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Robust Linuron Degradation in On-Farm Biopurification Systems Exposed to Sequential Environmental Changes

机译:暴露于环境变化的农场生物净化系统中鲁纳隆的强烈降解

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摘要

On-farm biopurification systems (BPS) treat pesticide-contaminated wastewater of farms through biodegradation. Adding pesticide-primed soil has been shown to be beneficial for the establishment of pesticide-degrading populations in BPS. However, no data exist on the response of pesticide-degrading microbiota, either endogenous or introduced with pesticide-primed soil, when BPS are exposed to expected less favorable environmental conditions like cold periods, drought periods, and periods without a pesticide supply. Therefore, the response of microbiota mineralizing the herbicide linuron in BPS microcosm setups inoculated either with a linuron-primed soil or a nonprimed soil to a sequence of such less favorable conditions was examined. A period without linuron supply or a drought period reduced the size of the linuron-mineralizing community in both setups. The most severe effect was recorded for the setup containing nonprimed soil, in which stopping the linuron supply decreased the linuron degradation capacity to nondetectable levels. In both systems, linuron mineralization rapidly reestablished after conventional operation conditions were restored. A cold period and feeding with a pesticide mixture did not affect linuron mineralization. The changes in the linuron-mineralizing capacity in microcosms containing primed soil were associated with the dynamics of a particular Variovorax phylotype that previously had been associated with linuron mineralization. This study suggests that the pesticide-mineralizing community in BPS is robust in stress situations imposed by changes in environmental conditions expected to occur on farms. Moreover, it suggests that, in cases where effects do occur, recovery is rapid after restoring conventional operation conditions.
机译:农场生物净化系统(BPS)通过生物降解处理农场的农药污染废水。业已证明,添加农药引发的土壤有利于在BPS中建立农药降解种群。但是,当BPS暴露在预期的不利环境条件下(例如寒冷时期,干旱时期和无农药供应时期)时,没有关于降解农药的微生物群(无论是内源的还是引入农药引发的土壤)的响应的数据。因此,研究了在用线性亚油酸引发的土壤或未引发的土壤接种的BPS微观环境中,微生物群矿化除草剂亚麻嘧啶对一系列不利条件的响应。在两种情况下,没有亚麻素供应的时期或干旱时期都减少了亚麻素矿化社区的规模。对于包含未涂底漆的土壤的设施,记录到最严重的影响,其中停止供应亚麻素将亚麻素的降解能力降低至无法检测的水平。在这两个系统中,恢复常规操作条件后,利纳隆矿化作用迅速恢复。寒冷时期和用农药混合物喂养不会影响亚麻嘧啶的矿化。含有引发土壤的微观世界中的亚麻酸矿化能力的变化与以前与亚麻酸矿化有关的特定Variovorax系统型的动力学有关。这项研究表明,在BPS的农药矿化群落在因预期农场环境条件变化而造成的胁迫情况下具有强大的抵抗力。此外,这表明,在确实发生效果的情况下,恢复常规操作条件后恢复很快。

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