| 1 |
PAERL H W, HUISMAN J.. Blooms like it hot. Science, 2008, 320 (5872): 57- 58.
|
| 2 |
BORMANS M, AMZIL Z, MINEAUD E, et al.. Demonstrated transfer of cyanobacteria and cyanotoxins along a freshwater-marine continuum in France. Harmful Algae, 2019, 87, 101639.
|
| 3 |
OVERLINGĖ D, KATARŽYTĖ M, VAIČIŪTĖ D, et al.. Are there concerns regarding cHAB in coastal bathing waters affected by freshwater-brackish continuum?. Marine Pollution Bulletin, 2020, 159, 111500.
|
| 4 |
PREECE E P, HARDY F J, MOORE B C, et al.. A review of microcystin detections in Estuarine and Marine waters: Environmental implications and human health risk. Harmful Algae, 2017, 61, 31- 45.
|
| 5 |
MERILUOTO J, SPOOF L, CODD G A. Handbook of Cyanobacterial Monitoring and Cyanotoxin Analysis [M]. Chichester: John Wiley & Sons, 2016.
|
| 6 |
HARKE M J, STEFFEN M M, GOBLER C J, et al.. A review of the global ecology, genomics, and biogeography of the toxic Cyanobacterium, Microcystis spp.. Harmful Algae, 2016, 54, 4- 20.
|
| 7 |
FALFUSHYNSKA H, KASIANCHUK N, SIEMENS E, et al.. A review of common cyanotoxins and their effects on fish. Toxics, 2023, 11 (2): 118.
|
| 8 |
周贝贝, 谢立莹, 薛庆举, 等.. 太湖水体微囊藻毒素长期(1999—2021)变化特征及健康风险评估. 长江流域资源与环境, 2024, 33 (4): 844- 854.
|
| 9 |
GEORGES DES AULNOIS M, ROUX P, CARUANA A, et al.. Physiological and metabolic responses of freshwater and brackish-water strains of Microcystis aeruginosa acclimated to a salinity gradient: Insight into salt tolerance. Applied and Environmental Microbiology, 2019, 85 (21): e01614- e01619.
|
| 10 |
ROSS C, WARHURST B C, BROWN A, et al.. Mesohaline conditions represent the threshold for oxidative stress, cell death and toxin release in the cyanobacterium Microcystis aeruginosa. Aquatic Toxicology, 2019, 206, 203- 211.
|
| 11 |
WOOD J D, FRANKLIN R B, GARMAN G, et al.. Exposure to the cyanotoxin microcystin arising from interspecific differences in feeding habits among fish and shellfish in the James River Estuary, Virginia. Environmental Science & Technology, 2014, 48 (9): 5194- 5202.
|
| 12 |
KOSIBA J, KRZTOŃ W, WILK-WOŹNIAK E.. Effect of microcystins on proto- and metazooplankton is more evident in artificial than in natural waterbodies. Microbial Ecology, 2018, 75 (2): 293- 302.
|
| 13 |
KURBATOVA S, BEREZINA N, YERSHOV I, et al.. The separate and joint influence of cyanobacteria bloom and dense Elodea canadensis beds on freshwater crustacean abundance and reproduction: Evidence from a microcosm experiment. Fundamental and Applied Limnology, 2021, 195 (2): 95- 109.
|
| 14 |
JIA J M, SHI W Q, CHEN Q W, et al.. Spatial and temporal variations reveal the response of zooplankton to cyanobacteria. Harmful Algae, 2017, 64, 63- 73.
|
| 15 |
JIANG X D, YANG W, ZHANG L H, et al.. Predation and cyanobacteria jointly facilitate competitive dominance of small-bodied cladocerans. Journal of Plankton Research, 2014, 36 (4): 956- 965.
|
| 16 |
ALI GER K, URRUTIA-CORDERO P, FROST P C, et al.. The interaction between cyanobacteria and zooplankton in a more eutrophic world. Harmful Algae, 2016, 54, 128- 144.
|
| 17 |
刘文宇. 浑河流域(沈阳段)浮游生物时空分布特征及生态健康评价 [D]. 辽宁 大连: 大连海洋大学, 2024.
