Bugula neritina 0.0

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References

Year Title Authors Publication Type Readers
1972 Bugula neritina Woollaeott R, Zimmer R, Catalina S, Biological M Planta Medica, 170(S 2), 165-170p
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doi:10.1055/s-2006-960270
Journal Article 4
1905 Bryozoan Bugula neritina Feeder S Bulletin of the American Museum of Natural History, , p Journal Article 1
1987 Dispersal and population variation in the bryozoan Bugula neritina Keough M, Chernoff H Ecology, 68(1), 199-210p
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issn:00129658
Journal Article 6
1989 Variation in Growth Rate and Reproduction of the Bryozoan Bugula neritina Keough J City, 177(2), 277-286p Journal Article 5
2010 Steroids from the marine bryozoan Bugula neritina Tang H, Wang Z, Zhang H, Cheng P, Piao S, Chen W, Lin H Chemistry of Natural Compounds, 46(3), 390-392p Journal Article 1
2006 Differential tolerance to metals among populations of the introduced bryozoan Bugula neritina Piola R, Johnston Æ Marine Biology, 148(5), 997-1010p
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issn:00253162 isbn:0022700501 doi:10.1007/s00227-005-0156-5
Journal Article 14
2006 Ontogeny of a symbiont-produced chemical defense in Bugula neritina (Bryozoa) Lopanik N, Targett N, Lindquist N Marine Ecology Progress Series, 327, 183-191p
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issn:01718630 doi:10.3354/meps327183
Journal Article 8
2009 Diel variation in the sizes of larvae of Bugula neritina in field populations. Kosman E, Pernet B The Biological Bulletin, 216(1), 85-93p
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pmid:19218495
Journal Article 5
2011 Sterols of marine bryozoan Bugula neritina from the South China Sea Hu J, Lei H, Zhou X, Yang Y, Sun J, Liu Y Zhong yao cai Zhongyaocai Journal of Chinese medicinal materials, 34(2), 180-183p
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pmid:21823470
Journal Article 2
1997 Serotonin and Dopamine Have Opposite Effects on Phototaxis in Larvae of the Bryozoan Bugula neritina Pires A Biological Bulletin Woods Hole, 192, 399-409p Journal Article 5
1999 Identification and biosynthetic origins of sterols in the marine bryozoan bugula neritina Kerr R, Vicchiarelli R, Kerr S Journal of Natural Products, 62(3), 468-70p
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pmid:10096860 issn:15206025 doi:10.1021/np9804740
Journal Article 2
1972 Fine structure of a potential photoreceptor organ in the larva of Bugula neritina (Bryozoa). Zimmer R, Wooliacott R Zeitschrift fur Zellforschung und mikroskopische Anatomie Vienna Austria 1948, 123(4), 458-469p
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pmid:4333927
Journal Article 4
2005 Identifying bryostatins and potential precursors from the bryozoan Bugula neritina. Manning T, Land M, Rhodes E, Chamberlin L, Rudloe J, Phillips D, Lam T, Purcell J, Cooper H, Emmett M, Marshall A Natural Product Research, 19(5), 467-491p
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pmid:15938194
Journal Article 1
1989 Dispersal of the bryozoan Bugula neritina and effects of adults on newly metamorphosed juveniles Keough M Marine Ecology Progress Series, 57, 163-171p
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issn:01718630 doi:10.3354/meps057163
Journal Article 4
2007 Studies on chemical constituents of marine bryozoan Bugula neritina L. Cheng P, Lin H, Tang H, Gao W, Lu Y Zhong yao cai Zhongyaocai Journal of Chinese medicinal materials, 30(6), 655-657p
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pmid:17918431
Journal Article 0
1987 Effect of Cultured Diatiom Films on the Settlement of Larvae of a Bryozoan Bugula neritina. Kitamura H, Hirayama K Nippon Suisan Gakkaishi, 53(8), 1383-1385p Journal Article 3
2001 Purification and characterization of the fatty acid synthase from Bugula neritina. Wen J, Kerr R Comparative biochemistry and physiology Part B Biochemistry molecular biology, 128(3), 445-450p
