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1.
For the protection of early and summer cauliflower and brussels sprouts crops against root fly, the insecticide chlorpyrifos was applied at planting onto soil around the stem of the plant, or in the planting line. In the soil, chlorpyrifos (1) was transformed into the insecticide metabolites oxon, 0,0‐diethyl‐0‐(3,5,6‐tri‐chloro‐2‐pyridinyl) phosphate (2), and 3,5,6‐trichloro‐2‐pyridinol (3). The soil half life time of chlorpyrifos could be 2.8 times greater (42 days relative to 15 days) when the field history as to cauliflower monoculture and insecticide treatments was short (1 year), than when it was long (8 years). Rains and season also had cumulative effects on the chlorpyrifos soil half life times. In the leaves of cabbage, chlorpyrifos and compound 3 were observed at concentrations which were higher, especially when their soil concentrations were high. Chlorpyrifos and compounds 2 and 3 however were not detected in the “flower” of cauliflower, nor in the brussels sprouts itself, the limit of sensitivity being 0.02 ppm of fresh weight.  相似文献   

2.
The present study focused on the assessment of oxidative stress induction by pesticides such as carbamates which are widely used as insecticides and nematicides and contaminate aquatic ecosystems on certain biomarkers in liver of common carp (Cyprinus carpio L.). Biomarkers selected for stress monitoring were malondialdehyde (MDA), an index of lipid peroxidation, and antioxidant defence system enzymes, mainly catalase (CAT), glutathione reductase (GR), and glutathione-S-transferase (GST) activities in liver of fish exposed to 0, 10, 50, or 100?µg?L?1 of carbofuran for 4, 15, or 30 days. Oxidative stress was found in liver of common carp exposed to carbofuran which was manifested by a decrease in CAT and GR activities after 4 and 30 days of exposure. An adaptive response was probably produced since at day 15 no modifications in the CAT activity and increased GR activity were observed. In addition, a decrease in MDA content with the highest concentration of carbofuran used was found after 30 days of exposure. However, no significant changes were found in GST activity showing a varied response. The results concerning oxidative and antioxidant profiles indicate that subchronic exposure to the insecticide carbofuran is capable of inducing oxidative stress in fish.  相似文献   

3.
Chinese cabbage, Brassica chinensis L., and cabbage, Brassica oleracea L. var. capitata, are the main daily foliar vegetables of the vast majority of the population of eastern and southern China. Cabbages are also planted and consumed widely in other countries. The insecticide and acaricide chlorpyrifos is registered in many countries. Chlorpyrifos controls a variety of insects in plants and soils, and chlorpyrifos is extensively used in the Chinese market. Food poisoning due to the presence of organophosphorus pesticide residues in vegetables has been reported in China provinces. Plant uptake of pesticide residues in air, water, and soil is a source of pesticide residues in vegetables. Here, phytotoxicity and uptake of chlorpyrifos by Chinese cabbage and cabbage were studied in the laboratory using the batch technique. From 0 to 16 days after chlorpyrifos treatment, vegetables roots, stems, leaves, and culture water samples were collected, and the residues of chlorpyrifos in culture water, plant tissues were analyzed using GC-FPD. The results demonstrate that culture solutions with chlorpyrifos had no significant inhibitory effects on vegetable plant height. However, at 1.0 mg/l, it had significant inhibitory effects on the root length and fresh weight of Chinese cabbage. Then, at 10.0 mg/l, it had only significant inhibitory effects on the root length and fresh weight of cabbage compared to the control treatment. The disappearance rates of chlorpyrifos in solutions were in sequence as: nutrition solution with Chinese cabbage, nutrition solution with cabbage, pond water, nutrition solution. The results showed also that chlorpyrifos can be taken up by roots of Chinese cabbage and cabbage from water and subsequently translocated as a function of time. Uptake dynamics of chlorpyrifos from culture solutions by the two cabbage plants were similar.  相似文献   

