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Search Results |
Clonal structure through space and time: High stability in the holothurian Stichopus chloronotus (Echinodermata)., Pirog A, Gélin P, Bédier A, Bianchetti G, Georget S, Frouin P, Magalon H., Ecol Evol. August 14, 2017; 7 (18): 7534-7547.
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Complete mitochondrial genome of the phenotypically-diverse sea urchin Strongylocentrotus intermedius (Strongylocentrotidae, Echinoidea)., Balakirev ES, Pavlyuchkov VA, Ayala FJ., Mitochondrial DNA B Resour. September 4, 2017; 2 (2): 613-614.
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Coexposure to sulfamethoxazole and cadmium impairs development and attenuates transcriptional response in sea urchin embryo., Ragusa MA, Costa S, Cuttitta A, Gianguzza F, Nicosia A., Chemosphere. August 1, 2017; 180 275-284.
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Characterization of a metalloprotease involved in Vibrio splendidus infection in the sea cucumber, Apostichopus japonicus., Zhang C, Liang W, Zhang W, Li C., Microb Pathog. December 1, 2016; 101 96-103.
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Cloning and comparative analysis the proximal promoter activities of arginase and agmatinase genes in Apostichopus japonicus., Shao Y, Li C, Zhang W, Xu W, Duan X, Li Y, Qiu Q, Jin C., Dev Comp Immunol. December 1, 2016; 65 299-308.
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Changes in collagenous tissue microstructures and distributions of cathepsin L in body wall of autolytic sea cucumber (Stichopus japonicus)., Liu YX, Zhou DY, Ma DD, Liu YF, Li DM, Dong XP, Tan MQ, Du M, Zhu BW., Food Chem. December 1, 2016; 212 341-8.
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Can crabs kill like a keystone predator? A field-test of the effects of crab predation on mussel mortality on a northeast Pacific rocky shore., Hull WW, Bourdeau PE., PLoS One. August 4, 2017; 12 (8): e0183064.
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Comparative studies on the skeletogenic mesenchyme of echinoids., Minokawa T., Dev Biol. July 15, 2017; 427 (2): 212-218.
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Consistent multi-level trophic effects of marine reserve protection across northern New Zealand., Edgar GJ, Stuart-Smith RD, Thomson RJ, Freeman DJ., PLoS One. May 8, 2017; 12 (5): e0177216.
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Collagenous Extracellular Matrix Biomaterials for Tissue Engineering: Lessons from the Common Sea Urchin Tissue., Goh KL, Holmes DF., Int J Mol Sci. April 25, 2017; 18 (5):
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Comparative toxicity of seven rare earth elements in sea urchin early life stages., Trifuoggi M, Pagano G, Guida M, Palumbo A, Siciliano A, Gravina M, Lyons DM, Burić P, Levak M, Thomas PJ, Giarra A, Oral R., Environ Sci Pollut Res Int. September 1, 2017; 24 (25): 20803-20810.
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Characterization and expression analysis of Galnts in developing Strongylocentrotus purpuratus embryos., Famiglietti AL, Wei Z, Beres TM, Milac AL, Tran DT, Patel D, Angerer RC, Angerer LM, Tabak LA., PLoS One. April 17, 2017; 12 (4): e0176479.
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Complete mitochondrial genome of the sandfish Holothuria scabra (Holothuroidea, Holothuriidae)., Xia J, Ren C, Yu Z, Wu X, Qian J, Hu C., Mitochondrial DNA A DNA Mapp Seq Anal. November 1, 2016; 27 (6): 4174-4175.
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Cryo-FIB-SEM serial milling and block face imaging: Large volume structural analysis of biological tissues preserved close to their native state., Vidavsky N, Akiva A, Kaplan-Ashiri I, Rechav K, Addadi L, Weiner S, Schertel A., J Struct Biol. December 1, 2016; 196 (3): 487-495.
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Concomitance of oligotrophy and low grazing pressure is essential for the resilience of Mediterranean subtidal forests., Piazzi L, Ceccherelli G., Mar Pollut Bull. October 15, 2017; 123 (1-2): 197-204.
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Characteristics of N-Acylhomoserine Lactones Produced by Hafnia alvei H4 Isolated from Spoiled Instant Sea Cucumber., Hou HM, Zhu YL, Jiang F, Qu WY, Zhang GL, Hao HS., Sensors (Basel). April 5, 2017; 17 (4):
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Ceramide as a Target of Marine Triterpene Glycosides for Treatment of Human Myeloid Leukemia., Yun SH, Shin SW, Stonik VA, Park JI., Mar Drugs. November 3, 2016; 14 (11):
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Cryptic speciation in pan-tropical sea urchins: a case study of an edge-of-range population of Tripneustes from the Kermadec Islands., Bronstein O, Kroh A, Tautscher B, Liggins L, Haring E., Sci Rep. July 20, 2017; 7 (1): 5948.
