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Effects of thiobencarb in combinations with molinate and chlorpyrifos on selected soil microbial processes

机译:硫代苯甲威与草酸盐和毒死rif的组合对某些土壤微生物过程的影响

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The impact of pesticides, namely thiobencarb (TBC), molinate (MOL) and chlorpyrifos (CPF), on soil microbial processes was studied in two Australian soils. Substrate induced respiration (SIR), substrate induced nitrification (SIN) and phosphatases and chitinase enzymatic activities were assessed during a 30-day microcosm study. The pesticides were applied to soils at recommended rates either alone, or as binary mixtures with TBC. Soil samples were sampled at 5, 15 and 30 days after pesticide treatments. Substrate induced respiration was only transiently affected by pesticides in both soils. In contrast, the process of indigenous nitrification was affected by the presence of pesticides in both soils, especially when the pesticides were applied as binary mixtures. Substrate induced nitrification increased with pesticides in the Griffith soil (except with MOL+TBC after 5 days) whereas SIN values were non-significantly different to the control on the Coleambally soil. The binary mixtures of pesticides with TBC resulted in a decrease in SIN in both soils, but the effects disappeared within 30 days. The enzymatic activities were not consistently affected by pesticides, and varied with the soil and pesticides studied. This study showed that, when applied at recommended application rates, TBC, MOL, and CPF (individually or as binary mixtures), had little or only transitory effects on the functional endpoints studied. However, further investigations are needed to assess the effect on microbial densities and community structure despite the low disturbance to the functions noted in this work.
机译:在澳大利亚的两种土壤中,研究了农药,即硫代苯甲酸酯(TBC),毒草酸盐(MOL)和毒死rif(CPF)对土壤微生物过程的影响。在为期30天的缩影研究中评估了底物诱导的呼吸(SIR),底物诱导的硝化(SIN)以及磷酸酶和几丁质酶的酶活性。农药以推荐的比例单独或以与TBC的二元混合物形式施用于土壤。在农药处理后第5、15和30天取样土壤样品。在两种土壤中,基质诱导的呼吸仅短暂地受到农药的影响。相反,两种土壤中农药的存在都会影响本地硝化过程,特别是当农药以二元混合物形式使用时。农药在格里菲斯土壤中诱导的硝化作用增加(5天后除MOL + TBC外),而SIN值与Coleambally土壤上的对照无显着差异。农药与TBC的二元混合物导致两种土壤中SIN均降低,但在30天内消失。酶活性不受农药的影响,并随所研究的土壤和农药的不同而变化。这项研究表明,以推荐的施用量施用时,TBC,MOL和CPF(单独或作为二元混合物)对所研究的功能终点几乎没有或只有短暂的影响。然而,尽管对这项工作中提到的功能的干扰很小,但仍需要进一步研究以评估对微生物密度和群落结构的影响。

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