Characterization of allelopathic compounds from the harmful dinoflagellate, Cochlodinium geminatum
Tài liệu tham khảo
Anderson, 2012, The globally distributed genus Alexandrium: Multifaceted roles in marine ecosystems and impacts on human health, Harmful Algae, 14, 10, 10.1016/j.hal.2011.10.012
Anderson, 2021, Marine harmful algal blooms (HABs) in the United States: History, current status and future trends, Harmful Algae, 10.1016/j.hal.2021.101975
Anderson, 2002, Harmful algal blooms and eutrophication: Nutrient sources, composition, and consequences, Estuaries, 25, 704, 10.1007/BF02804901
Bergmann, 1963, Observations on the mechanism of action and on the quantitative assay of ichthyotoxin from Prymnesium parvum carter, Toxicol. Appl. Pharmacol., 5, 637, 10.1016/0041-008X(63)90008-5
Blossom, 2014, Stability of the intra- and extracellular toxins of Prymnesium parvum using a microalgal bioassay, Harmful Algae, 32, 11, 10.1016/j.hal.2013.11.006
Ding, 2018, Hemolytic toxicity of three important harmful microalgae isolated from Pearl River Estuary, Asian J. Ecotoxicol., 13, 66
Dong, 2020, Ecological characteristics and teratogenic retinal determination of Cochlodinium geminatum blooms in Pearl River Estuary, South China, Ecotoxicol. Environ. Saf., 191, 10.1016/j.ecoenv.2020.110226
Elert, 1997, Phosphorus limitation and not light controls the extracellular release of allelopathic compounds by Trichormus doliolum (Cyanobacteria), Limnol. Oceanogr., 42, 1796, 10.4319/lo.1997.42.8.1796
Emura, 2004, Evidence for the production of a novel proteinaceous hemolytic exotoxin by dinoflagellate Alexandrium taylori, Harmful Algae, 3, 29, 10.1016/j.hal.2003.08.004
Glibert, 2005, The global, complex phenomena of harmful algal blooms, Oceanog, 18, 130
Gobler, 2012, Ecosystem disruptive algal blooms of the brown tide species, Aureococcus anophagefferens and Aureoumbra lagunensis, Harmful Algae, 14, 36, 10.1016/j.hal.2011.10.013
Granéli, 2006, Allelopathy in Harmful Algae: A Mechanism to Compete for Resources?, 189
Granéli, 2008, Harmful algal blooms of allelopathic microalgal species: The role of eutrophication, Harmful Algae, 8, 94, 10.1016/j.hal.2008.08.011
Guillard, 1975, Culture of phytoplankton for feeding marine invertebrates, 29
Hu, 2018, The morphological and phylogenetic characterization for the dinoflagellate Margalefidinium fulvescens (= Cochlodinium fulvescens) isolated from Jiaozhou Bay, China. Acta Oceanol. Sin., 37, 11, 10.1007/s13131-018-1295-0
Keating, 1977, Allelopathic influence on blue-green bloom sequence in a eutrophic lake, Science, 196, 885, 10.1126/science.196.4292.885
Kubanek, 2005, Does the red tide dinoflagellate Karenia brevis use allelopathy to outcompete other phytoplankton?, Limnol. Oceanogr., 50, 883, 10.4319/lo.2005.50.3.0883
Lan, 2014
Li, 2005, Isolation and characterization of a novel antialgal allelochemical from Phragmites communis, Appl. Environ. Microbiol., 71, 6545, 10.1128/AEM.71.11.6545-6553.2005
Liu, 2000, Hypersalinity enhances the production of extracellular polymeric substance (eps) in the texas brown tide alga, aureoumbra lagunensis (PELAGOPHYCEAE), J. Phycol., 36, 71, 10.1046/j.1529-8817.2000.99076.x
Ma, 2009, Preliminary characterization of extracellular allelochemicals of the toxic marine dinoflagellate Alexandrium tamarense using a Rhodomonas salina bioassay, Mar. Drugs, 7, 497, 10.3390/md7040497
Ma, 2011, Isolation of activity and partial characterization of large non-proteinaceous lytic allelochemicals produced by the marine dinoflagellate Alexandrium tamarense, Harmful Algae, 11, 65, 10.1016/j.hal.2011.07.004