|
| 18 |
GRAHAM J L, JONES J R, JONES S B, et al.. Environmental factors influencing microcystin distribution and concentration in the Midwestern United States. Water Research, 2004, 38 (20): 4395- 4404.
|
| 19 |
ZILLIGES Y, KEHR J C, MEISSNER S, et al.. The cyanobacterial hepatotoxin microcystin binds to proteins and increases the fitness of Microcystis under oxidative stress conditions. PLoS One, 2011, 6 (3): e17615.
|
| 20 |
MARTÍN-LUNA B, BES M T, PELEATO M L, et al.. Variation in the synthesis of microcystin in response to saline and osmotic stress in Microcystis aeruginosa PCC7806. Limnetica, 2015, 34, 205- 214.
|
| 21 |
VISSER P M, VERSPAGEN J M H, SANDRINI G, et al.. How rising CO2 and global warming may stimulate harmful cyanobacterial blooms. Harmful Algae, 2016, 54, 145- 159.
|
| 22 |
PAERL H W, HUISMAN J.. Climate change: A catalyst for global expansion of harmful cyanobacterial blooms. Environmental Microbiology Reports, 2009, 1 (1): 27- 37.
|
| 23 |
KURTZ T, ZENG T, ROSARIO-ORTIZ F L.. Photodegradation of cyanotoxins in surface waters. Water Research, 2021, 192, 116804.
|
| 24 |
LAHTI K, RAPALA J, FÄRDIG M, et al.. Persistence of cyanobacterial hepatotoxin, microcystin-LR in particulate material and dissolved in lake water. Water Research, 1997, 31 (5): 1005- 1012.
|
| 25 |
GARCIA-PICHEL F, CASTENHOLZ R W.. Occurrence of UV-absorbing, mycosporine-like compounds among cyanobacterial isolates and an estimate of their screening capacity. Applied and Environmental Microbiology, 1993, 59 (1): 163- 169.
|
| 26 |
EHLING-SCHULZ M, BILGER W, SCHERER S.. UV-B-induced synthesis of photoprotective pigments and extracellular polysaccharides in the terrestrial cyanobacterium Nostoc commune. Journal of Bacteriology, 1997, 179 (6): 1940- 1945.
|
| 27 |
RÉVEILLON D, GEORGES DES AULNOIS M, SAVAR V, et al.. Extraction and analysis by liquid chromatography–tandem mass spectrometry of intra- and extracellular microcystins and nodularin to study the fate of cyanobacteria and cyanotoxins across the freshwater-marine continuum. Toxicon, 2024, 237, 107551.
|
| 28 |
SHAHMOHAMADLOO R S, ORTIZ ALMIRALL X, SIMMONS D B D, et al.. Cyanotoxins within and outside of Microcystis aeruginosa cause adverse effects in rainbow trout (Oncorhynchus mykiss). Environmental Science & Technology, 2021, 55 (15): 10422- 10431.
|
| 29 |
邢雨斌. 异龙湖浮游植物与蓝藻毒素的时空格局及其对底栖动物的影响 [D]. 西安: 西安理工大学, 2024.
|
| 30 |
KOZLOWSKY-SUZUKI B, WILSON A E, DA SILVA FERRÃO-FILHO A.. Biomagnification or biodilution of microcystins in aquatic foodwebs? Meta-analyses of laboratory and field studies. Harmful Algae, 2012, 18, 47- 55.
|
| 31 |
PAWLIK-SKOWROŃSKA B, TOPOROWSKA M, MAZUR-MARZEC H.. Effects of secondary metabolites produced by different cyanobacterial populations on the freshwater zooplankters Brachionus calyciflorus and Daphnia pulex. Environmental Science and Pollution Research, 2019, 26 (12): 11793- 11804.
|
| 32 |
ALI GER K, PANOSSO R, LÜRLING M.. Consequences of acclimation to Microcystis on the selective feeding behavior of the calanoid copepod Eudiaptomus gracilis. Limnology and Oceanography, 2011, 56 (6): 2103- 2114.
|
| 33 |
BUKAVECKAS P A, FRANKLIN R, TASSONE S, et al.. Cyanobacteria and cyanotoxins at the river-estuarine transition. Harmful Algae, 2018, 76, 11- 21.
|