College of Biology and the Environment, Nanjing Forestry University, Nanjing, 210037, PR China.
College of Biology and the Environment, Nanjing Forestry University, Nanjing, 210037, PR China.
Chemosphere. 2020 Feb;240:124865. doi: 10.1016/j.chemosphere.2019.124865. Epub 2019 Sep 14.
Biologists have extensively investigated the toxicity of polybrominated diphenyl ethers (PBDEs) on plants in ecosystems, where experiments revealed that PBDEs can promote, inhibit, or have no significant effects on the physiological and biochemical functionality of plants. These studies have stimulated many theoretical works that aimed to elucidate the differences in the toxicity of PBDEs on various plants. However, there has been no quantitative attempt to reconcile theory with the results of empirical experiments. To close this gap between theory and experiments, we conducted a hierarchical meta-analysis to examine the toxicity of PBDEs on plants and confirmed potential sources of variation across numerous studies. Through the analysis of 1299 observations garnered from 41 studies, we revealed the significant toxicity of PBDEs on plants. This result was verified to be robust and showed no signs of bias. Our study affirmed that functional indexes can contribute to variations that lead to the toxicity of PBDEs on various plants. Furthermore, we found that lower congeners PBDEs were more toxic to plants than higher congeners PBDEs, and higher plants were more resistant to PBDEs induced phytotoxicity than lower plants. For interactive effects, only specific PBDEs concentrations had significant effects on glutathione S-transferase activities, and experimental durations had no significant impacts on any functional indexes. These results reconciled empirical studies and assisted us with elucidating the ecotoxicology of PBDEs induced phytotoxicity.
生物学家已经广泛研究了多溴二苯醚(PBDEs)在生态系统中对植物的毒性,实验表明 PBDEs 可以促进、抑制或对植物的生理和生化功能没有显著影响。这些研究激发了许多旨在阐明 PBDEs 对不同植物毒性差异的理论工作。然而,还没有人试图用理论来调和与经验实验结果之间的差异。为了弥合理论与实验之间的差距,我们进行了层次荟萃分析,以检查 PBDEs 对植物的毒性,并确认了许多研究中存在的潜在变异来源。通过对 41 项研究中的 1299 个观测值进行分析,我们揭示了 PBDEs 对植物的显著毒性。这一结果被证明是稳健的,没有出现偏差的迹象。我们的研究证实,功能指标可以解释导致 PBDEs 对不同植物毒性差异的原因。此外,我们发现低溴代同系物 PBDEs 比高溴代同系物 PBDEs 对植物更具毒性,高等植物比低等植物对 PBDEs 诱导的植物毒性更具抗性。对于交互作用,只有特定的 PBDEs 浓度对谷胱甘肽 S-转移酶活性有显著影响,而实验持续时间对任何功能指标都没有显著影响。这些结果调和了经验研究,并帮助我们阐明了 PBDEs 诱导的植物毒性的生态毒理学。