Academic literature on the topic 'Amphidinium'

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Journal articles on the topic "Amphidinium"

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Orefice, Ida, Sergio Balzano, Giovanna Romano, and Angela Sardo. "Amphidinium spp. as a Source of Antimicrobial, Antifungal, and Anticancer Compounds." Life 13, no. 11 (2023): 2164. http://dx.doi.org/10.3390/life13112164.

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Dinoflagellates make up the second largest marine group of marine unicellular eukaryotes in the world ocean and comprise both heterotrophic and autotrophic species, encompassing a wide genetic and chemical diversity. They produce a plethora of secondary metabolites that can be toxic to other species and are mainly used against predators and competing species. Dinoflagellates are indeed often responsible for harmful algal bloom, where their toxic secondary metabolites can accumulate along the food chain, leading to significant damages to the ecosystem and human health. Secondary metabolites fro
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Luo, Zhaohe, Na Wang, Hala F. Mohamed, et al. "Amphidinium stirisquamtum sp. nov. (Dinophyceae), a new marine sand-dwelling dinoflagellate with a novel type of body scale." Algae 36, no. 4 (2021): 241–61. http://dx.doi.org/10.4490/algae.2021.36.8.27.

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Amphidinium species are amongst the most abundant benthic dinoflagellates in marine intertidal sandy ecosystems. Some of them produce a variety of bioactive compounds that have both harmful effects and pharmaceutical potential. In this study, Amphidinium cells were isolated from intertidal sand collected from the East China Sea. The two strains established were subjected to detailed examination by light, and scanning and transmission electron microscopy. The vegetative cells had a minute, irregular, and triangular-shaped epicone deflected to the left, thus fitting the description of Amphidiniu
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Molina-Miras, Alejandro, Alejandro Bueso-Sánchez, María del Carmen Cerón-García, Asterio Sánchez-Mirón, Antonio Contreras-Gómez, and Francisco García-Camacho. "Effect of Nitrogen, Phosphorous, and Light Colimitation on Amphidinol Production and Growth in the Marine Dinoflagellate Microalga Amphidinium carterae." Toxins 14, no. 9 (2022): 594. http://dx.doi.org/10.3390/toxins14090594.

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The marine dinoflagellate microalga Amphidinium carterae is a source of amphidinols, a fascinating group of polyketide metabolites potentially useful in drug design. However, Amphidinium carterae grows slowly and produces these toxins in tiny amounts, representing a hurdle for large-scale production. Understanding dinoflagellate growth kinetics under different photobioreactor conditions is imperative for promoting the successful implementation of a full-scale integrated bioproduct production system. This study evaluates the feasibility of growing Amphidinium carterae under different ranges of
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Kubota, Takaaki, Takahiro Iwai, Haruaki Ishiyama, Kanae Sakai, Tohru Gonoi, and Jun’ichi Kobayashi. "Amphidinin G, a putative biosynthetic precursor of amphidinin A from marine dinoflagellate Amphidinium sp." Tetrahedron Letters 56, no. 8 (2015): 990–93. http://dx.doi.org/10.1016/j.tetlet.2015.01.058.

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Bicudo, Carlos Eduardo de Mattos. "Criptógamos do Parque Estadual das Fontes do Ipiranga, São Paulo, SP. Algas, 32: Dinophyceae (famílias Dinococcaceae, Gymnodiniaceae e Hemidiniaceae)." Hoehnea 38, no. 1 (2011): 97–108. http://dx.doi.org/10.1590/s2236-89062011000100008.

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Levantamento florístico dos representantes das famílias Dinococcaceae, Gymnodiniaceae e Hemidiniaceae (Dinophyceae) do Parque Estadual das Fontes do Ipiranga, São Paulo, Brasil. Cinco gêneros (Amphidinium, Dinococcus, Gymnodinium, Hemidinium e Katodinium) e 14 espécies (quatro de Amphidinium, quatro de Hemidinium, três de Gymnodinium, duas de Katodinium e uma de Dinococcus) e duas variedades que não são as típicas de suas respectivas espécies foram identificados. Amphidinium kesslitzii Schiller var. kesslitzii, Gymnodinium fuscum (Ehrenberg) Stein e Hemidinium brasiliense C. Bicudo & Skvor
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Kubota, Takaaki, Takahiro Iwai, Kanae Sakai, Tohru Gonoi, and Jun’ichi Kobayashi. "Amphidinins C–F, Amphidinolide Q Analogues from Marine Dinoflagellate Amphidinium sp." Organic Letters 16, no. 21 (2014): 5624–27. http://dx.doi.org/10.1021/ol502685z.

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Kubota, Takaaki, Tetsuya Endo, Yohei Takahashi, Masashi Tsuda, and Jun'ichi Kobayashi. "Amphidinin B, a New Polyketide Metabolite from Marine Dinoflagellate Amphidinium sp." Journal of Antibiotics 59, no. 8 (2006): 512–16. http://dx.doi.org/10.1038/ja.2006.72.

