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Paralytic shellfish poison accumulation yields and feeding time activity in the Pacific oyster (Crassostrea gigas) and king scallop (Pecten maximus)

机译:太平洋牡蛎(Crassostrea gigas)和扇贝王(Pecten maximus)的麻痹性贝类毒物积累产量和摄食时间活动

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摘要

Pacific oysters and king scallops placed individually in a recirculating flume were fed for 2 weeks with a constant concentration (120 cell ml(-1)) of a toxic strain of Alexandrium minutum. Fluorescence at the outlet of each experimental unit was measured continuously, and biodeposits were recovered twice daily to evaluate feeding time activity (FTA) and rates of organic filtration (OFR), ingestion (OIR) and organic absorption (OAR). Ion-pairing high performance liquid chromatography (IP-HPLC) was performed concurrently to quantify paralytic phycotoxins both (i) individually in shellfish at the end of the contamination period and (ii) in A. minutum cultures to estimate cellular toxin concentration. These data allowed comparison of the actual tissue toxin concentration (TOX) with the theoretical toxin accumulation rate (TAR) calculated from the linear relations between OAR, cell number, fluorescence and cell toxicity. The results show high FTA/TAR and FTA/TOX correlations (R-2 = 0.78) for both oysters and scallops. The TAR/FOX relation, though not yet clearly defined, suggests the minimum quantity of absorbed toxin at which the accumulation process is induced.
机译:将太平洋牡蛎和扇贝国王单独放置在循环水槽中,并以恒定浓度(120细胞ml(-1))的亚历山大细孔毒性菌株喂食2周。连续测量每个实验单元出口的荧光,每天回收两次生物沉积物,以评估进食时间活性(FTA)和有机过滤(OFR),摄入(OIR)和有机吸收(OAR)的速率。同时进行离子对高效液相色谱(IP-HPLC)以定量分析麻痹性藻毒素(i)在污染期结束时分别在贝类中和(ii)在A菜培养物中以估计细胞毒素浓度。这些数据允许将实际组织毒素浓度(TOX)与从OAR,细胞数,荧光和细胞毒性之间的线性关系计算出的理论毒素累积速率(TAR)进行比较。结果表明,牡蛎和扇贝的FTA / TAR和FTA / TOX的相关性很高(R-2 = 0.78)。 TAR / FOX关系虽然尚未明确定义,但提示了诱导积累过程的最小吸收毒素量。

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