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Characterization of a Sea Urchin IQ Motif Containing Protein D as a Coactivator of Nuclear Receptors., Kim MA, Sohn YC., Zoolog Sci. June 1, 2017; 34 (3): 235-241.
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Characterization of a novel hatching enzyme purified from starfish Asterina pectinifera., Choi JH, Kim SM., Springerplus. November 3, 2016; 5 (1): 1998.
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Chemical and structural characterization of α-N-acetylgalactosaminidase I and II from starfish, asterina amurensis., Rashid MH, Sadik G, Alam AK, Tanaka T., BMC Biochem. May 25, 2017; 18 (1): 9.
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Consumption of aquaculture waste affects the fatty acid metabolism of a benthic invertebrate., White CA, Bannister RJ, Dworjanyn SA, Husa V, Nichols PD, Kutti T, Dempster T., Sci Total Environ. May 15, 2017; 586 1170-1181.
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Comparative study of three phenoloxidases in the sea cucumber Apostichopus japonicus., Jiang J, Zhou Z, Dong Y, Chen Z, Sun H, Yang A, Gao S, Su H., Fish Shellfish Immunol. August 1, 2017; 67 11-18.
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Comparative evaluation of sea-urchin larval stage sensitivity to ocean acidification., Passarelli MC, Cesar A, Riba I, DelValls TA., Chemosphere. October 1, 2017; 184 224-234.
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Curacin E from the Brittle Star Ophiocoma scolopendrina., Ueoka R, Hitora Y, Ito A, Yoshida M, Okada S, Takada K, Matsunaga S., J Nat Prod. October 28, 2016; 79 (10): 2754-2757.
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Conformational and physicochemical properties of fucosylated chondroitin sulfate from sea cucumber Apostichopus japonicus., Xu X, Xue C, Chang Y, Chen F., Carbohydr Polym. November 5, 2016; 152 26-32.
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Characteristic oligosaccharides released from acid hydrolysis for the structural analysis of chondroitin sulfate., Lu J, Ai C, Guo L, Fu Y, Cao C, Song S., Carbohydr Res. September 8, 2017; 449 114-119.
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Cytotoxic effects of the anthraquinone derivatives 1'-deoxyrhodoptilometrin and (S)-(-)-rhodoptilometrin isolated from the marine echinoderm Comanthus sp., Wätjen W, Ebada SS, Bergermann A, Chovolou Y, Totzke F, Kubbutat MHG, Lin W, Proksch P., Arch Toxicol. March 1, 2017; 91 (3): 1485-1495.
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Cellular localization of relaxin-like gonad-stimulating peptide expression in Asterias rubens: New insights into neurohormonal control of spawning in starfish., Lin M, Mita M, Egertová M, Zampronio CG, Jones AM, Elphick MR., J Comp Neurol. May 1, 2017; 525 (7): 1599-1617.
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Characterization of sea cucumber (stichopus japonicus) ovum hydrolysates: calcium chelation, solubility and absorption into intestinal epithelial cells., Sun N, Cui P, Lin S, Yu C, Tang Y, Wei Y, Xiong Y, Wu H., J Sci Food Agric. October 1, 2017; 97 (13): 4604-4611.
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Comparative analysis of immunocompetence between females and males in the sea cucumber Apostichopus japonicus., Jiang J, Zhou Z, Dong Y, Gao S, Sun H, Chen Z, Yang A, Su H., Fish Shellfish Immunol. April 1, 2017; 63 438-443.
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Cloning, expression and functional characterization of the polyunsaturated fatty acid elongase (ELOVL5) gene from sea cucumber (Apostichopus japonicus)., Li W, Feng Z, Song X, Zhu W, Hu Y., Gene. November 15, 2016; 593 (1): 217-224.
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Cell-mediated immune response of postmetamorphic sea urchin juveniles against infectious stages of diatom Cylindrotheca closterium (Bacillariophyceae)., Magesky A, Belzile C, Pelletier É., J Invertebr Pathol. September 1, 2017; 148 124-128.
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Crossing the Divide: Admixture Across the Antarctic Polar Front Revealed by the Brittle Star Astrotoma agassizii., Galaska MP, Sands CJ, Santos SR, Mahon AR, Halanych KM., Biol Bull. June 1, 2017; 232 (3): 198-211.
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Cladolosides I1, I2, J1, K1, K2 and L1, monosulfated triterpene glycosides with new carbohydrate chains from the sea cucumber Cladolabes schmeltzii., Silchenko AS, Kalinovsky AI, Avilov SA, Andryjaschenko PV, Dmitrenok PS, Chingizova EA, Dolmatov IY, Kalinin VI., Carbohydr Res. June 5, 2017; 445 80-87.