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pmid:11250539
Journal Article 0
1971 Attachment and metamorphosis of the cheilo-ctenostome bryozoan Bugula neritina (Linné) Zimmer R, Woollacott R Journal of Morphology, 134, 351-382p Journal Article 2
1990 Seasonally occurring lectins from the bryozoan Bugula neritina. Colon-Urban R, Oppenheim J The Journal of experimental zoology, 254(2), 138-143p
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pmid:2348167
Journal Article 0
1987 Effects of Primary Films on the Settlement of Larvae of a Bryozoan Bugula neritina. Kitamura H, Hiroyama K Nippon Suisan Gakkaishi, 53(8), 1377-1381p Journal Article 1
1985 The effect of low salinity on the early growth of a bryozoan bugula neritina in the sea and laboratory Kitamura H, Hirayama K Bulletin Of The Japanese Society Of Scientific Fisheries, 51, 1401-1405p Journal Article 1
1984 Growth of the colony and maturation of zooids of a bryozoan bugula neritina in the sea Kitamura H, Hirayama K Marine Fouling, 5, 9-14p Journal Article 1
1972 Fine structure of a potential photoreceptor organ in the larva of Bugula neritina (Bryozoa) Zimmer R, Woollacott R Zeitschrift für Zellforschung, 123, 458-469p Journal Article 1
1972 Origin and Structure of the Brood Chamber in Bugula neritina (Bryozoa) Zimmer R, Woollacott R Marine Biology, 16, 165-170p Journal Article 1
1972 Fine structure of a potential photoreceptor organ in the larva of Bugula neritina (Bryozoa) Zimmer R, Woollacott R Zeitschrift für Zellforschung, 123, 458-469p Journal Article 1
1946 Toxic effects of copper on attachment and growth of Bugula neritina. Miller M The Biological Bulletin, 90, 122-140p
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pmid:21023416 clml:4610:986a
Journal Article 1
2003 Cryptic species, cryptic endosymbionts, and geographical variation in chemical defences in the bryozoan Bugula neritina. McGovern T, Hellberg M Molecular Ecology, 12(5), 1207-1215p
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pmid:12694284
Journal Article 26
2010 Rapid transcriptome and proteome profiling of a non-model marine invertebrate, Bugula neritina. Qian P, Wang H, Zhang H, Wong Y, Voolstra C, Ravasi T, B Bajic V Proteomics, 10(16), 2972-2981p
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pmid:20540116
Journal Article 13
2006 Facilitation and inhibition of larval attachment of the bryozoan Bugula neritina in association with mono-species and multi-species biofilms Dobretsov S, Qian P Journal of Experimental Marine Biology and Ecology, 333(2), 263-274p
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issn:00220981 doi:10.1016/j.jembe.2006.01.019
Journal Article 12
2007 Availability of dissolved organic matter offsets metabolic costs of a protracted larval period for Bugula neritina (Bryozoa) Johnson C, Wendt D Marine Biology, 151(1), 301-311p
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issn:00253162 isbn:0022700604920 doi:10.1007/s00227-006-0492-0
Journal Article 12
2007 Localization of 'Candidatus Endobugula sertula' and the bryostatins throughout the life cycle of the bryozoan Bugula neritina. Sharp K, Davidson S, Haygood M The ISME journal, 1(8), 693-702p
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pmid:18059493
Journal Article 10
2007 Optimized maintenance and larval production of the bryozoan Bugula neritina (Bugulidae: Gymnolaemata) in the laboratory Dahms H, Gao Q, Hwang J Aquaculture, 265(1-4), 169-175p
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issn:00448486 doi:10.1016/j.aquaculture.2007.01.029
Journal Article 10
2001 Evidence for the biosynthesis of bryostatins by the bacterial symbiont "Candidatus Endobugula sertula" of the bryozoan Bugula neritina. Davidson S, Allen S, Lim G, Anderson C, Haygood M Applied and Environmental Microbiology, 67(10), 4531-4537p
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oai_id:oai:pubmedcentral.nih.gov:93199 pmid:11571152 other:0465 pmc_id:93199 doi:10.1128/AEM.67.10.4531-4537.2001
Journal Article 9