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Durán-Riveroll, Lorena María, Oscar E. Juárez, Yuri B. Okolodkov, et al. "Morphological and Molecular Characterization of the Benthic Dinoflagellate Amphidinium from Coastal Waters of Mexico." Phycology 3, no. 2 (2023): 305–24. http://dx.doi.org/10.3390/phycology3020020.

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The genus Amphidinium Clap. & J. Lachm. comprises a high diversity of planktonic and benthic (epiphytic and sand-dwelling) dinoflagellates from marine and freshwater ecosystems. High morphological plasticity and vaguely defined genus characteristics (e.g., a small epicone size) have complicated the clear delineation of species boundaries. Although six Amphidinium morphospecies have been reported from Mexican coastal waters, species identifications are uncertain and not generally supported by molecular phylogenetic data. In this study, seven isolates of Amphidinium from diverse benthic coas
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Murray, Shauna, Mårten Flø Jørgensen, Niels Daugbjerg, and Leslie Rhodes. "AMPHIDINIUM REVISITED. II. RESOLVING SPECIES BOUNDARIES IN THE AMPHIDINIUM OPERCULATUM SPECIES COMPLEX (DINOPHYCEAE), INCLUDING THE DESCRIPTIONS OF AMPHIDINIUM TRULLA SP. NOV. AND AMPHIDINIUM GIBBOSUM. COMB. NOV.1." Journal of Phycology 40, no. 2 (2004): 366–82. http://dx.doi.org/10.1046/j.1529-8817.2004.03132.x.

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Kubota, Takaaki, Takahiro Iwai, Haruaki Ishiyama, Kanae Sakai, Tohru Gonoi, and Jun'ichi Kobayashi. "ChemInform Abstract: Amphidinin G, a Putative Biosynthetic Precursor of Amphidinin A from Marine Dinoflagellate Amphidinium sp." ChemInform 46, no. 25 (2015): no. http://dx.doi.org/10.1002/chin.201525239.

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Dissertations / Theses on the topic "Amphidinium"

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Zimmermann, Leigh A. "Environmental regulation of toxin production : comparison of hemolytic activity of Amphidinium carterae and Amphidinium klebsii /." Electronic version (PDF), 2006. http://dl.uncw.edu/etd/2006/zimmermannl/leighzimmermann.pdf.

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Nisbet, Ruth Ellen Rutherford. "The chloroplast genome of the dinoflagellate Amphidinium operculatum." Thesis, University of Cambridge, 2004. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.616033.

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Vallerotto, Sara. "Synthèse totale de l'Amphidinolide N." Thesis, Université Paris-Saclay (ComUE), 2016. http://www.theses.fr/2016SACLS289/document.

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Les dinoflagellés sont des microorganismes marins (phytoplanctons) qui ont démontrés être source importante de toxines. Une attention particulière a été donnée au genre Amphidinium, qui a la particularité de vivre en symbiose avec des vers plats marins (plathelminthe) présents dans la baie d’Okinawa. L’équipe du professeur Kobayashi a isolé différentes espèces d’Amphidinium et élucidé les structures de ces métabolites secondaires: les amphidinolides. Kobayashi et ses collaborateurs ont ensuite déterminé l’activité cytotoxique de ces molécules. En particulier, nous nous sommes tournés vers la s
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Koumandou, Vassiliki Lila. "Molecular genetics of the chloroplast in the dinoflagellate Amphidinium operculatum." Thesis, University of Cambridge, 2006. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.613657.

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Hofmann, Eckhard. "Strukturanalyse der Lichtsammler Peridinin-Chlorophyll Alpha-Proteine (PCPs) von Amphidinium carterae und Heterocapsa pygmaea /." [S.l. : s.n.], 1999. http://www.bsz-bw.de/cgi-bin/xvms.cgi?SWB8312568.

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Liu, Xiaojuan [Verfasser], and Uwe-G. [Akademischer Betreuer] Maier. "Genetic compartmentalization in the complex plastid of Amphidinium carterae and the endomembrane system (ES) in Phaeodactylum tricornutum / Xiaojuan Liu. Betreuer: Uwe-G. Maier." Marburg : Philipps-Universität Marburg, 2015. http://d-nb.info/108029841X/34.

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Jones, Grant D. "Discovery, Phylogenetic Analysis, and Functional Characterization of a Unique Family of Eukaryotic Translation Initiation Factor 4E, eIF4E, From Amphidinium carterae, a Marine Dinoflagellate." Thesis, University of Maryland, Baltimore, 2016. http://pqdtopen.proquest.com/#viewpdf?dispub=10118645.

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<p> This study investigates the eIF4E family members in Dinoflagellates. Dinoflagellates are eukaryotic algae with large genomes and a minimal role for transcriptional regulation. All mRNA in dinoflagellates is <i>trans </i>-spliced with a 22-nucleotide 5'-spliced-leader sequence bearing a multi-methylated cap. Like other eukaryotes, dinoflagellates encode multiple eIF4E family members that are anticipated to fulfill a range of functions. Three distinct and novel clades of eIF4E have been recognized in dinoflagellates that are separate from the three metazoan classes of eIF4E. The dinoflagella
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Yamazaki, Hiroyuki, Kazuyo Ukai, Michio Namikoshi та ін. "放線菌Streptomyces bangladeshensisの培養液および渦鞭毛藻Amphidinium sp.の培養藻体から単離したジ(2-エチルへキシル)フタレート(DEHP)の14C濃度測定結果について". 名古屋大学年代測定資料研究センター, 2013. http://hdl.handle.net/2237/20192.

