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The use of fluctuating asymmetry as a measure of environmentally induced developmental instability: A meta-analysis

机译:波动不对称性作为环境诱导的发育不稳定性的量度:一项荟萃分析

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Random and subtle deviations from bilateral symmetry (fluctuating asymmetry) have long been of interest to biologists who wish to study the susceptibility of organisms to changes in environmental quality. However, the reliability of FA as a biomarker has come under question due to inconsistent results in the literature. We conducted a meta-analysis of published literature to test the hypothesis that FA is a reliable biomarker of environmental stress in insects and identify possible sources of variation amongst studies. We expected studies to detect larger, positive magnitudes of effect on FA in lab populations due to the lack of confounding effects from other environmental factors compared to wild populations. Additionally, we predicted that studies that used geometric morphometric approaches to FA in shape and size would be more sensitive to changes in environmental quality compared to linear and meristic measures and thus show larger effects on FA. We also expected anthropogenic stressors to generate significantly larger effects on FA compared to naturally occurring stressors due to the organisms' inability to buffer developmental pathways against a novel stressor. Finally, we predicted comparatively larger magnitudes of effect in studies that verified the environmental factor acting on the organism was a stressor by detecting negative effects on fitness-related traits. Overall, we found that FA is a sensitive biomarker of environmental stress. Environmental stressors explained 36% of the variation of effect on FA across studies. Studies that demonstrated a negative effect of the stressor on fitness-related traits showed significantly larger, positive magnitudes of effect on FA compared to studies that did not detect an effect from the environmental stressor. Additionally, studies conducted under laboratory conditions detected significantly larger, effects on FA compared to field-based studies. The kind of trait measured and the novelty of the stressor did not significantly account for differences amongst studies. Thus, the use of FA as a biomarker of environmental stress is a legitimate tool particularly when studies verify the biological relevance of stressors for the study organism.
机译:长期以来,希望研究生物对环境质量变化的敏感性的生物学家对双侧对称性(波动性不对称性)的随机和细微偏差一直很感兴趣。然而,由于文献中不一致的结果,FA作为生物标志物的可靠性受到质疑。我们对已发表文献进行了荟萃分析,以检验FA是昆虫环境胁迫的可靠生物标记的假设,并在研究之间找出可能的变异来源。我们期望进行研究,以便发现与野生种群相比,由于其他环境因素缺乏混杂效应,实验室种群对FA的影响更大,更正。此外,我们预测,与线性和有功度量相比,使用几何形态计量学方法对FA进行形状和大小的研究将对环境质量的变化更为敏感,从而对FA产生更大的影响。我们还期望与自然发生的应激源相比,人为的应激源会对FA产生更大的影响,这是由于生物体无法缓冲针对新型应激源的发育途径。最后,我们在研究中预测了相对较大的效应,这些研究通过检测对健身相关性状的负面影响,验证了作用于生物体的环境因素是应激源。总体而言,我们发现FA是环境压力的敏感生物标记。在整个研究中,环境压力因素解释了对FA影响的36%的变化。与未检测到环境应激源影响的研究相比,表明应激源对健身相关性状产生负面影响的研究表明,对FA的影响明显更大,为正。此外,与基于现场的研究相比,在实验室条件下进行的研究对FA的影响明显更大。测量的性状类型和压力源的新颖性并没有显着说明研究之间的差异。因此,将FA用作环境胁迫的生物标记物是一种合法的工具,尤其是当研究证实了应激物与研究生物的生物学相关性时。

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