2004 bryA: an unusual modular polyketide synthase gene from the uncultivated bacterial symbiont of the marine bryozoan Bugula neritina. Sherman D, Hildebrand M, Waggoner L, Liu H, Sudek S, Allen S, Anderson C, Haygood M Chemistry & Biology, 11(11), 1543-1552p
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pmid:15556005
Journal Article 9
1998 Effect of Larval Swimming Duration on Growth and Reproduction of Bugula neritina (Bryozoa) under Field Conditions Wendt D Biological Bulletin, 195(2), 126p
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issn:00063185 doi:10.2307/1542820
Journal Article 10
2006 Isolation of Two Polyketide Synthase Gene Fragments from the Uncultured Microbial Symbiont of the Marine Bryozoan Bugula neritina Targett N, Lopanik N, Lindquist N Applied and Environmental Microbiology, 72(12), 7941-7944p
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oai_id:oai:pubmedcentral.nih.gov:1694266 pmid:16997977 other:1277-06 pmc_id:1694266 doi:10.1128/AEM.01277-06
Journal Article 7
1996 Effect of Larval Swimming Duration on Success of Metamorphosis and Size of the Ancestrular Lophophore in Bugula neritina (Bryozoa) Wendt D Biological Bulletin, 191(2), 224-233p
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issn:00063185 doi:10.2307/1542925
Journal Article 9
1998 Functional partitioning of energy reserves by larvae of the marine bryozoan Bugula neritina (L.). Hunter E, Okano K, Tomono Y, Fusetani N Journal of Experimental Biology, 201(Pt 20), 2857-2865p
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pmid:9739068 issn:14779145
Journal Article 8
2004 Structure of bryostatin 20: a symbiont-produced chemical defense for larvae of the host bryozoan, Bugula neritina. Lindquist N, Lopanik N, Gustafson K Journal of Natural Products, 67(8), 1412-1414p
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pmid:15332866
Journal Article 7
2010 Dependency on de novo protein synthesis and proteomic changes during metamorphosis of the marine bryozoan Bugula neritina Qian P, Zhang H, Wong Y, Ravasi T, Arellano S Proteome Science, 8, 25p
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oai_id:oai:pubmedcentral.nih.gov:2890537 pmid:20497544 other:1477-5956-8-25 pmc_id:2890537 doi:10.1186/1477-5956-8-25
Journal Article 4
2000 Localisation of biogenic amines in larvae of Bugula neritina ( Bryozoa : Cheilostomatida ) and their effects on settlement Hunter E, Fusetani N, Shimizu K Marine Biotechnology, 136(1), 1-9p Journal Article 6
1996 Morphology and Behavior of Isolated Living Cells From Bugula neritina Larvae ( Bryozoa : Cheilostomaita ) Okano K, Hunter E, Fusetani N Exposure, 160(2), 138-150p
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issn:0022104X
Journal Article 6
1998 Effect of larval swimming duration on growth and reproduction of Bugula neritina (Bryozoa) under field conditions Wendt D Biological Bulletin, 195(2), 126-135p
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issn:00063185
Journal Article 6
2007 Attachment of the biofouling bryozoan Bugula neritina larvae affected by inorganic and organic chemical cues Yu X, Yan Y, Gu J International Biodeterioration Biodegradation, 60(2), 81-89p
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doi:10.1016/j.ibiod.2006.12.003
Journal Article 3
2010 Changes in the proteome and phosphoproteome expression in the bryozoan Bugula neritina larvae in response to the antifouling agent butenolide. Qian P, Wong Y, Zhang Y Proteomics, 10(19), 3435-3446p
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pmid:20827734
Journal Article 3
1999 Role of protein in larval swimming and metamorphosis of Bugula neritina (Bryozoa: Cheilostomatida) Hunter E, Fusetani N, Shimizu K Marine Biology, 133(4), 701-707p
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issn:00253162 doi:10.1007/s002270050511
Journal Article 8
1991 The large-scale isolation of bryostatin 1 from Bugula neritina following current good manufacturing practices. Schaufelberger D, Koleck M, Beutler J, Vatakis A, Alvarado A, Andrews P, Marzo L, Muschik G, Roach J, Ross J Journal of Natural Products, 54(5), 1265-1270p
