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首页> 外文期刊>Aquatic Toxicology >An investigation of the inter-clonal variation of the interactive effects of cadmium and Microcystis aeruginosa on the reproductive performance of Daphnia magna
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An investigation of the inter-clonal variation of the interactive effects of cadmium and Microcystis aeruginosa on the reproductive performance of Daphnia magna

机译:镉与铜绿微囊藻相互作用对水​​蚤(Daphnia magna)生殖性能的克隆间变异研究

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摘要

Interactive effects between chemical and natural stressors as well as genetically determined variation in stress tolerance among individuals may complicate risk assessment and management of chemical pollutants in natural ecosystems. Although genetic variation in tolerance to single stressors has been described extensively, genetic variation in interactive effects between two stressors has only rarely been investigated. Here, we examined the interactive effects between a chemical stressor (Cd) and a natural stressor (the cyanobacteria Microcystis aeruginosa) on the reproduction of Daphnia magna in 20 genetically different clones using a full-factorial experimental design and with the independent action model of joint stressor action as the reference theoretical framework. Across all clones, the reduction of 21-day reproduction compared to the control treatment (no Cd, no M. aeruginosa) ranged from 10% to 98% following Cd exposure alone, from 44% to 89% for Micro cystis exposure alone, and from 61% to 98% after exposure to Cd + Micro cystis combined. Three-way ANOVA on log-transformed reproduction data of all clones together did not detect a statistically significant Cd x Micro cystis interaction term (F-test, p = 0.11), meaning that on average both stressors do not interact in inhibiting reproductive performance of D. magna. This finding contrasted expectations based on some known shared mechanisms of toxicity of Cd and Microcystis and therefore cautions against making predictions of interactive chemical + natural stressor effects from incomplete knowledge on affected biological processes and pathways. Further, still based on three-way ANOVA, we did not find statistically significant clone x Cd x Microcystis interaction when data for all clones were analyzed together (F-test, p = 0.07), suggesting no inter-clonal variation of the interactive effect between Cd and Microcystis. However, when the same data were quantitatively analyzed on a clone-by-clone scale, we found a relatively wide range of deviations between observed and IA-model-predicted reproduction in combined Cd + Microcystis treatments (both in direction and magnitude), suggesting some biological significance of inter-clonal variation of interactive effects. In one of the twenty clones this deviation was statistically significant (two-way ANOVA, F-test, p = 0.005), indicating an interactive Cd x Microcystis effect in this clone. Together, these two observations caution against the extrapolation of conclusions about mixed stressor data obtained with single clones to the level of the entire species and to the level of natural, genetically diverse populations. (C) 2013 Elsevier B.V. All rights reserved.
机译:化学和自然胁迫源之间的相互作用以及个体间遗传耐受力差异的遗传决定可能会使自然生态系统中的化学污染物风险评估和管理变得复杂。尽管已经广泛描述了对单个应激源的耐受性的遗传变异,但很少研究两个应激源之间相互作用的遗传变异。在这里,我们使用全因子实验设计和联合的独立作用模型,研究了化学应激源(Cd)和自然应激源(铜绿微藻蓝藻)对水蚤(Daphnia magna)在20个基因不同克隆中繁殖的相互作用。压力源动作作为参考理论框架。在所有克隆中,与对照处理(无Cd,无铜绿假单胞菌)相比,其21天繁殖的减少范围为仅接受Cd后的10%至98%,单独接受微囊藻的为44%至89%,以及镉和微囊藻的联合使用后,从61%到98%不等。对所有克隆进行对数转换的繁殖数据的三方ANOVA均未检测到统计学上显着的Cd x微囊藻相互作用项(F-test,p = 0.11),这意味着平均而言,两个应激源在抑制拟南芥的生殖性能方面均不相互作用。 D.玛格纳这一发现与基于某些已知的镉和微囊藻毒性共享机制的预期形成对比,因此告诫不要对受影响的生物过程和途径的不完全了解而对相互作用的化学+自然胁迫效应进行预测。此外,仍然基于三因素方差分析,当一起分析所有克隆的数据时,我们没有发现统计学上显着的克隆x Cd x微囊藻之间的相互作用(F检验,p = 0.07),这表明克隆间的相互作用没有变异在镉和微囊藻之间。然而,当在逐个克隆的规模上对相同数据进行定量分析时,我们发现在联合使用Cd +微囊藻毒素处理时,观察到的和IA模型预测的繁殖之间存在较大范围的偏差(方向和幅度),这表明相互作用间克隆变异的一些生物学意义。在二十个克隆中的一个中,此偏差具有统计学意义(双向方差分析,F检验,p = 0.005),表明该克隆中具有相互作用的Cd x微囊藻效应。综上所述,这两个观察结果提醒我们不要将关于单个克隆获得的混合应激源数据的结论外推到整个物种的水平以及自然,遗传多样的种群的水平。 (C)2013 Elsevier B.V.保留所有权利。

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