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Does arsenic play an important role in the soil microbial community around a typical arsenic mining area?

机译:Does arsenic play an important role in the soil microbial community around a typical arsenic mining area?

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摘要

Arsenic (As) can cause serious hazards to human health, especially in mining areas. Soil bacterial communities, which are critical parts of the soil ecosystem, were analyzed directly for soil environmental factors. As a consequence, it is of great significance to understand the ecological risk of arsenic contamination on bacteria, especially at the local scale. In this study, 33 pairs of soil and grain samples were collected from the corn and paddy fields around an arsenic mining area in Shimen County in Hunan Province, China. Significant differences were found between the soil nitrogen, As concentrations, and bacteria activities among these two types of land use. According to the structural equation model (SEM) analysis, compared with other environmental factors, soil As was not the key factor affecting the bacterial community, even when grain As was beyond the threshold of the national food hygiene standards of China. In the corn field, soil pH was the main factor dominating the bacterial richness, composition and grain As. Meanwhile, in the paddy field the soil total nitrogen (TN) and total carbon (TC) were the main factors impacting the bacterial richness, and the bacterial community composition was mainly affected by pH. The interactions between grain As and soil As were weak in the corn field. The bacterial communities played important roles in the food chain risk of As. The local policy of transforming paddy soil to dry land could greatly reduce the health risk of As through the food chain. (C) 2016 Elsevier Ltd. All rights reserved.
机译:砷会严重危害人类健康,特别是在矿区。作为土壤生态系统的重要组成部分的土壤细菌群落,直接针对土壤环境因素进行了分析。因此,了解砷对细菌的生态风险,特别是在地方规模,具有重要的意义。在这项研究中,从中国湖南省石门县砷矿区周围的玉米和稻田中收集了33对土壤和谷物样品。在这两种土地利用类型之间,土壤氮,砷浓度和细菌活性之间存在显着差异。根据结构方程模型(SEM)分析,与其他环境因素相比,即使谷物中的砷超过了国家食品卫生标准的要求,土壤砷也不是影响细菌群落的关键因素。在玉米田中,土壤pH是决定细菌丰富度,组成和谷物As的主要因素。同时,在稻田中,土壤总氮(TN)和总碳(TC)是影响细菌丰富度的主要因素,而细菌群落组成主要受pH的影响。玉米田中As与土壤As的相互作用较弱。细菌群落在砷的食物链风险中起着重要作用。将稻田转化为旱地的当地政策可以通过食物链大大降低砷的健康风险。 (C)2016 Elsevier Ltd.保留所有权利。

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