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1.
We examined the possible multiple defects induced by acute and prolonged exposure to high levels of manganese (Mn) solution by monitoring the endpoints of lifespan,development,reproduction,and stress response.Our data suggest that acute exposure (6 h) to Mn did not cause severe defects of life span,development,and reproduction.Similarly,no significant defects could be found for the life span,development,and reproduction in animals exposed to a low concentration of Mn (2.5 μmol/L) for 48 h.In contrast,prolonged exposure (48-h) to high concentrations of Mn (75 and 200 μmol/L) resulted in significant defects of life span,development,and reproduction,as well as the increase of the percentage of population with hsp-16.2::gfp expression indicating the obvious induction of stress responses in exposed animals.Moreover,prolonged exposure (48-h) to high concentrations (75 and 200 μmol/L) of Mn decreased the expression levels of antioxidant genes of sod-1,sod-2,sod-3,and sod-4 compared to control.Therefore,prolonged exposure to high concentrations of Mn will induce the severe defects of life span,development,and reproduction in nematodes possibly by affecting the stress response and expression of antioxidant genes in Caenorhabditis elegans.  相似文献   

2.
Apart from the liver disruption, embryotoxicity and genotoxicity, microcystin (MC)-LR also could cause neurotoxicity. Nematode Caenorhabditis elegans was explored as a model to study the neurotoxicity. In the present study, we provided evidence to indicate the neurotoxicity on chemotaxis to NaCl and diacetyl, and thermotaxis from MC-LR exposure to C. elegans. As a result, higher concentrations of MC-LR caused significantly severe defects of chemotaxis to NaC1 and diacetyl, and thermotaxis. The neurotoxicity on chemotaxis to NaCl and diacetyl, and thennotaxis from MC-LR exposure might be largely mediated by the damage on the corresponding sensory neurons (ASE, AWA, and AFD) and interneuron AIY. The expression levels of che-1 and odr-7 were significantly decreased (P<0.01) in animals exposed to MC-LR at concentrations lower than 10 μg/L, whereas the expression levels of ttx-1 and ttx-3 could be significantly (P<0.01) lowered in animals even exposed to 1 μg/L of MC-LR. Moreover, both the chemotaxis to NaCl and diacetyl and the thermotaxis were more significantly reduced m MC-LR exposed mutants of che-1(p674), odr-7(ky4), ttx-1(p767), and ttx-3(ks5) than those in exposed wild-type N2 animals at the same concentrations.  相似文献   

3.
Sulfamethoxazole (SMX) is one of the most common detected antibiotics in the environment. In order to study whether SMX can a ect behavior and growth and whether these e ects could be transferred to the progeny, Caenorhabditis elegans was exposed at environmentally relevant concentrations for 24, 48, 72 and 96 hr, respectively. After exposure, the exposed parent generation (P0) was measured for behavior and growth indicators, which were presented as percentage of controls (POC). Then their corresponding unexposed progeny (F1) was separated and measured for the same indicators. The lowest POC for P0 after 96 hr-exposure at 100 mg/L were 37.8%, 12.7%, 45.8% and 70.1% for body bending frequency (BBF), reversal movement (RM), Omega turns (OT) and body length (BL), respectively. And F1 su ered defects with the lowest POC as 55.8%, 24.1%, 48.5% and 60.7% for BBF, RM, OT and BL, respectively. Defects in both P0 and F1 showed a time- and concentration-dependent fashion and behavior indicators showed better sensitivity than growth indicator. The observed e ects on F1 demonstrated the transferable properties of SMX. Defects of SMX at environmental concentrations suggested that it is necessary to perform further systematical studies on its ecological risk in actual conditions.  相似文献   