4.
Climate change exerts direct effects on ecosystems but has additional indirect effects due to changes in agricultural practice. These include the increased use of pesticides, changes in the areas that are cultivated, and changes in the crops cultivated. It is well known that pesticides, and in particular insecticides, affect aquatic ecosystems adversely. To implement effective mitigation measures it is necessary to identify areas that are affected currently and those that will be affected in the future. As a consequence, we predicted potential exposure to insecticide (insecticide runoff potential, RP) under current conditions (1990) and under a model scenario of future climate and land use (2090) using a spatially explicit model on a continental scale, with a focus on Europe. Space-for-time substitution was used to predict future levels of insecticide application, intensity of agricultural land use, and cultivated crops. To assess the indirect effects of climate change, evaluation of the risk of insecticide exposure was based on a trait-based, climate-insensitive indicator system (SPEAR, SPEcies At Risk). To this end, RP and landscape characteristics that are relevant for the recovery of affected populations were combined to estimate the ecological risk (ER) of insecticides for freshwater communities. We predicted a strong increase in the application of, and aquatic exposure to, insecticides under the future scenario, especially in central and northern Europe. This, in turn, will result in a severe increase in ER in these regions. Hence, the proportion of stream sites adjacent to arable land that do not meet the requirements for good ecological status as defined by the EU Water Framework Directive will increase (from 33% to 39% for the EU-25 countries), in particular in the Scandinavian and Baltic countries (from 6% to 19%). Such spatially explicit mapping of risk enables the planning of adaptation and mitigation strategies including vegetated buffer strips and nonagricultural recolonization zones along streams.  相似文献   

5.
降解毒死蜱曲霉Y的分离和降解效能测定   总被引:16,自引:0,他引:16  
毒死蜱在灭菌土壤、施用过和未施用过毒死蜱的土壤中的降解速率测定表明:土壤中的微生物在毒死蜱的降解中起着重要的作用。同时,毒死蜱在连续使用后,降解速度大大加快,说明毒死蜱可诱发降解菌的产生,从连续使用毒死蜱的土壤中分离了1株可降解毒死蝗的真菌曲霉Y。测定了曲霉Y在不同接菌量、不同温度、不同毒死蜱浓度及不同碳源浓度下对毒死蜱的降解能力,同时,还测定了曲霉Y其他杀虫剂的降解能力。图6参13。  相似文献   

6.
Degradation studies in soil of the insecticides aldicarb and carbofuran and their metabolites (aldicarb sulfoxide, aldicarb sulfone; 3-ketocarbofuran and 3-hydroxycarbofuran) were carried out using laboratory systems under controlled conditions (temperature, water content, light). The insecticides were added to soil samples and subsamples of the soil were analyzed at different times to assess both the bacterial abundance and the concentration of the different chemicals. The epifluorescence direct count method was applied to the subsamples to estimate microorganism numbers (N/g soil). Untreated samples of soil were used as controls for evaluating the effects of the application of the insecticides on microbial abundance. Subsamples treated with the pesticides were analyzed using HPLC and the DT 50 s of the different compounds studied were calculated. The DT 50 values show that neither the parent compounds nor the transformation products have a high persistence in soil and there is a general increase in the concentration of microorganisms as the pesticides diminish.  相似文献   

7.
在室内培养条件下,研究了在施用尿素的土壤(有效氮质量分数为200 mg·kg^-1)中分别添加不同剂量(在5、10和50 mg·kg^-1)的吡虫啉和毒死蜱2种杀虫剂时,杀虫剂对土壤温室气体CO2、N2O和CH4排放过程的影响。结果表明:和空白相比,施用尿素明显地增加了土壤中温室气体N2O和CO2的排放量,但对CH4的排放无明显影响。当施用5 mg·kg^-1吡虫啉时,土壤中N2O和CO2排放总量和尿素处理相比无明显差异,但吡虫啉用量上升至10和50 mg·kg^-1时则显著降低了温室气体N2O和CO2的排放量(P〈0.05),N2O排放量分别降低了26.89%和53.10%,CO2排放量分别降低15.14%和13.79%。毒死蜱在5、10和50 mg·kg^-1三种用量时土壤的N2O排放量与尿素处理相比均无明显差异。毒死蜱在5和10 mg·kg^-1用量时则明显抑制了土壤CO2的排放(p〈0.05),分别比尿素处理降低了19.88%和19.02%;用量上升到50 mg·kg^-1用量时,土壤的CO2排放量与尿素处理相比无差异。吡虫啉和毒死蜱对CH4排放量均没有明显影响。可见,杀虫剂施用明显影响到土壤温室气体的排放,但不同杀虫剂品种及其用量的效应也存在明显差异。  相似文献   