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pmid:1800630
Journal Article 4
2004 Identification of bryostatins in Bugula neritina extracts by high performance liquid chromatography and Q-Tof mass spectrometry Sun P, Li L, Yi Y, Zhang S, Zhou D, Zhang S Se pu Chinese journal of chromatography Zhongguo hua xue hui, 22(2), 144-146p
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pmid:15712873
Journal Article 1
1994 Rates of energy consumption and acquisition by lecithotrophic larvae of Bugula neritina ( Bryozoa : Cheilostomata ) Jaeckle W Marine Biology, 119(4), 517-523p
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issn:00253162 doi:10.1007/BF00354313
Journal Article 6
1992 Post-settlement success of the arborescent Bryozoan Bugula neritina (L.): the importance of structural complexity Walters L Journal of Experimental Marine Biology and Ecology, 164(1), 55-71p Journal Article 2
1999 Role of protein in larval swimming and metamorphosis of Bugula neritina (Bryozoa: Cheilostomatida) Hunter E, Fusetani N, Shimizu K Marine Biology, 133, 701–707p Journal Article 2
1971 Attachment and Metamorphosis o f the Cheilo-ctenostome Bryozoan Bugula neritina ( Linne ) ' J Zimmer R, Woollacott R Journal of Morphology, 134(3), 351-382p
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issn:03622525 doi:10.1002/jmor.1051340307
Journal Article 5
2011 Quantitative proteomics identify molecular targets that are crucial in larval settlement and metamorphosis of Bugula neritina. Qian P, Wang H, Zhang H, Wong Y, Ravasi T, Arellano S, Chen Z Journal of Proteome Research, 10(1), 349-360p
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pmid:21090758
Journal Article 0
2011 Anthropogenic structures as a spatial refuge from predation for the invasive bryozoan Bugula neritina Dumont C, Harris L, Gaymer C Marine Ecology Progress Series, 427, 95-103p
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issn:01718630 doi:10.3354/meps09040
Journal Article 1
1990 Particle-size, flow velocity, and suspension-feeding by the erect bryozoans bugula-neritina and bugula-stolonifera Okamura B Marine Biology, 105(1), 33-38p Journal Article 1
1990 Particle size, flow velocity, and suspension-feeding by the erect bryozoans Bugula neritina and B. stolonifera Okamura B Marine Biology, 105(1), 33-38p
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issn:00253162
Journal Article 3
1984 Suitable Food Plankton for Growth of a Bryozoan Bugula neritina under Laboratory Conditions. Kitamura H, Hirayama K Bulletin Of The Japanese Society Of Scientific Fisheries, 50(6), 973-977p Journal Article 3
2009 Ceramides and cerebrosides from the marine bryozoan Bugula neritina inhabiting South China Sea. Tang H, Lin H, Tian X, Li Y, Ma N, Zhang W, Yao M Journal of Asian Natural Products Research, 11(12), 1005-1012p
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pmid:20183269
Journal Article 0
1998 Functional partitioning of energy reserves by larvae of the marine bryozoan Bugula neritina (L.) Hunter E, Okano K, Tomono Y, Fusetani N Journal of Experimental Biology, 201, 2857–2865p Journal Article 2
1995 An improved source of bryostatin 10, Bugula neritina from the Gulf of Aomori, Japan. Kamano Y, Zhang H, Hino A, Yoshida M, Pettit G, Herald C, Itokawa H Journal of Natural Products, 58(12), 1868-1875p
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pmid:8691208
Journal Article 0
2000 Localisation of biogenic amines in larvae of Bugula neritina (Bryozoa: Cheilostomatida) and their effects on settlement. Hunter E, Fusetani N, Shimizu K Marine Biology, 136(1), 1-9p Journal Article 1
1996 In vitro biosynthetic studies of the bryostatins, anti-cancer agents from the marine bryozoan Bugula neritina Kerr R, Lawry J, Gush K Tetrahedron Letters, 37(46), 8305-8308p Journal Article 1
1984 Structure of Bryostatin 4. An important Antineoplastic Constituent of Geographically Diverse Bugula neritina (Bryozoa) Kamano Y, Pettit G, Herald C, Tozawa M Journal of the American Chemical Society, 106, 6768-6771p Journal Article 1
