354
16 Others Aquatic Biopolymers
References
Altun T, Celi F, Danabas D (2008) Bioluminescence in aquatic organisms. J Anim Vet Adv 7(7):841–
846
Barbosa EA, Oliveira A, Placido A, Soccodato R, Leite JRSA (2018) Structure and function of a
novel antioxidant peptide from the skin of tropical frogs. Free Radic Biol Med 115:68–79
Boyce CZ (2004) Evolution of xylem lignification. Proc Natl Acad Sci 101:17555–17558
Brasier AR, Tate JE, Habener JF (1989) Optimized use of the firefly luciferase assay as a reporter
gene in mammalian cell lines. Biotechniques 7(11):1116–1122
Chao L, Bowen CC (1971) Purification and properties of glycogen isolated from a blue-green alga,
Nostoc muscorum. J Bacteriol 105(1):331–338
Chen Q, Jin Y, Zhang G, Fang Y, Xiao Y, Zhao H (2012) Improving production of bioethanol from
duckweed (Landoltia punctata) by pectinase pretreatment. Energies 5:3019–3032
Conlon JM, Mechkarska M, Abdel-Wahab YH, Flatt PR (2018) Peptides from frog skin with
potential for development into agents for type 2 diabetes therapy. Peptides 100:275–281
Crowe JE (2017) Treating flu with skin of frogs. Immunity 46:517–518
Domozych DS, Sorensen I, Pettolino FA, Bacic A, Willats GTW (2010) The cell wall polymers of
the Charophycean green alga Chara corallina: immunobinding and biochemical screening. Int J
Plant Sci 171(4):345–361
Domozych DS, Ciancia M, Fangel JU, Mikkelsen MD, Ulvskov P, Willats GTW (2012) The cell
walls of green algae: a journey through evolution and diversity. Front Plant Sci 3:1–7
Ganeri A (1999) Creatures that glow. McClanahan Book Co., p 30
Harvey EN (1952) Bioluminescence. Academic Press, New York, p 649
Hayashi T, Kaida R (2011) Functions of xyloglucan in plant cells. Mol Plant 4(1):17–24
Horn SJ, Aasen IM, Østgaard K (2000a) Ethanol production from seaweed extract. J Ind Microbiol
Biotechnol 25(5):249–254
Horn SJ, Aasen IM, Østgaard K (2000b) Production of ethanol from mannitol by Zymobacter
palmae. J Ind Microbiol Biotechnol 24(1):51–57
Kim JK, Cho MI, Karnjanaprakorn S, Shin IS, You SG (2011) In vitro and in vivo immunomodulatory activity of sulfated polysaccharides from Enteromorpha prolifera. Int J Biol Macromol.
49:1051–1058
Ko S, Kang MC, Kang N, Kim H, Lee SH, Ahn G, Jung W, Jeon Y (2017) Effect of angiotensin
I-converting enzyme (ACE) inhibition and nitric oxide (NO) production of 6,6 -bieckol, a marine
algal polyphenol and its anti-hypertensive effect in spontaneously hypertensive rats. Process
Biochem 58:326–332
Konda M, Singh S, Simmons BA, Klein-Marcuschamer D (2015) An investigation on the economic
feasibility of macroalgae as a potential feedstock for biorefineries. Bioenergy Res 8:1046–1056
Kricka LJ, Smith ZM, Adcock JL, Barnett NW (2019) Bioluminescence. In: Encyclopedia of
analytical science, 3rd edn., pp 291–299
Lahaye M, Robic A (2007) Structure and functional properties of Ulvan, a polysaccharide from
green seaweeds, Biomacromolecules 8:1765–1774
Li N, Mao W, Yan M, Liu X, Xia Z, Wang S (2015) Structural characterization and anticoagulant
activity of sulfated polysaccharide from green alga Codium divaricatum. Carbohydrates Poly
121:175–182
Li T, Xu J, Wu H, Jiang P, Chen Z, Xiang W (2019) Growth and biochemical composition of
Porphyridium purpureum SCS-02 under different nitrogen concentrations. Mar Drugs 17(124):1–
16
Martone PT, Estevez JM, Lu F, Ruel K, Denny MW, Somerville C, Ralph J (2009) Discovery of
lignin in seaweed reveals convergent evolution of cell-wall architecture. Curr Biol 19(2):169–175
Pagels F, Guedes CA, Amaro MH, Kijoa A, Vasconcelos V (2019) Phycobiliproteins from
cyanobacteria: chemistry and biotechnological applications. Biotechnol Adv 37(3):422–443
Précédent

- 367/371

Suivant