8.
Degradation studies in soil of the insecticides aldicarb and carbofuran and their metabolites (aldicarb sulfoxide, aldicarb sulfone; 3-ketocarbofuran and 3-hydroxycarbofuran) were carried out using laboratory systems under controlled conditions (temperature, water content, light). The insecticides were added to soil samples and subsamples of the soil were analyzed at different times to assess both the bacterial abundance and the concentration of the different chemicals. The epifluorescence direct count method was applied to the subsamples to estimate microorganism numbers (N/g soil). Untreated samples of soil were used as controls for evaluating the effects of the application of the insecticides on microbial abundance. Subsamples treated with the pesticides were analyzed using HPLC and the DT 50 s of the different compounds studied were calculated.

The DT 50 values show that neither the parent compounds nor the transformation products have a high persistence in soil and there is a general increase in the concentration of microorganisms as the pesticides diminish.  相似文献   

9.
Pesticides provide considerable protection against pest population; however, rampant accumulation of these chemicals into varied habitats across the globe necessitates the need for a careful screening of each chemical due to toxic manifestations. In the current study, the genotoxic potential of two different classes of commercial insecticides – chlorpyrifos and cypermethrin combination and Spinosad, a naturalyte were compared. Rhode Island Red chick embryos were exposed to different doses of either of these insecticides individually, by in ovo treatment. Genotoxicity was then evaluated through micronucleus (MN) test and Comet assay. The combination insecticide exposure at low doses of 0.05 and 0.1 μg/egg induced DNA damage as evidenced by an increased tail moment in the Comet assay. Further, the presence of micronucleated erythrocytes and also various abnormal cells including dacryocytes, microcytes, erythroplastids, squashed/notched nuclei, and spindle-shaped erythrocytes in the blood smear consolidates indicate the presence of insecticide-induced genotoxicity. Spinosad, however, was found only mildly genotoxic but at a high dose of 1.5 mg/egg. The results indicate that usage of naturalyte insecticide may be a better option to minimize the harmful effects of chemical insecticides.  相似文献   

10.
研究有机磷类农药毒死蜱和对硫磷、氨基甲酸酯类农药克百威和残杀威单独及联合染毒大鼠嗜铬细胞瘤株(PC12细胞)所致的DNA损伤情况及联合作用模式。分别以0μmol·L~(-1)、50μmol·L~(-1)、100μmol·L~(-1)、200μmol·L~(-1)、400μmol·L~(-1)的有机磷农药毒死蜱、对硫磷与0μmol·L~(-1)、25μmol·L~(-1)、50μmol·L~(-1)、100μmol·L~(-1)、200μmol·L~(-1)的氨基甲酸酯类农药克百威、残杀威单独及两两联合染毒PC12细胞12 h后进行彗星实验,采用彗尾长度、尾部DNA百分含量、尾矩3个指标来衡量DNA损伤程度。结果表明:毒死蜱、克百威、对硫磷、残杀威染毒PC12细胞12 h后,细胞出现拖尾,呈现典型的彗星图像。染毒后PC12细胞彗尾长度、尾部DNA百分含量、尾矩较对照组显著增加,差异有统计学意义(P0.01)。析因分析表明,无论低剂量联合还是高剂量联合,毒死蜱与克百威、对硫磷与残杀威均有交互作用(P0.01),作用模式为协同作用。以上结果提示,有机磷及氨基甲酸酯类农药单独及联合作用均可引起PC12细胞DNA损伤,联合作用后损伤程度要高于单独作用,且低剂量和高剂量联合时均存在交互作用,作用模式为协同作用。  相似文献   

