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1.
The effects of exposure of human erythrocytes to different concentrations of Roundup Ultra 360 SL and its active compound glyphosate were studied. We studied hemolysis after 1, 5, and 24 h incubation; lipid peroxidation, hemoglobin oxidation, the level of reduced glutathione, and the activity of catalase after 1 h. Human erythrocytes were incubated with 100-1500 ppm (100 μg/ml erythrocytes at 5% hematocrite) Roundup Ultra 360 SL and glyphosate. We have found that after 1 h of incubation only Roundup Ultra 360 SL increased the level of methemoglobin, products of lipid peroxidation at 500 ppm and hemolysis at 1500 ppm [Curr. Top. Biophys. 26 (2002) 245], while its active compound glyphosate increased the level of methemoglobin and the level of lipid peroxidation at much higher dose—1000 ppm. At the same time hemolysis was observed to only at the highest dose of glyphosate (1500 ppm) and the longest time of incubation (24 h). Both Roundup Ultra 360 SL and glyphosate did not cause statistically significant changes in the level of GSH, but increased the activity of catalase. Roundup Ultra 360 SL provokes more changes in the function of erythrocytes than its active substance glyphosate, which is probably a result of the properties of additives. Taking into account the limited accumulation of Roundup Ultra 360 SL and glyphosate in the organism as well as the fact that the threshold doses which caused changes in erythrocytes for Roundup Ultra 360 SL were only 500 and 1000 ppm for glyphosate, one may conclude that this pesticide is safe towards human erythrocytes.  相似文献   
2.
类黄酮在草甘膦诱导的苦荞膜脂过氧化中的作用   总被引:2,自引:0,他引:2  
研究了草甘膦对苦荞类黄酮次生代谢的影响及类黄酮与草甘膦作用下膜脂过氧化伤害的关系,以探讨植物类黄酮代谢的意义及在草甘膦伤害中的作用机制。结果表明,分别用浓度为0.1、0.3、1mmoL/L的草甘膦处理苦荞幼苗,苦荞类黄酮代谢受到明显抑制,处理3天时类黄酮含量比对照分别下降58.1%、65.8%和76.5%。草甘膦处理导致苦荞膜脂过氧化加剧,0.1mmoL/L草甘膦处理使苦荞相对电导率增加275.4%、丙二醛(MDA)含量增加134.1%、超氧自由基O2^-产生速率增加121.7%,且随草甘膦浓度升高而增加幅度加大,说明草甘膦伤害与膜脂过氧化程度有关。0.3mmoL/L草甘膦处理后再用0.1mmoL/L类黄酮物质芦丁处理,电解质外渗下降34.2%,MDA含量下降51.1%,O2^-产生下降33.9%,明显减轻了草甘膦的伤害,这说明草甘膦作用下类黄酮含量的下降与草甘膦对苦荞组织伤害有一定的关系。  相似文献   
3.
草甘膦在松杉撒播苗圃苗后除草应用技术研究   总被引:3,自引:0,他引:3       下载免费PDF全文
  相似文献   
4.
【目的】探究草甘膦与H2O2复合污染条件下草甘膦对福寿螺Pomacea canaliculata的急性毒性效应。【方法】采用静水式生物测试法,采集田间生长均匀一致的成年福寿螺,使其暴露于不同浓度草甘膦和近似广州地区降水H2O2浓度(50μmol·L-1)的水体中。研究氧化沉降条件下草甘膦对福寿螺生境的水质部分指标和急性毒性效应的影响。【结果】水体水质指标中,氧化还原电位(Oxidation-reduction potential,ORP)随暴露时间增加而上升,由330 mV上升至540 mV左右;pH随暴露时间增加,不同处理有上升也有下降的趋势,最终都维持在7.0~8.5;溶解氧(Dissolved oxygen,DO)在8.5~16.0 mg·L-1之间,无固定变化规律;这3个指标都维持在福寿螺生长能适应的范围内。急性毒性试验表明,草甘膦对福寿螺为低毒,在有或无H2O2添加时其48 h的半致死浓度(LC  相似文献   
5.
为了研究不同大豆种质材料对草甘膦的敏感性,于大豆2~3片复叶期,对1365份大豆试材喷施草甘膦异丙胺盐水剂1230g/hm2,按照大豆药害程度、存活率和结荚率的不同将药害等级划分为1-10级(级别越高,药害越重,敏感程度越高)。结果表明:喷施草甘膦后所有参试材料均出现不同程度的药害症状,表现为叶片发黄甚至干枯,植株矮化;药害等级从10级到2级,其中,366份表现敏感(9—10级),340份表现比较敏感(8级),268份表现中度敏感(6~7级),241份有一定的耐性(4~5级),92份耐性较好(3级),58份耐性良好(2级)。不同类型大豆种质材料对草甘膦的敏感性存在差异,其中,所有野生大豆均表现敏感,夏播试材中耐性种质所占比例高于其他类型材料。  相似文献   
6.
