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Effects of Polychlorinated Biphenyls (PCBs) and Their Hydroxylated Metabolites (OH-PCBs) on Arabidopsis thaliana

机译:多氯联苯(PCBs)及其羟基代谢物(OH-PCBs)对拟南芥的影响

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摘要

Plants metabolize polychlorinated biphenyls (PCBs) into hydroxylated derivatives (OH-PCBs), which are sometimes more toxic than the parent PCBs. The objective of this research was to compare the toxicity of a suite of PCBs and OH-PCBs toward the model plant, Arabidopsis thaliana. While parent PCBs and higher-chlorinated OH-PCBs exhibited a low or nondetectable toxicity, lower-chlorinated OH-PCBs significantly inhibited the germination rate and plant growth, with inhibition concentration 50% (IC50) ranging from 1.6 to 12.0 mg L−1. The transcriptomic response of A. thaliana to 2,5-dichlorobiphenyl (2,5-DCB), and its OH metabolite, 4′-OH-2,5-DCB, was then examined using whole-genome expression microarrays (Affymetrix). Exposure to 2,5-DCB and 4′-OH-2,5-DCB resulted in different expression patterns, with the former leading to enrichment of genes involved in response to toxic stress and detoxification functions. Exposure to 2,5-DCB induced multiple xenobiotic response genes, such as cytochrome P-450 and glutathione S-transferases, potentially involved in the PCB metabolism. On the contrary, exposure to both compounds resulted in the down-regulation of genes involved in stresses not directly related to toxicity. Unlike its OH derivative, 2,5-DCB was shown to induce a transcriptomic profile similar to plant safeners, which are nontoxic chemicals stimulating detoxification pathways in plants. The differentiated induction of detoxification enzymes by 2,5-DCB may explain its lower phytotoxicity compared to 4′-OH-2,5-DCB.
机译:植物将多氯联苯(PCB)代谢为羟基化衍生物(OH-PCB),有时其毒性比母体PCB高。这项研究的目的是比较一套PCBs和OH-PCBs对拟南芥拟南芥的毒性。尽管母体多氯联苯和较高氯的OH-PCB表现出较低的毒性或无法检测到的毒性,但较低氯的OH-PCB明显抑制了发芽率和植物生长,抑制浓度50%(IC50)为1.6至12.0 mg L -1 。然后使用全基因组表达微阵列(Affymetrix)检查拟南芥对2,5-二氯联苯(2,5-DCB)及其OH代谢产物4'-OH-2,5-DCB的转录组反应。暴露于2,5-DCB和4'-OH-2,5-DCB导致不同的表达模式,前者导致涉及毒性应激和解毒功能的基因富集。暴露于2,5-DCB会诱导多种异源性应答基因,例如细胞色素P-450和谷胱甘肽S-转移酶,可能参与PCB代谢。相反,暴露于这两种化合物会导致与应激直接相关的基因的下调与毒性没有直接关系。与它的OH衍生物不同,它显示出2,5-DCB可以诱导类似于植物安全剂的转录组图谱,后者是刺激植物排毒途径的无毒化学物质。 2,5-DCB对脱毒酶的不同诱导作用可以解释其与4'-OH-2,5-DCB相比较低的植物毒性。

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