11.
农药在使用中可能对农作物产生药害作用,而在低温弱光的亚适宜条件下,设施作物对农药暴露的应激响应可能具有特殊性。同时,作为一种新型植物激素,油菜素内酯在亚适宜条件下是否能够缓解农药的药害作用的研究有限。以典型的设施作物黄瓜为受试生物,通过人工气候箱模拟低温弱光的亚适宜条件,在毒死蜱(浓度分别为0.3和1mmol·L-1)暴露1、3和7d后,以实时荧光定量PCR对黄瓜叶片中光合作用基因(psaB、psbA和rbcL)、抗氧化系统相关基因(cAPX、DHAR、GR、CAT和GPX)、防御和应激相关基因(PAL、HPL、ADC和HSP70)的转录水平进行检测,阐明其毒性效应。并对比24-表油菜素内酯的预处理组,探讨油菜素内酯如何调控作物对农药胁迫的响应。结果表明,在低温弱光条件下,毒死蜱暴露抑制了黄瓜叶片中上述大部分基因的转录,而24-表油菜素内酯预处理后其转录水平显著上升,表明24-表油菜素内酯可有效且持续地缓解毒死蜱的药害效应。  相似文献   

12.
毒死蜱对紫金山森林土壤酶活力及微生物毒性影响研究   总被引:1,自引:0,他引:1  
毒死蜱是有机磷类农药,对乙酰胆碱酯酶具有抑制作用,在农业虫害防治中应用广泛。为掌握毒死蜱对森林土壤酶活力和土壤微生物生态效应,选择紫金山森林土作为受试土壤,采用室内培养法,研究了毒死蜱对土壤蔗糖酶、脲酶、酸性磷酸酶和过氧化氢酶,以及土壤呼吸强度和氮素硝化作用的影响。结果表明:试验期间,1.25 mg a.i.·kg-1、12.5 mg a.i.·kg-1和125 mg a.i.·kg-1毒死蜱对土壤脲酶、酸性磷酸酶总体表现为抑制作用;对土壤蔗糖酶和过氧化氢酶的影响与暴露剂量和暴露时间有关,在60 d时,Z1低剂量处理组(1.25 mg a.i.·kg-1)蔗糖酶和过氧化氢酶可恢复,Z100高剂量处理组(125 mg a.i.·kg-1)抑制作用不能解除。试验初期,毒死蜱对土壤呼吸强度有一定刺激作用随后逐渐恢复;对土壤氮硝化作用影响表现为先促进后抑制,且抑制作用有长期影响。由此可知,毒死蜱使用对紫金山森林土的土壤酶活性和土壤微生物产生毒性效应,具有一定生态风险。  相似文献   

13.
Summary. Feeding by Pieris brassicae or P. rapae caterpillars on Brussels sprouts plants induces the emission of synomones that attract natural enemies of the caterpillars, Cotesia glomerata, a generalist parasitoid, and C. rubecula, a specialist on P. rapae. Previous research on this tritrophic system has identified a large number of volatiles in the headspace of herbivore-damaged Brussels sprouts plants, and this paper addresses the question which of these volatiles are perceived by the two parasitoid species. Headspace odors from both P. brassicae- and P. rapae-damaged Brussels sprouts plants were analyzed by coupled gas chromatography electro- antennogram (GC-EAG) detection. Twenty volatiles evoked consistent EAG reactions in the antennae of both species and nineteen of these volatiles could be identified with GC-MS. One component that could not be identified due to its low concentration, evoked EAG responses in antennae of C. rubecula only. Possible consequences for searching behavior of the two parasitoid species are discussed.  相似文献   

