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Accumulation of Microcystin (LR, RR and YR) in Three Freshwater Bivalves in Microcystis aeruginosa Bloom Using Dual Isotope Tracer

机译:使用双同位素示踪剂在微囊杆菌铜绿假单胞菌绽放中的三种淡水双枝子中的微囊藻(LR,RR和YR)积聚

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Stable isotope tracers were first applied to evaluate the Microcystis cell assimilation efficiency of Sinanodonta bivalves, since the past identification method has been limited to tracking the changes of each chl-a, clearity, and nutrient. The toxicity profile and accumulation of MC-LR, -RR and -YR in different organs (foot and digestive organs) from the three filter-feeders (Sinanodonta woodiana, Sinanodonta arcaeformis, and Unio douglasiae) were assessed under the condition of toxigenic cyanobacteria (Microcystis aeruginosa) blooms through an in situ pond experiment using C-13 and N-15 dual isotope tracers. Chl-a concentration in the manipulated pond was dramatically decreased after the beginning of the second day, ranging from 217.5 to 15.6 mu g.L-1. The highest amount of MCs was incorporated into muscle and gland tissues in U. douglasiae during the study period, at early 2 or 3 times higher than in S. woodiana and S. arcaeformis. In addition, the incorporated C-13 and N-15 atom % in the U. douglasiae bivalve showed lower values than in other bivalves. The results demonstrate that U. douglasiae has less capacity to assimilate toxic cyanobacteria derived from diet. However, the incorporated C-13 and N-15 atom % of S. arcaeformis showed a larger feeding capacity than U. douglasiae and S. woodiana. Our results therefore also indicate that S. arcaeformis can eliminate the toxin more rapidly than U. douglasiae, having a larger detoxification capacity.
机译:首先应用稳定的同位素示踪剂以评估Sinanodonta双抗体的微囊囊细胞同化效率,因为过去的识别方法仅限于跟踪每个CHL-A,间隙和营养的变化。在三种过滤器饲养者(Sinanodonta Woodiana,Sinanodonta Goodiaa,Sinanodonta Arcaeformis和Unio Douglasiae)的不同器官(脚和消化器官)中MC-LR,-RR和-yR的毒性曲线和积累在毒性毒性的条件下进行评估(使用C-13和N-15双同位素示踪剂,微阴压铜绿假单胞菌绽放通过原位池塘实验。在第二天开始后,操纵池塘中的CHL-A浓度显着降低,从217.5到15.6μg1-1。在研究期间,在研究期间,在研究期间掺入U. Douglasiae的肌肉和腺组织中的最高量。此外,U. Douglasiae双戊位在U. Douglasiae双戊酰胺中的C-13和N-15原子%呈低于其他双抗体。结果表明,U. Douglasiae具有较少的能力吸收毒性毒性的毒性毒性。然而,掺入的C-13和N-15原子%的S.Acriaformis显示出比U. Douglasiae和S. Woodiana更大的饲养能力。因此,我们的结果还表明S.Arcaeformis可以比Douglasiae更快地消除毒素,具有较大的解毒能力。

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