4.
Toxicity identification evaluation (TIE) can be used to determine the specific toxicant(s) in industrial e uents. In the current study, the authors have attempted to combine the advantages of the model organism, Caenorhabditis elegans, with the virtues of the TIE technique, to evaluate and identify the toxicity on aging from a paper recycling mill e uent. The results indicate that only the toxicities from mixed cellulose (MC) filtration and EDTA treatment are similar to the baseline aging toxicity, suggesting that the suspect toxicants inducing aging toxicity may largely be the heavy metal substances in this industrial e uent. Examination of the accumulation of intestinal autofluorescence in adult animals further confirms that the short lifespans are actually due to accelerated aging. In addition, exposure to fractions of EDTA manipulations cannot result in severe defects of reproduction and locomotion behaviors in C. elegans. Moreover, high levels of Ca, Al, and Fe in the e uent may account for the severe toxicity on aging of exposed nematodes, by TIE assay. The study here provides a new method for evaluating environmental risk and identifying toxicant(s) from the industrial e uent using C. elegans.  相似文献   

5.
Chemotaxis to water-soluble attractants is mainly controlled by ASE sensory neuron whose specification is regulated by che-1 in Caenorhabditis elegans. Our data suggested that exposure to high concentrations of metals, such as Pb, Cu, Ag, and Cr, would result in severe defects of chemotaxis to water-soluble attractants of NaCl, cAMP, and biotin. Moreover, the morphology of ASE neuron structures as observed by relative fluorescent intensities and relative size of fluorescent puncta of cell bodies, relative lengths of sensory endings in ASE neurons, and the expression patterns of che-1 were obviously altered in metal exposed animals when they meanwhile exhibited obvious chemotaxis defects to water-soluble attractants. In addition, the dendrite morphology could be noticeably changed in animals exposed to 150 mol/L of Pb, Cu, and Ag. Furthermore, we observed significant decreases of chemotaxis to water-soluble attractants in Pb exposed che-1 mutant at concentrations more than 2.5 mol/L, and in Cu, Ag, and Cr exposed che-1 mutant at concentrations more than 50 mol/L. Therefore, impairment of the ASE neuron structures and functions may largely contribute to the appearance of chemotaxis defects to water-soluble attractants in metal exposed nematodes.  相似文献   

6.
We used toxicity identification evaluation (TIE) method to confirm the combinational e ects of identified toxic metals in a paper recycling mill e uent in inducing the decreased lifespan in nematode Caenorhabditis elegans. Exposure to Ca + Al caused more severely decreased lifespan than that exposed to Ca, or Al; and exposure to Ca + Fe induced more severely decreased lifespan than that exposed to Ca, or Fe. Exposure to Ca+Al+Fe caused more severely decreased lifespan than that exposed to Ca, or Ca+Fe. Moreover, the baseline toxicity on lifespan was doubled by doubling the concentration of combined metals (Ca+Al+Fe) in spiking test in original e uent (oe), and lifespan defects in oe+Ca+Al+Fe exposed nematodes were more severe than that in Ca+Al+Fe exposed nematode. Therefore, Ca+Al+Fe exposure may largely explain the formation of decreased lifespan induced by the examined industrial e uent. Furthermore, the observed reduction of lifespan induced by the combination of high level of Ca with other metals may be at least partially independent of the insulin-like pathway.  相似文献   

7.
Locomotion behaviors are susceptible to disruption by a broad spectrum of chemicals and environmental stresses. However, no systematic testing of locomotion behavior defects induced by metal exposure has been conducted in the model organism of nematode Caenorhabditis elegans. In this study, the acute toxicity from heavy metal exposure on the locomotion behaviors was analyzed in nematodes. Endpoints of head thrash, body bend, forward turn, backward turn, and Omega/U turn were chosen to evaluate the locomotio...  相似文献   