Ou, 2010, The outbreak of Cochlodinium geminatum bloom in Zhuhai, Guangdong. J. Trop. Oceanogr., 29, 57
Pang, 2015, Preliminary Environmental Analysis of the Evolution of Cochlodinium geminatum Bloom in the Pearl River Estuary, Ecol. Environ. Sci., 24, 286
Prince, 2008, Effects of harmful algal blooms on competitors: Allelopathic mechanisms of the red tide dinoflagellate Karenia brevis, Limnol. Oceanogr., 53, 531, 10.4319/lo.2008.53.2.0531
Prince, 2010, Characterization of allelopathic compounds from the red tide dinoflagellate Karenia brevis, Harmful Algae, 10, 39, 10.1016/j.hal.2010.06.003
Qiu, 2013, Apical groove type and molecular phylogeny suggests reclassification of Cochlodinium geminatum as Polykrikos geminatum, PLoS One, 8, e71346, 10.1371/journal.pone.0071346
Schwartz, 2016, Chemical ecology of marine plankton, Nat. Prod. Rep., 33, 843, 10.1039/C6NP00015K
Shen, 2012, Morphology and bloom dynamics of Cochlodinium geminatum (Schütt) Schütt in the Pearl River Estuary, South China Sea, Harmful Algae, 13, 10, 10.1016/j.hal.2011.09.009
Śliwińska-Wilczewska, 2021, The current state of knowledge on taxonomy, modulating factors, ecological roles, and mode of action of phytoplankton allelochemicals, Sci. Total Environ., 773, 10.1016/j.scitotenv.2021.145681
Smayda, 1997, Harmful algal blooms: Their ecophysiology and general relevance to phytoplankton blooms in the sea, Limnol. Oceanogr., 42, 1137, 10.4319/lo.1997.42.5_part_2.1137
Sun, 2012, Growth inhibition of Karenia mikimitoi by extracts from Gracilaria lemaneiformis using five solvents, 199
Tameishi, 2009, Allelopathic effects of the dinophyte Prorocentrum minimum on the growth of the bacillariophyte Skeletonema costatum, Harmful Algae, 8, 421, 10.1016/j.hal.2008.09.002
Tang, 2009, Characterization of the toxicity of Cochlodinium polykrikoides isolates from Northeast US estuaries to finfish and shellfish, Harmful Algae, 8, 454, 10.1016/j.hal.2008.10.001
Tang, 2010, Allelopathic effects of Cochlodinium polykrikoides isolates and blooms from the estuaries of Long Island, New York, on co-occurring phytoplankton, Mar. Ecol. Prog. Ser., 406, 19, 10.3354/meps08537
Wang, 2011, Effects of Cochlodinium bloom in Pearl River Estuary in China on the growth of other harmful algal bloom species, J. Shenzhen Univ. Sci. Eng., 28, 553
Wu, 2013, Acute toxicity of Cochlodinium geminatum bloom waters from Pearl River Estuary on larvae of brine shrimp,fish and shrimp, J. Fish. China, 37, 1328, 10.3724/SP.J.1231.2013.38620
Xu, 2015, Ability of the marine diatoms Pseudo-nitzschia multiseries and P. pungens to inhibit the growth of co-occurring phytoplankton via allelopathy, Aquat. Microb. Ecol., 74, 29, 10.3354/ame01724
Yamasaki, 2009, Extracellular polysaccharide-protein complexes of a harmful alga mediate the allelopathic control it exerts within the phytoplankton community, ISME J, 3, 808, 10.1038/ismej.2009.24
Yan, 2019, Allelopathic effects and mechanisms of Cochlodinium geminatum isolated from the Pearl River Estuary, J. Appl. Phycol., 31, 2957, 10.1007/s10811-019-01784-y
Yang, 2019, A comparative study on the allelopathy and toxicity of four strains of Karlodinium veneficum with different culturing histories, J. Plankton Res., 41, 17, 10.1093/plankt/fby047
Yang, 2014, Allelopathic effect of Microcystis aeruginosa on Microcystis wesenbergii: microcystin-LR as a potential allelochemical, Hydrobiologia, 727, 65, 10.1007/s10750-013-1787-z
Yang, 2020, Allelopathic effects of mixotrophic dinoflagellate Akashiwo sanguinea on co-occurring phytoplankton: the significance of nutritional ecology, J. Ocean. Limnol.