14.
Biomonitoring insecticide pollution using non-target soil microarthropods   总被引:2,自引:0,他引:2  
The scope of biomonitoring insecticide pollution in soil is discussed with the help of field and laboratory findings on the density, prey-predator ratio and fecundity of non-target microarthropod fauna. Field experiments were conducted in small plots with mustard, wheat and lady's finger crops and insecticides namely heptachlor 20EC (3.25 kg ai/ha = 16.25 lit/ha) and endosulfan 35EC (0.875 kg ai/ha = 2.5 lit/ha) applied at the seedling stages. Soil microarthropod population estimated at fortnightly intervals in the treated and untreated control plots revealed a general trend of adverse effect of the insecticides, prominently on the density and relative abundance of major prey groups like Collembola and Acari leading to notable decline in prey-predator ratio. Comparison of the percentage reductions of major taxonomic and trophic groups between pre-treatment and post-treatment intervals also demonstrated the ill effect of both heptachlor and endosulfan, notably on Collembola and the prey category. In the laboratory the survival success and fecundity of Cyphoderus javanus (Collembola) and Archegozetes longisetosus (Acari) were compared by exposing freshly emerged adults to sub-lethal concentrations of heptachlor and endosulfan for varying durations. The untreated control sets recorded high fecundity for both C. javanus and A. longisetosus, but chronic toxicity of the insecticides on adults confined to the treated soil resulted into very low fecundity. Even short duration exposure to heptachlor and endosulfan treated soil for 24 or 72 hours only was found to delay the egg-laying and decrease the fecundity of both the species. It is concluded that population responses and reproductive sensitivity in non-target soil microarthropods are potential eco-toxicological parameters for detecting pesticide pollution in soil and for ecological health assessment since the results are based on the bioactivity of toxicants.  相似文献   

15.
毒死蜱对土壤蔗糖酶活性的影响   总被引:7,自引:1,他引:7  
采用模拟方法探讨了毒死蜱污染土壤酶活性的变化规律。结果表明,有机质含量高的土壤,毒死蜱对土壤蔗糖酶具有明显的抑制作用,在酸性和中性条件下,酶活性的抑制幅度较大,在试验所设的培养时间内,毒死蜱对蔗糖酶活性的抑制总的变化趋势呈现先激活后抑制。建议对于有机质含量较高的土壤,采用蔗糖酶活性作为表征土壤毒死蜱污染程度的监测指标。  相似文献   

16.
海藻多糖稀土配合物对蔬菜有机磷农药残留的降解作用   总被引:1,自引:0,他引:1  
以小白菜、甘蓝、芹菜为试验材料,采用大田试验研究了海藻多糖稀土配合物对蔬菜中有机磷农药残留的影响.试验结果表明,叶面喷施海藻多糖稀土配合物对小白菜、甘蓝、芹菜中毒死蜱、氧化乐果、敌敌畏等有机磷农药残留具有明显的降解作用;对甘蓝中毒死蜱和氧化乐果的降解效果优于小白菜,但对芹菜中毒死蜱的降解效果远不及甘蓝和小白菜,表现出一定的作物选择性.叶面喷施海藻多糖稀土配合物对敌敌畏等磷酸酯类有机磷农药的降解作用比毒死蜱、氧化乐果等硫代磷酸酯类有机磷农药的降解强烈,表现出一定的农药选择性;另外,喷水对叶片表面残存农药具有一定的冲洗作用,可减少叶面农药的残留量;叶面喷施海藻多糖稀土配合物对甘蓝和小白菜中有机磷农药的降解率远高于叶面喷水.以上结果表明海藻多糖稀土配合物确实具有降解有机磷农药残留的作用.在蔬菜生产中将海藻多糖稀土配合物作为农药残留降解制剂是可行的,有利于蔬菜安全生产和提高蔬菜产品的食用安全性。  相似文献   