8.
久效磷(MCP)是一种广谱类内吸附性有机磷农药和潜在的神经毒剂,能够对非靶生物产生神经毒性作用,而行为毒性是神经毒性的主要表现形式. 以运动、学习与觅食行为、乙酰胆碱酯酶活性为指标,研究了久效磷对非靶生物——秀丽隐杆线虫(Caenorhabditis elegans,下称线虫)行为的影响. 结果显示:经0.5、5.0和50.0 mg/L久效磷暴露后,各暴露组线虫头部摆动和身体弯曲频率均极显著降低,0.5 mg/L暴露组线虫向前摆动频率显著减少,5.0和50.0 mg/L暴露组线虫向前摆动频率极显著减少;5.0和50.0 mg/L暴露组线虫在NaCl存在和缺少食物条件下,对NaCl的趋向性极显著升高;与对照组相比,50.0 mg/L暴露组线虫菌落接触率在2、4、6、8 h时均显著降低,在24 h时极显著降低;各暴露组线虫的乙酰胆碱酯酶活性均受到极显著抑制. 表明久效磷能够导致线虫运动、学习与觅食行为的严重缺陷,乙酰胆碱酯酶活性抑制与久效磷对线虫运动行为的影响呈正相关,与其学习行为的影响呈负相关.   相似文献   

9.
Here we investigated the possible roles of oxidative stress in the formation of decreased thermotaxis to cultivation temperature in lead (Pb)-exposed nematodes Caenorhabditis elagans. Exposure to Pb at the examined concentrations decreased thermotaxis behaviors, and induced severe deficits in the structural properties of AFD sensory neurons. Meanwhile, Pb exposure caused the induction of severe oxidative damage, reactive oxygen species (ROS) production, and mitochondrial dysfunction in young adults. Moreover, pre-treatment with the antioxidants dimethyl sulfoxide (DMSO), ascorbate and N-acetyl-L-cysteine (NAC), used to inhibit both the ROS elevation and the mitochondrial dysfunction caused by Pb exposure, at the L2-larval stage prevented the induction of oxidative damage and the formation of severe deficits in thermotaxis and structural properties of AFD sensory neurons in Pb-exposed young adults. Therefore, the formation of oxidative stress caused by Pb exposure may be due to both the induction of ROS elevation and damage to mitochondrial function, and oxidative stress may play a key role in inducing the neurotoxic effects on the structures and function of AFD sensory neurons in Pb-exposed nematodes.  相似文献   

10.
Among more than 75 variants of microcystin(MC),microcystin-LR(MC-LR) is one of the most common toxins.In this study,the feasibility of using Caenorhabditis elegans to evaluate MC-LR toxicity was studied.C.elegans was treated with MC-LR at different concentrations ranging from 0.1 to 80 μg/L.The results showed that MC-LR could reduce lifespan,delay development,lengthen generation time,decrease brood size,suppress locomotion behavior,and decreases hsp-16-2-gfp expression.The endpoints of generation time,brood...  相似文献   

11.
IntroductionNationalStatisticalOffice ,Thailand (NSO ,2 0 0 0 )reportedthattheneedformetalmanufacturingindustriesandassociatedproductionsectorhasincreasedatanextremelyrapidrate ,especiallyinthecentralpartofThailand .Itisestimatedthattherearemorethan 10 0 …  相似文献   

12.
为了探究重金属单独及联合暴露对秀丽隐杆线虫(Caenorhabditis elegans)繁殖的影响及其作用机制,采用96孔板液相暴露试验,以环境相关浓度(0.1~50.0 μg/L)的Cd、Hg、Pb暴露同步化处理秀丽隐杆线虫,24 h后统计其怀卵数及阴门畸形率,以及连续记录72 h内子一代秀丽隐杆线虫的个体数,最后利用2×2析因设计方差分析阐明重金属的两两联合作用模式. 结果表明:与对照组相比,Cd、Hg、Pb单独及联合暴露对秀丽隐杆线虫的繁殖具有显著抑制作用,ρ(Cd)为50.0 μg/L、ρ(Hg)为10.0 μg/L、ρ(Pb)为50.0 μg/L暴露组秀丽隐杆线虫子一代数量分别降低了43.5%、33.8%、51.0%;Cd-Hg暴露组〔当ρ(Cd)、ρ(Hg)分别为50.0、10.0 μg/L时〕、Hg-Pb暴露组〔当ρ(Hg)、ρ(Pb)分别为10.0、50.0 μg/L时〕、Cd-Pb暴露组〔当ρ(Cd)、ρ(Pb)分别为50.0、50.0 μg/L时〕秀丽隐杆线虫子一代个体数分别降低了44.7%、61.0%、53.3%. 进一步研究发现,Cd、Hg、Pb单独及联合暴露会引起秀丽隐杆线虫子宫内受精卵数量降低以及产卵器阴门结构畸形率升高. 2×2析因设计方差分析结果发现,Cd、Hg、Pb两两联合暴露对秀丽隐杆线虫的繁殖表现为没有交互作用或者交互方式为拮抗. 研究显示,秀丽隐杆线虫子宫内怀卵数的降低是其子一代数量显著减少的主要原因,而阴门结构的损伤可能使产卵行为受损,从而进一步加剧重金属对秀丽隐杆线虫繁殖的抑制作用.   相似文献   

