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Life history responses of Daphnia similoides simultaneously exposed to microcystin‐LR and ammonia and their postexposure recovery
Environmental toxicology and chemistry, 2014-11, Vol.33 (11), p.2497-2505
Cao, Huansheng
Lyu, Kai
Xiang, Fuhui
Yang, Zhou
2014
Volltextzugriff (PDF)
Details
Autor(en) / Beteiligte
Cao, Huansheng
Lyu, Kai
Xiang, Fuhui
Yang, Zhou
Titel
Life history responses of Daphnia similoides simultaneously exposed to microcystin‐LR and ammonia and their postexposure recovery
Ist Teil von
Environmental toxicology and chemistry, 2014-11, Vol.33 (11), p.2497-2505
Ort / Verlag
Pensacola, FL: Pergamon
Erscheinungsjahr
2014
Quelle
Wiley Online Library Journals Frontfile Complete
Beschreibungen/Notizen
Aquatic organisms often suffer episodic stress from cyanobacterial bloom–derived concomitants and sometimes interactive stressors, and they may recover when stressors terminate. To assess whether exposed Daphnia can quickly recover from combined toxicity of bloom‐derived stressors, Daphnia similoides were exposed to mixtures of ammonia (0 mg L⁻¹, 0.37 mg L⁻¹, and 0.58 mg L⁻¹) and dissolved microcystin‐LR (0 µg L⁻¹, 10 µg L⁻¹, 30 µg L⁻¹, and 100 µg L⁻¹) in a full factorial design for 14 d and subsequently allowed to recover for 7 d. During the exposure, the mixtures of ammonia and microcystin‐LR showed different effects on the selected variables. Ammonia delayed the time to maturation, but microcystin‐LR was not negative to the development of the tested daphnids. Furthermore, microcystin‐LR reduced the prolonged developmental time to first eggs and first clutch caused by high ammonia. The total reproduction of D. similoides was dramatically reduced by 64% to 79% by both toxicants and their combinations, but there were no interactive effects. After the recovery period, organisms under most treatments did not recover completely from the combined stress but showed positive signs of recovery, based on the size of the last clutch and the mean number of clutches during recovery; thus the affected D. similoides have the potential to quickly recover from the combined toxic stressors. Environ Toxicol Chem 2014;33:2497–2505. © 2014 SETAC
Sprache
Englisch
Identifikatoren
ISSN: 0730-7268
eISSN: 1552-8618
DOI: 10.1002/etc.2701
Titel-ID: cdi_proquest_miscellaneous_1642296470
Format
–
Schlagworte
Ammonia
,
Ammonia - toxicity
,
Animal, plant and microbial ecology
,
Animals
,
Applied ecology
,
Aquatic life
,
Aquatic organisms
,
Biological and medical sciences
,
Clutches
,
Combined stress
,
Cyanobacteria
,
Daphnia
,
Daphnia - physiology
,
Daphnia similoides
,
Ecotoxicology, biological effects of pollution
,
Effects of pollution and side effects of pesticides on protozoa and invertebrates
,
eggs
,
Environmental Monitoring
,
Exposure
,
Female
,
Freshwater
,
Fundamental and applied biological sciences. Psychology
,
Interactive
,
Life Cycle Stages
,
Life history
,
Microcystin
,
Microcystins
,
Microcystins - toxicity
,
Organisms
,
Recovery
,
Reproduction
,
Reproduction - drug effects
,
Time Factors
,
toxic substances
,
Toxicants
,
Toxicity
,
Toxicology
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