17.
Summary. Plant responses to herbivory might directly affect the herbivore (“direct” defences) or might benefit the plant by promoting the effectiveness of natural antagonists of the herbivores (“indirect” defences). Brussels sprouts attacked by Pieris brassicae larvae release volatiles that attract a natural antagonist of the herbivores, the parasitoid Cotesia glomerata, to the damaged plant. In a previous study, we observed that feeding by caterpillars on the lower leaves of the plant triggers the systemic release of volatiles detectable by the parasitoids from upper leaves of the same plant.?The role of these systemically induced volatiles as indirect defence and the dynamics of their emission were investigated in wind-tunnel dual choice tests with C. glomerata. The systemically induced emission of volatiles varied depending on leaf age and on plant age. Systemic induction affected parasitoid effectiveness, as induced plants could be more easily located by parasitoids than non-induced ones.?The role of the systemic induction as a direct defence was investigated through behavioural and feeding tests with P. brassicae. In dual choice assays, 1st instar larvae preferred to feed and fed more on systemically induced than on non-induced leaves. In single choice assays, the leaf area consumed by caterpillars was larger on systemically induced leaves than on non-induced control leaves. However, caterpillars fed on systemically induced leaves attained the same weight as those feeding on non-induced controls. In addition, P. brassicae pupae whose larvae were fed on systemically induced leaves had longer developmental times than those of larvae fed on non-induced leaves. Adult oviposition behavior was not influenced by systemic induction.?We conclude that systemically induced responses in cabbage might reduce P. brassicae fitness both directly, by affecting their development and feeding behavior and indirectly by making caterpillars and pupae more vulnerable to attack by carnivores. The occurrence of a possible relationship between direct and indirect defence is discussed. Received 24 January 2001; accepted 3 May 2001.  相似文献   

18.
The effects of 2 organophosphorous insecticides, temephos (Abate®) and chlorpyrifos (Dursban®), on populations of the salt-marsh snail Melampus bidentatus Say (Basommatophora: Melampidae) were investigated in a series of field experiments. These toxicants were aerially applied to mosquito breeding areas in New Jersey salt marshes in the manner normally used in biting-fly control operations. No significant change in the population density of M. bidentatus was observed in response to multiple treatments of granular formulations of either temephos or chlorpyrifos. However, there was a highly significant (P<0.01) depression in population density observed in the plot exposed to multiple treatments of a temephos emulsion. This depression was followed by a resurgence in density levels, beginning 3 weeks after the last treatment. The specific mechanism for thisperturbation is not known. However, it is hypothesized that it might involve some combination of indirect insecticide effects coupled with age-specific effects. Tests of age structure of the affected population using the chi-square distribution supported this hypothesis.Paper of the Journal Series, New Jersey Agricultural Experiment Station. This research was supported, in part, by a grant from the New Jersey Mosquito Control Commission.  相似文献   

19.
四环素类抗生素(TCs)在畜禽养殖中的大量使用甚至滥用,导致其在动物粪便中高浓度残留。随着畜禽粪便有机肥的农田施用,TCs持续进入土壤并且不断累积,由此带来的土壤生态危害和健康风险值得关注。以四环素(TC)、土霉素(OTC)为研究对象,采用室内培养试验法,考察2种典型TCs对土壤微生物、酶活性的影响及对植物生长的毒性作用。结果表明,低浓度TC和OTC作用下,土壤细菌和真菌数量即显著降低,土壤细菌较真菌对TCs的污染更为敏感。除TC对土壤酸性磷酸酶和OTC对土壤过氧化氢酶活性主要表现为激活作用外,总体上TC、OTC作用后土壤酶活性呈低浓度促进、高浓度抑制的变化趋势。80 mg·L~(-1)的TC、OTC暴露下,绿豆芽芽伸长被显著抑制,并且随着抗生素浓度的增大,绿豆芽伸长抑制率大幅升高。相同浓度、相同暴露时间条件下的TC对绿豆芽伸长的毒性大于OTC。  相似文献   

20.
为有效治理呋喃丹的污染,从受呋喃丹长期污染的土壤中分离筛选到一株高效降解呋喃丹的菌株CFDS-1,经形态、生理生化、16S rDNA(GenBank accession No.AY702969)同源性及系统发育地位等分析,将其初步鉴定为Sphingomonas sp.当接种量为5%时,CFDS-1能在48 h内降解100 mg L-1的呋喃丹,对于高达300 mg L-1的呋喃丹依然有降解效果;CFDS-1对呋喃丹的降解率与起始接种量呈正相关;降解呋喃丹的最适pH是8.0~9.0;在20~42℃范围内,温度对CFDS-1降解呋喃丹没有显著影响;该菌在250 mL三角瓶中装液量为100 mL时,对呋喃丹的降解效果最好.土壤实验表明,该菌株同样能有效地降解土壤中的呋喃丹残留.  相似文献   

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