13.
张绪超  陈懿  胡蝶  赵力  王琳  吴敏 《中国环境科学》2019,39(6):2644-2651
为了评价生物炭的使用对生态系统,尤其是对土壤无脊椎动物的毒性影响,使用模式生物秀丽隐杆线虫(Caenorhabditis elegans,C.elegans)来评估生物炭的环境风险.观察了生物炭原样、生物炭颗粒物和生物炭浸提液对线虫神经行为学评价指标(身体摆动频率、相对运动长度、排泄间隔时间、碰触反应率和化学感知行为指数)的影响;并结合生物炭的理化性质、非金属元素组成和重金属元素含量以及环境持久性自由基(EPFRs)的强度,评估生物炭对线虫的生物毒性.结果显示,EPFRs信号强的生物炭和颗粒物对秀丽隐杆线虫有一定的毒物兴奋效应,EPFRs信号微弱的浸提液无显著性影响.因此,生物炭中的EPFRs对秀丽隐杆线虫有潜在的神经毒性作用.  相似文献   

14.
二氧化硫和铅联合染毒对小鼠遗传物质的损伤   总被引:1,自引:0,他引:1  
运用单细胞凝胶电泳技术研究了SO2和醋酸铅亚急性联合染毒对雄性小鼠脑、肺、脾、肾细胞DNA的损伤.结果表明,在42mg/m3 SO2和0.2%醋酸铅单独及联合作用下,小鼠脑、肺、肾、脾细胞DNA迁移距离均比对照组显著增加,而且铅可以加剧SO2对脑、肾、脾细胞核DNA的损伤程度;SO2对肺细胞核DNA的损伤程度要比铅的损伤大,小鼠肺细胞核DNA迁移距离在SO2和醋酸铅联合作用组与醋酸铅单独作用组间有极显著性差异(P<0.01),而与SO2单独作用组间没有显著性差异.SO2和醋酸铅均可引起小鼠组织细胞的DNA损伤,它们对脑、肺、脾、肾的损伤程度不同,在一定条件下存在明显的协同效应,可以增强彼此的毒性作用.这意味着SO2和铅均有引起哺乳动物细胞基因突变的潜在危险,大气SO2污染与铅的污染可能加剧某些疾病的发生与发展.  相似文献   

15.
IntroductionAirpollutionproblemsasaresultoffastgrowthinthetotalnumberofvehiclesinurbancitiesareontheincrease .PreliminaryepidemiologicalexposureassessmentsuggestthatthedetrimentaleffectofairpollutiongeneratedbyvehiculartrafficindevelopingcitieslikeBangkok…  相似文献   

16.
根据OECD试验指南,研究了人工土壤铅暴露下赤子爱胜蚓(Eisenia fetida)的急性毒性和氧化应激反应. 结果表明:铅暴露对赤子爱胜蚓14d的LC50(半致死浓度)为2576.76mg/kg,95%置信区间为2388.42~2792.00mg/kg;铅暴露第1、7、14天赤子爱胜蚓的SOD(超氧化物歧化酶)活性,铅暴露第1、14天的POD(过氧化物酶)活性,铅暴露第14天的MDA(丙二醛)含量均与w(Pb)呈良好的剂量-效应关系,但CAT(过氧化氢酶)活性与w(Pb)未呈剂量-效应关系. 赤子爱胜蚓体内3种抗氧化酶对人工土壤铅污染响应的敏感程度为SOD>POD>CAT,SOD作为抗氧化系统的重要酶类可以更好地预测污染物对于赤子爱胜蚓的亚致死毒性.   相似文献   