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Chain conformational and physicochemical properties of fucoidans from sea cucumber., Xu X, Xue C, Chang Y, Jiang K., Carbohydr Polym. November 5, 2016; 152 433-440.
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Characterization of NLRP3-like gene from Apostichopus japonicus provides new evidence on inflammation response in invertebrates., Lv Z, Wei Z, Zhang Z, Li C, Shao Y, Zhang W, Zhao X, Li Y, Duan X, Xiong J., Fish Shellfish Immunol. September 1, 2017; 68 114-123.
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Calaxin establishes basal body orientation and coordinates movement of monocilia in sea urchin embryos., Mizuno K, Shiba K, Yaguchi J, Shibata D, Yaguchi S, Prulière G, Chenevert J, Inaba K., Sci Rep. September 7, 2017; 7 (1): 10751.
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Correction: An anterior signaling center patterns and sizes the anterior neuroectoderm of the sea urchin embryo., Range RC, Wei Z., Development. April 15, 2017; 144 (8): 1579.
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Comparison between mouse and sea urchin orthologs of voltage-gated proton channel suggests role of S3 segment in activation gating., Sakata S, Miyawaki N, McCormack TJ, Arima H, Kawanabe A, Özkucur N, Kurokawa T, Jinno Y, Fujiwara Y, Okamura Y., Biochim Biophys Acta. December 1, 2016; 1858 (12): 2972-2983.
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Characterization and expression analysis of a thioredoxin-like protein gene in the sea cucumber Apostichopus japonicus., Cheng S, Li C, Wang Y, Yang L, Chang Y., Fish Shellfish Immunol. November 1, 2016; 58 165-173.
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Carbohydrate recognition by the rhamnose-binding lectin SUL-I with a novel three-domain structure isolated from the venom of globiferous pedicellariae of the flower sea urchin Toxopneustes pileolus., Hatakeyama T, Ichise A, Unno H, Goda S, Oda T, Tateno H, Hirabayashi J, Sakai H, Nakagawa H., Protein Sci. August 1, 2017; 26 (8): 1574-1583.
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cDNA cloning, expression and immune function analysis of a novel Rac1 gene (AjRac1) in the sea cucumber Apostichopus japonicus., Li K, Liu L, Shang S, Wang Y, Zhan Y, Song J, Zhang X, Chang Y., Fish Shellfish Immunol. October 1, 2017; 69 218-226.
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Comparative stability of dimeric and monomeric pigments extracted from sea urchin Strongylocentrotus droebachiensis., Shikov AN, Ossipov VI, Karonen M, Pozharitskaya ON, Krishtopina AS, Makarov VG., Nat Prod Res. August 1, 2017; 31 (15): 1747-1751.
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Calcium transport into the cells of the sea urchin larva in relation to spicule formation., Vidavsky N, Addadi S, Schertel A, Ben-Ezra D, Shpigel M, Addadi L, Weiner S., Proc Natl Acad Sci U S A. November 8, 2016; 113 (45): 12637-12642.
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Cytotoxic triterpene diglycosides from the sea cucumber Stichopus horrens., Cuong NX, Vien LT, Hoang L, Hanh TTH, Thao DT, Thanh NV, Nam NH, Thung DC, Kiem PV, Minh CV., Bioorg Med Chem Lett. July 1, 2017; 27 (13): 2939-2942.
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Contributions of molecular size, charge distribution, and specific amino acids to the iron-binding capacity of sea cucumber (Stichopus japonicus) ovum hydrolysates., Sun N, Cui P, Jin Z, Wu H, Wang Y, Lin S., Food Chem. September 1, 2017; 230 627-636.
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Characterization of Metabolic Pathways and Absorption of Sea Cucumber Saponins, Holothurin A and Echinoside A, in Vitro and in Vivo., Song S, Zhang L, Cao J, Xiang G, Cong P, Dong P, Li Z, Xue C, Xue Y, Wang Y., J Food Sci. August 1, 2017; 82 (8): 1961-1967.
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Cerebrosides from Sea Cucumber Protect Against Oxidative Stress in SAMP8 Mice and PC12 Cells., Che H, Du L, Cong P, Tao S, Ding N, Wu F, Xue C, Xu J, Wang Y., J Med Food. April 1, 2017; 20 (4): 392-402.
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Characterization of TRPA channels in the starfish Patiria pectinifera: involvement of thermally activated TRPA1 in thermotaxis in marine planktonic larvae., Saito S, Hamanaka G, Kawai N, Furukawa R, Gojobori J, Tominaga M, Kaneko H, Satta Y., Sci Rep. May 19, 2017; 7 (1): 2173.
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