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Hsu, Ya-Wen, and 許雅雯. "Bioactive Compounds of Dinoflagellate Amphidinium carterae." Thesis, 2003. http://ndltd.ncl.edu.tw/handle/56240960741234897848.

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碩士<br>國立臺灣大學<br>漁業科學研究所<br>91<br>It has been known that dinoflagellate are rich in various bioactive compounds. Among our cultured dinflagellate clones we paid our attention to the strain of Amphidinium carterae AC09, due to its toxicities to mice and brine shrimp larvae. AC09 was cultured under controlled conditions for consistent results. Ethanol extract of AC09 Cell biomass was partitioned to CHCl3 and BuOH further separation. Directed by cell line cytotoxicity, both extracts went through a series of column chromatographic separations, in an order of LH-20 gel permeation, Si flash column, a
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Kuo, Jhih-Ming, and 郭誌明. "Studies on the constituents of marine cyanobacterium Lyngbya majuscula and dinoflagellate Amphidinium carterae." Thesis, 2008. http://ndltd.ncl.edu.tw/handle/v34xxb.

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碩士<br>國立東華大學<br>海洋生物科技研究所<br>96<br>New bioactive natural products have been recently isolated from marine cyanobacterium, Lyngbya majuscula and dinoflagellates, Amphidinium carterae. Extensive fractionation of the crude methanol/dichloromethane (1:1, v/v) extract from a Kenting collection of L. majuscula led to the discovery of six secondary metabolites, a new bislactone, 3-methoxy debromoaplysiatoxin (1), a new cyclic depsipeptide, chuanfanamide (2), two pheophorbide-related compounds 3, 4 and two new aniline derivatives 5, 6. In addition, among our cultured dinoflagellate clones we cultured
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Book chapters on the topic "Amphidinium"

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Oishi, Tohru. "A Long Journey Toward Structure Revision and Total Synthesis of Amphidinol 3." In Modern Natural Product Synthesis. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-1619-7_3.

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AbstractAmphidinol 3 (AM3) is a super-carbon-chain compound isolated from the dinoflagellate Amphidinium klebsii. Although the absolute configuration of AM3 was determined in 1999 by instrumental analysis in combination with degradation of the natural product, it was a daunting task because of its limited availability from natural sources and presence of around 70% of chiral centers on the acyclic carbon chain. During the course of our synthetic studies of AM3, the originally proposed structure was revised, which was confirmed by the first total synthesis of AM3 in 2020, more than 20 years sin
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Hiller, R. G., P. M. Wrench, and F. P. Sharples. "Amino Acid Sequences of the Light-Harvesting Proteins of the Dinoflagellate Amphidinium Carterae." In Photosynthesis: from Light to Biosphere. Springer Netherlands, 1995. http://dx.doi.org/10.1007/978-94-009-0173-5_5.

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Smith, T. Cavalier. "The Kingdom Chromista." In The Chromophyte Algae. Oxford University PressOxford, 1990. http://dx.doi.org/10.1093/oso/9780198577133.003.0020.

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Abstract The Chromista is one of six ultrastructurally distinct eukaryote kingdoms; all chromists have epiciliary retronemes (formerly called thrust-reversing tubular mastigonemes) and/or chloroplasts located inside the rough endoplasmic reticulum. There is molecular and ultrastructural evidence that the kingdom originated by a single symbiotic event between two eukaryotes very soon after the symbiotic origin of mitochondria and chloroplasts. Dinozoa are not included in the Chromista (or in Chromophyta sensu strictuf) but a phycobilin-containing peridinean, like Amphidinium wigrense, was proba
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Ryu, JA, SJ Park, IH Kim, HJ Hwang, CH Kim, and TJ Nam. "Harmful Microalgae,Amphidinium cartarae, Regulates the IGF-IR Signaling Pathway in Human Colon Cancer Cells." In The Endocrine Society's 92nd Annual Meeting, June 19–22, 2010 - San Diego. Endocrine Society, 2010. http://dx.doi.org/10.1210/endo-meetings.2010.part1.p3.p1-141.

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Conference papers on the topic "Amphidinium"

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LAMPOURA, STEFANIA S., B. P. KRUEGER, I. H. M. VAN STOKKUM, et al. "ENERGY TRANSFER IN THE PERIDININ CHLOROPHYLL a PROTEIN OF AMPHIDINIUM CARTERAE STUDIED BY POLARIZED ABSORPTION MEASUREMENTS." In Proceedings of 2000 International Conference. WORLD SCIENTIFIC, 2001. http://dx.doi.org/10.1142/9789812811387_0066.

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