1641–1647PubMedCrossRef
Zurück zum Zitat Yabe T, Ishii Y, Amano Y, Koga T, Hayashi S, Nohara S, Tatsumoto H (2009) Green tide formed by free-floating Ulva spp. at Yatsu tidal flat, Japan. Limnology 10:239–245CrossRef Yabe T, Ishii Y, Amano Y, Koga T, Hayashi S, Nohara S, Tatsumoto H (2009) Green tide formed by free-floating Ulva spp. at Yatsu tidal flat, Japan. Limnology 10:239–245CrossRef
Zurück zum Zitat Yang F, Fang X, Jiang W, Chen T (2017) Bioresponsive cancer-targeted polysaccharide nanosystem to inhibit angiogenesis. Int J Nanomed 12:7419–7431CrossRef Yang F, Fang X, Jiang W, Chen T (2017) Bioresponsive cancer-targeted polysaccharide nanosystem to inhibit angiogenesis. Int J Nanomed 12:7419–7431CrossRef
Zurück zum Zitat Zhang Y, He P, Li H, Li G, Liu J, Jiao F, Zhang J, Huo Y, Shi X, Su R, Ye N, Liu D, Yu R, Wang Z, Zhou M, Jiao N (2019) Ulva prolifera green-tide outbreaks and their environmental impact in the Yellow Sea, China. Nat Sci Rev 0(0):1–14 Zhang Y, He P, Li H, Li G, Liu J, Jiao F, Zhang J, Huo Y, Shi X, Su R, Ye N, Liu D, Yu R, Wang Z, Zhou M, Jiao N (2019) Ulva prolifera green-tide outbreaks and their environmental impact in the Yellow Sea, China. Nat Sci Rev 0(0):1–14
Metadaten
Titel
Ulvane
verfasst von
Ololade Olatunji
Copyright-Jahr
2024
DOI
https://doi.org/10.1007/978-3-031-48282-3_8

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