1962 On the fixation and assimilation of iodine (I-131) by a bryozoan. Bugula neritina L. Roche J, Andre S, Covelli I Comptes Rendus Des Seances De La Societe De Biologie Et De Ses Filiales, 156, 1817-1822p
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pmid:13974542
Journal Article 0
1998 Settlement of the serpulid polychaete Hydroides elegans (Haswell) on the arborescent bryozoan Bugula neritina (L.): evidence of a chemically mediated relationship Bryan P, Kreider J, Qian P Journal of Experimental Marine Biology and Ecology, 220(2), 171-190p
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issn:00220981 doi:10.1016/S0022-0981(97)00105-6
Journal Article 11
2006 Invasion patterns inferred from cytochrome oxidase I sequences in three bryozoans, Bugula neritina, Watersipora subtorquata, and Watersipora arcuata Mackie J, Keough M, Christidis L Marine Biology, 149(2), 285-295p
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issn:00253162 isbn:0022700501 doi:10.1007/s00227-005-0196-x
Journal Article 14
2009 Complete mitochondrial genome of Bugula neritina (Bryozoa, Gymnolaemata, Cheilostomata): phylogenetic position of Bryozoa and phylogeny of lophophorates within the Lophotrochozoa Jang K, Hwang U BMC Genomics, 10(1), 167p
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oai_id:oai:pubmedcentral.nih.gov:2678162 pmid:19379522 other:1471-2164-10-167 pmc_id:2678162 doi:10.1186/1471-2164-10-167
Journal Article 11
1999 Identification of sibling species of the bryozoan Bugula neritina that produce different anticancer bryostatins and harbor distinct strains of the bacterial symbiont "Candidatus Endobugula sertula". Davidson S, Haygood M The Biological Bulletin, 196(3), 273-280p
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pmid:10390826
Journal Article 11
1982 Mechanisms of Rapid Morphogenetic Movements in the Metamorphosis of the Bryozoan Bugula neritina ( Cheilostomata , Cellularioidea ). 1 . Attachment to the Substratum Reed C Journal of Morphology, 348(3), 335-348p
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issn:03622525 doi:10.1002/jmor.1051720308
Journal Article 5
2011 The effect of butenolide on behavioral and morphological changes in two marine fouling species, the barnacle Balanus amphitrite and the bryozoan Bugula neritina. Qian P, Zhang Y, Wang G, Ying X, Sougrat R Biofouling, 27(5), 467-475p
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pmid:21604216
Journal Article 0
2004 Adrenoceptor compounds prevent the settlement of marine invertebrate larvae: Balanus amphitrite (Cirripedia), Bugula neritina (Bryozoa) and Hydroides elegans (Polychaeta). Qian P, Dahms H, Jin T Biofouling, 20(6), 313-321p
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pmid:15804715
Journal Article 1
2000 Can bacterivory sustain survival and growth in early juveniles of the bryozoan Bugula neritina, the polychaete Hydroides elegans and the barnacle Balanus amphitrite? Gosselin L, Qian P Marine Ecology Progress Series, 192, 163-172p
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issn:01718630 doi:10.3354/meps192163
Journal Article 2
1947 The behavior and metamorphosis of the larva of Bugula neritina (Linnaeus); experimental modification of the length of the free-swimming period and the responses of the larvae to light and gravity. Lynch W The Biological Bulletin, 92(2), 115-150p
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pmid:20294096 clml:4712:1016m
Journal Article 2
1947 The behaviour and metamorphosis of the larvae of Bugula neritina (Linnaeus): experimental modification of the length of the free-swimming period and the responses of the larvae to light and gravity Lynch W Biological Bulletin, 92, 115-150p Journal Article 1
1964 ON THE FIXATION AND UTILIZATION OF IODINE (I-131) BY 2 BRYOZOA, BUGULA NERITINA L. AND SCHIZOPORELLA ERRATA (WATERS, 1878) Roche J, Andre S, Covelli I Comparative biochemistry and physiology, 11, 215-221p
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pmid:14158591
