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Influence of pH on the stereoselective degradation of the fungicides epoxiconazole and cyproconazole in soils

机译:pH值对土壤中杀菌剂epoxiconazole和cyproconazole立体选择性降解的影响

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摘要

Many pesticides are chiral and consist of two or more enantiomers/stereoisomers, which may differ in biological activity, toxicity, effects on nontarget organisms, and environmental fate. In the last few years, several racemic compounds have been substituted by enantiomer-enriched or single-isomer compounds ("chiral switch"). In this context, the stereoselective degradation in soils is an important part of a benefit-risk evaluation, but the understanding of the environmental factors affecting the chiral preferences is limited. In this study, the stereoselective degradation of the fungicides epoxiconazole and cyproconazole was investigated in different soils, selected to cover a wide range of soil properties. The fungicides were incubated under laboratory conditions and the degradation and configurational stability of the stereoisomers were followed over time using enantioselective GC-MS with a gamma-cyclodextrin derivative as chiral selector. In alkaline and slightly acidic soils, the degradation of epoxiconazole was clearly enantioselective, whereas in more acidic soils, both enantiomers were degraded at similar rates (overall half-lives 78-184 d). The enantioselectivity, expressed as ES = (k(i)-k(j))/(k(i)+k(j)), ranged from-0.4 in alkaline soils (faster degradation of enantiomer j) to similar to 0 in acidic soils (non-enantioselective), and showed a reasonably linear correlation with the soil pH. The four stereoisomers of cyproconazole (overall half-lives 5-223 d) were also degraded at different rates in the various soils, but only the stereoselectivities between epimers showed some correlations with pH, whereas enantioselectivities did not. Both fungicides were configurationally stable in soils, i.e., no enantiomerization or epimerization was observed. Correlations between pH and ES have previously been reported for other pesticides (metalaxyl, dichlorprop, mecoprop), but the presence or absence of such correlations is not obviously linked to the pathways of degradation. It can be assumed that different microorganisms and enzymes are involved in the primary degradation of these compounds, but on which level soil pH has an influence on ES remains to be investigated.
机译:许多农药是手性的,由两种或多种对映异构体/立体异构体组成,它们的生物学活性,毒性,对非目标生物的影响和环境命运可能有所不同。在最近几年中,数种外消旋化合物已被对映体富集或单一异构体化合物(“手性开关”)取代。在这种情况下,土壤中的立体选择性降解是效益风险评估的重要组成部分,但是对影响手性偏好的环境因素的理解是有限的。在这项研究中,研究了在不同土壤中杀菌剂epoxiconazole和cyproconazole的立体选择性降解,选择这些农药以覆盖广泛的土壤特性。将杀真菌剂在实验室条件下孵育,并使用γ-环糊精衍生物作为手性选择剂,通过对映选择性GC-MS随时间追踪立体异构体的降解和构型稳定性。在碱性和弱酸性土壤中,环氧环唑的降解显然是对映选择性的,而在酸性较高的土壤中,两种对映异构体的降解速率都相似(整个半衰期为78-184 d)。表示为ES =(k(i)-k(j))/(k(i)+ k(j))的对映选择性在碱性土壤中为-0.4(对映体j降解更快),在接近于0的情况下酸性土壤(非对映选择性),并且与土壤pH呈合理的线性关系。环丙康唑的四种立体异构体(整个半衰期5-223 d)在各种土壤中也以不同的速率降解,但仅差向异构体之间的立体选择性与pH相关,而对映选择性则没有。两种杀真菌剂在土壤中均构型稳定,即未观察到对映异构或差向异构。以前已经报道过其他农药(甲霜灵,二氯丙醇,甲丙酸)的pH与ES之间的相关性,但是这种相关性的存在与否与降解途径没有明显联系。可以假定这些化合物的主要降解涉及不同的微生物和酶,但是土壤pH值对ES的影响程度有待研究。

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