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Human Oral Buccal Microbiomes Are Associated with Farmworker Status and Azinphos-Methyl Agricultural Pesticide Exposure

机译:人类口腔颊微生物群与农场工人的身份和Azinphos-甲基农业农药暴露相关

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In a longitudinal agricultural community cohort sampling of 65 adult farmworkers and 52 adult nonfarmworkers, we investigated agricultural pesticide exposure-associated changes in the oral buccal microbiota. We found a seasonally persistent association between the detected blood concentration of the insecticide azinphos-methyl and the taxonomic composition of the buccal swab oral microbiome. Blood and buccal samples were collected concurrently from individual subjects in two seasons, spring/summer 2005 and winter 2006. Mass spectrometry quantified blood concentrations of the organophosphate insecticide azinphos-methyl. Buccal oral microbiome samples were 16S rRNA gene DNA sequenced, assigned to the bacterial taxonomy, and analyzed after “centered-log-ratio” transformation to handle the compositional nature of the proportional abundances of bacteria per sample. Nonparametric analysis of the transformed microbiome data for individuals with and without azinphos-methyl blood detection showed significant perturbations in seven common bacterial taxa (>0.5% of sample mean read depth), including significant reductions in members of the common oral bacterial genus Streptococcus. Diversity in centered-log-ratio composition between individuals9 microbiomes was also investigated using principal-component analysis (PCA) to reveal two primary PCA clusters of microbiome types. The spring/summer “exposed” microbiome cluster with significantly less bacterial diversity was enriched for farmworkers and contained 27 of the 30 individuals who also had azinphos-methyl agricultural pesticide exposure detected in the blood.IMPORTANCE In this study, we show in human subjects that organophosphate pesticide exposure is associated with large-scale significant alterations of the oral buccal microbiota composition, with extinctions of whole taxa suggested in some individuals. The persistence of this association from the spring/summer to the winter also suggests that long-lasting effects on the commensal microbiota have occurred. The important health-related outcomes of these agricultural community individuals9 pesticide-associated microbiome perturbations are not understood at this time. Future investigations should index medical and dental records for common and chronic diseases that may be interactively caused by this association between pesticide exposure and microbiome alteration.
机译:在对65名成年农业工人和52名成年非农业工人的纵向农业社区队列研究中,我们调查了口腔颊部微生物群中与农业农药暴露相关的变化。我们发现检测到的杀虫剂谷硫磷的血药浓度与口腔拭子口腔微生物组的分类学组成之间存在季节性持续关联。在2005年春/夏和2006年冬季的两个季节中,从单个受试者中同时采集血液和颊样本。质谱分析定量了有机磷酸酯杀虫剂谷硫磷的血液浓度。对口腔口腔微生物组样品进行16S rRNA基因DNA测序,分配给细菌分类法,并在“中心对数比”转换后进行分析,以处理每个样品中细菌比例丰度的组成性质。对具有和不具有谷硫磷甲基血液检测的个体的转化微生物组数据进行的非参数分析显示,七个常见细菌类群(大于样本平均读取深度的0.5%)发生了显着扰动,包括常见口腔细菌属链球菌属成员的显着减少。还使用主成分分析(PCA)研究了个体9个微生物组之间居中对数比率组成的多样性,以揭示两个主要的微生物组类型的PCA簇。细菌多样性显着降低的春季/夏季“暴露”微生物组簇为农场主提供了丰富的营养,在血液中也检测到了谷硫磷农药暴露的30个人中,有27个人具有重要意义。有机磷酸酯农药的暴露与口腔颊部微生物群组成的大规模显着改变有关,某些人建议将整个分类群灭绝。从春季/夏季到冬季,这种关联的持续存在还表明对共生微生物群已产生了长期影响。目前尚不了解这些农业社区个体9与农药相关的微生物组扰动的重要健康相关结果。未来的调查应索引常见和慢性疾病的医学和牙科记录,这些疾病可能是由农药暴露与微生物组变化之间的这种相互影响引起的。

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