Journal Article 0
2007 Identification of the putative bryostatin polyketide synthase gene cluster from "Candidatus Endobugula sertula", the uncultivated microbial symbiont of the marine bryozoan Bugula neritina. Sherman D, Haygood M, Hildebrand M, Waggoner L, Liu H, Sudek S, Anderson C, Lopanik N, Patel A Journal of Natural Products, 70(1), 67-74p
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pmid:17253852
Journal Article 17
1998 Small-subunit rRNA genes and in situ hybridization with oligonucleotides specific for the bacterial symbionts in the larvae of the bryozoan Bugula neritina and proposal of "Candidatus endobugula sertula". Davidson S, Haygood M Applied and Environmental Microbiology, 64(4), 4612-4616p
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oai_id:oai:pubmedcentral.nih.gov:106199 pmid:9361448 pmc_id:168781
Journal Article 4
1983 Mechanisms of Rapid Morphogenetic Movements in the Metamorphosis of the Bryozoan Bugula neritina ( Cheilostomata , Cellularioidea ): II . The Role of Dynamic Assemblages of Microfilaments in the Pallial Epithelium Reed C, Woollacott R Comparative and General Pharmacology, 143, 127-143p Journal Article 6
2009 Reversible anti-settlement activity against Amphibalanus (=Balanus) amphitrite, Bugula neritina, and Hydroides elegans by a nontoxic pharmaceutical compound, mizolastine. Qian P, Zhou X, Xu Y, Jin C Biofouling, 25(8), 739-747p
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pmid:20183132
Journal Article 0
2000 SEASONALITY AND SPATIAL DISTRIBUTION OF PERACARIDS ASSOCIATED WITH THE BRYOZOAN BUGULA NERITINA IN Algeciras Bay constitutes a 30 km coast- suffered large human interventions since the A multidisciplinary research program was conducted in Algeciras Bay fr , Bay A, Conradi M, López-González P, Cervera J, García-Gómez J, Cádiz D, Cádiz E Journal of Crustacean Biology, 20, 334-349p Journal Article 1
1964 ON THE COMPARATIVE BIOCHEMISTRY OF IODIDE TRANSPORT. ACTION OF VARIOUS ANTITHYROID SUBSTANCES ON IODIDE FIXATION BY A BRYOZOAN (BUGULA NERITINA L.) AND BY A GREEN ALGA (ULVA SP.) Roche J, Andre S Comptes Rendus Des Seances De La Societe De Biologie Et De Ses Filiales, 158, 1310-1316p
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pmid:14210561
Journal Article 0
1948 Biocromos (pigmentos) de invertebrados marinhos: I - Briozoarios Villela G Memórias do Instituto Oswaldo Cruz, 46(2), 459-471p
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issn:00740276 doi:10.1590/S0074-02761948000200005
Journal Article 1
2009 Dispersal and Population Variation in the Bryozoan Bugula Neritina Author ( s ): Micheal J . Keough and Helen Chernoff Published by : Ecological Society of America Stable URL : http://www.jstor.org/stable/1938820 Your use of the JSTOR archive indicates yo Sharp W, Chisman H America, 68(1), 199-210p
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issn:00129658
Journal Article 17
1964 Effects of antifouling paints on settling larvae of the bryozoan Bugula neritina L : Wisely, B., 1963 Aust. J. Mar. Fresh. Res., 14 (1): 45–59 Wisely B Deep Sea Research and Oceanographic Abstracts, 11(6), 982p Journal Article 1
1964 ON THE COMPARATIVE BIOCHEMISTRY OF IODIDE TRANSPORT. UNCOUPLING OF OXIDATIVE PHOSPHORYLATIONS BY 2,4-DINITROPHENOL AND IODIDE BINDING BY A BRYOZOAN (BUGULA NERITINA L.) AND AN ALGA (ULVA SP.) IN THE PRESENCE OF LIGHT AND DARKNESS. Roche J, Andre S Comptes Rendus Des Seances De La Societe De Biologie Et De Ses Filiales, 158, 1465-1470p
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pmid:14250550
Journal Article 0
1993 Chemical bioactivity of Mediterranean benthic organisms against embryos and larvae of marine invertebrates Martin D, Uriz M Journal of Experimental Marine Biology and Ecology, 173(1), 11-27p
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1983 A direct and active influence of gravity on the behavior of a marine invertebrate larva. Pires A, Woollacott R Science, 220(4598), 731-733p
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Journal Article 0