转EPSPS基因抗草甘膦棉花的遗传分析   总被引:2,自引:0,他引:2  
为分析转基因抗草甘膦棉花早代遗传情况,以花粉管通道法获得的26个转5-烯醇式丙酮酰莽草酸-3-磷酸合酶基因(EPSPS)抗草甘膦棉花转化事件为材料,以其背景亲本中棉所49为对照,喷施草甘膦后对转基因棉T1、T2分离比例进行考察。T1田间抗性鉴定结果表明,经卡方检测20个转化事件T1分离符合3∶1的分离规律,即外源基因插入1个位点;6个转化事件不符合1对基因的分离规律,出现了偏分离。T2田间抗性鉴定结果表明,通过花粉通管法共获得152个纯合株系,分别来源于25个转化事件;对T2不纯合株系继续进行分离比例的考察,发现来源于15个转化事件的57个株系符合3∶1的分离规律;此外卡方检测结果表明,每个转化事件都有不符合3∶1分离规律的株系,且其中10个转化事件没有符合3∶1分离规律的株系。表明通过花粉管通道法获得的转基因植株中外源基因的整合和遗传均较复杂。  相似文献   
7.
除草剂草甘膦的性质及环境行为综述   总被引:31,自引:0,他引:31  
草甘膦是一种广谱、非选择性芽后除草剂,它被越来越广泛地应用于农业。本文总结了草甘膦的一些基本性质及其在环境中的行为和降解机理,概述了国内外的研究现状,及影响其在土壤环境去向的一些因素,如土壤性质、磷酸盐、重金属和DOC的存在等,为进一步研究提供一些建设性的参考。  相似文献   
8.
草甘膦对毛竹笋用林土壤理化性质的影响分析   总被引:2,自引:0,他引:2  
在毛竹笋用林中长期使用草甘膦且又不进行施肥等抚育措施,会对土壤的结构产生影响,造成容重增加,总孔隙度降低,不利于竹鞭的正常生长,通过增施有机肥可有效降低草甘膦对土壤结构的影响.试验结果表明,长期使用草甘膦对土壤有机质有一定影响,但对全氮、全磷、水解氮、速效磷、速效钾、pH值、交换性氢和交换性铝均未有显著差异.  相似文献   
9.
Shelterwood seed cutting in conjunction with herbicide site preparation has proven effective at regenerating Allegheny hardwood forests, but the long-term impact of this silvicultural system on herbaceous vegetation has not been determined. From 1994 to 2004, we studied the impacts of operational herbicide site preparation using glyphosate plus sulfometuron methyl herbicides in the context of a shelterwood seed cut. Our study took place on 10 partially cut sites on the Allegheny National Forest in northwestern Pennsylvania. Half of each site received herbicide and half did not in a split-plot design with repeated measures. Fences were erected after year six because deer impact had increased. Resilience of individual species and the community were determined using measures of percent cover by species or species groups and indices of diversity and similarity comparing post-treatment to pre-treatment conditions and controls. In the short term, abundance of all species was reduced and there were four fewer species on average in treated areas. No species was eliminated by herbicide across all sites in the long term. Graminoids were more abundant on treated plots after year six. Targeted ferns remained less abundant on treated than control plots after 10 years. Species richness recovered within 4 years following treatment. Shannon Diversity and Shannon Evenness were greater in treated than in control plots over the full study period, but the differences were not significant in any single year. The richness-based Jaccard index of similarity did not differ between control and treatment plots after year two, while relative abundance influenced indices showed significant differences through year eight. Results suggest that herbaceous layer vegetation is resilient to the disturbance created by herbicide-shelterwood treatments.  相似文献   
10.
Herbicides released through agricultural activities to surface waters and drinking water systems represent a risk to human and environmental health, as well as a cost to municipalities for removal. This study focuses on the viability of glyphosate tolerant cropping systems as an alternative to atrazine-based systems, and the impact of tilling historically no-till ground on the runoff pollution potential of these systems. Variable intensity field rainfall simulations were performed on 2 m long × 1 m wide plots within a field in first-year disk and harrow following no-till (CT), and within a long-term no-tilled (NT) field, both treated with atrazine and glyphosate according to label. Rainfall sequence was: 50 mm h−1 for 50 min followed by 75 mm h−1 for 15 min, 25 mm h−1 for 15 min, and 100 mm h−1 for 15 min. Runoff was collected at regular time intervals during two simulated rainfall events and analyzed for herbicide concentration, sediment content, and volume. Maximum glyphosate concentration in runoff was 233 μg L−1 for NT and 180 μg L−1 for CT (approximately 33% and 26% of the maximum contaminant limit (MCL) for glyphosate (700 μg L−1), respectively, while maximum atrazine concentrations in runoff was 303 μg L−1 for NT and 79 μg L−1 for CT (approximately 100 times and 26 times the atrazine MCL (3 μg L−1)). Atrazine concentration and loading were significantly higher in runoff from NT plots than from CT plots, whereas glyphosate concentration and loading were impacted by tillage treatment to a much lesser degree. Results suggest that glyphosate-based weed management may represent a lower drinking water risk than atrazine-based weed management, especially in NT systems.  相似文献   
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