2004 Candidatus Endobugula glebosa ,” a Specific Bacterial Symbiont of the Marine Bryozoan Bugula simplex Haygood M, Lim G Society, 70(8), 4921-4929p
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issn:00992240 doi:10.1128/AEM.70.8.4921
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2004 "Candidatus Endobugula glebosa," a specific bacterial symbiont of the marine bryozoan Bugula simplex. Haygood M, Lim G Applied and Environmental Microbiology, 70(8), 4921-4929p
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oai_id:oai:pubmedcentral.nih.gov:492373 pmid:15294832 other:0298-04 pmc_id:492373 doi:10.1128/AEM.70.8.4921-4929.2004
Journal Article 3
2003 Variation in the dispersal potential of non-feeding invertebrate larvae: the desperate larva hypothesis and larval size Keough M, Marshall D Marine Ecology Progress Series, 255(2001), 145-153p
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2000 Energetics of larval swimming and metamorphosis in four species of Bugula (Bryozoa). Wendt D The Biological Bulletin, 198(3), 346-356p
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1999 Ontogenies of Phototactic Behavior and Metamorphic Competence in Larvae of Three Species of Bugula (Bryozoa) Wendt D, Woollacott R Invertebrate Biology, 118(1), 75-84p
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1967 A Comparative Study of Cheilostome Bryozoa at Yokosuka, Maizuru, and Sasebo, Japan Long E, Ruckeri J Water, 23(1), 56-69p
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1971 Substrate Selection in Caprellid Amphipods of Southern California, with Emphasis on Caprella californica Stimpson and Caprella equilibra Say (Amphipoda) Keith D Pacific Science, 25(3), 387-394p
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1985 Antineoplastic agents 100 : The marine bryozoan Amathia convoluta Kamano Y, Pettit G, Herald C, Aoyagi R, Doubek D, Schmidt J, Rudloe J Tetrahedron, 41(6), 985-994p Journal Article 1
1943 General Literature Neritina B, Lynch W New York, 7(2), 177-178p
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1999 Endoscopic observations of invertebrate larval substratum exploration and settlement Walters L, Miron G, Bourget E Marine Ecology Progress Series, 182, 95-108p
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Journal Article 9
2004 The effect of bacterial and diatom biofilms on the settlement of the bryozoan Dobretsov S, Qian P, Dahms H Journal of Experimental Marine Biology and Ecology, 313(1), 191-209p
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2009 Abstracts of the 11th International Congress on Amino Acids, Peptides and Proteins. August 3-7, 2009. Vienna, Austria. Maryanoff B Amino Acids, 37 Suppl 1, S2-S127p
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2004 Potent cytotoxins produced by a microbial symbiont protect host larvae from predation. Lindquist N, Lopanik N, Targett N Oecologia, 139(1), 131-139p
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1997 Settlement inhibition of bryozoan larvae by bacterial films and aqueous leachates Bryan P, Rittschof D, Qian P Bulletin of Marine Science, 61(3), 849-857p
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2005 Marine introductions in the Shark Bay World Heritage Property, Western Australia: a preliminary assessment Wyatt A, Hewitt C, Walker D, Ward T Diversity Distributions, 11(1), 33-44p
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1994 Larval settlement in hard substratum epifaunal assemblages: a manipulative field study of the effects of substratum filming and the presence of incumbents Todd C, Keough M Journal of Experimental Marine Biology and Ecology, 181(2), 159-187p
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1987 Effects of the gastropod, Ilyanassa obsoleta (Say), and the bivalve, Mercenaria mercenaria (L.), on larval settlement and juvenile recruitment of infauna Hunt J, Ambrose Jr. W, Peterson C Journal of Experimental Marine Biology and Ecology, 108(3), 229-240p
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