17.
Toxicity identification evaluation (TIE) can be used to determine the specific toxicant(s) in industrial effluents.In the current study,the authors have attempted to combine the advantages of the model organism,Caenorhabditis elegans,with the virtues of the TIE technique,to evaluate and identify the toxicity on aging from a paper recycling mill effluent.The results indicate that only the toxicities from mixed cellulose (MC) filtration and EDTA treatment are similar to the baseline aging toxicity,suggesting ...  相似文献   

18.
为探究低浓度甲醛(FA)单独及与PM2.5联合暴露对哮喘小鼠的影响,选取70只雄性Balb/c小鼠,随机分为5组,分别为:对照组、卵清蛋白(OVA)组、FA+OVA组、PM2.5+OVA组、FA+PM2.5+OVA组,每组14只,其中6只进行气道高反应性(AHR)检测,其余8只用于检测血清T-IgE、肺泡灌洗液(BALF)中IFN-γ、IL-4以及肺组织中活性氧(ROS)、丙二醛(MDA)的含量,并对BALF中炎症细胞进行计数.同时对小鼠肺组织进行H&E染色以及p-p38MAPK和p-p65NF-κB免疫组化分析.结果显示,与OVA组相比,0.5mg/m3FA单独暴露组哮喘小鼠肺部MDA水平显著升高(P<0.001),肺部炎症细胞呈现上升趋势(P>0.05),0.5mg/m3FA和0.5mg/kg PM2.5联合暴露组哮喘小鼠肺部炎症显著加重(P<0.05或P<0.01),肺功能减弱(P<0.01),肺部氧化应激水平以及p38MAPK和NF-κB的磷酸化水平均显著升高(P<0.05或P<0.001),Th2型细胞因子释放显著增加(P<0.01).因此,低浓度FA单独暴露会加重哮喘小鼠肺部损伤而非抑制,并且可进一步促进PM2.5对哮喘小鼠肺部的损伤,即低浓度FA和PM2.5联合暴露会对哮喘小鼠肺部造成严重损害,这可能与ROS介导的p38MAPK途径加剧Th1/Th2型免疫反应失衡有关.  相似文献   

19.
武汉市儿童多途径铅暴露风险评估   总被引:4,自引:4,他引:0  
在武汉市区设置70个采样点,采集土壤、灰尘、大气及食品样品.根据美国EPA推荐的儿童铅暴露参数,应用美国EPA人体暴露风险评估方法对武汉市儿童多途径铅暴露进行了风险评估,结果表明,武汉市区儿童每天的铅暴露量为1.20×10-3mg.(kg.d)-1.经消化道途径是儿童摄入铅的主要途径,其暴露量为1.04×10-3mg.(kg.d)-1,其次为经呼吸道途径及皮肤吸收途径,其暴露量分别为0.153×10-3mg.(kg.d)-1和8.56×10-7mg.(kg.d)-1.在消化道途径中,摄入土壤或灰尘铅暴露量占占总暴露量的52.0%,通过消化道途径摄入土壤或灰尘是最主要的暴露途径.用Monte Carlo法进行模拟,在消化道途径中,通过摄取土壤铅暴露量为2.48×10-2mg.d-1.超过JECFA指定的PTDI的概率为2.1%.风险水平R计算结果表明,从消化道、呼吸道、皮肤吸收这3个途径的铅暴露风险均小于最大可接受风险水平5.0×10-5,其中经过皮肤吸收途径的铅暴露风险值小于可忽略风险水平1×10-8.应用Kriging插值法获得武汉市中心城区儿童铅日暴露量的空间分布,运用指示Kriging方法获得了武汉市儿童铅暴露危险指数图,显示武汉市青山区及江岸区儿童铅暴露水平较高.  相似文献   

20.
利用模式动物线虫追踪造纸厂废水中酸碱类毒物的研究   总被引:2,自引:1,他引:1  
在毒性鉴别评价技术TIE程序中引入模式动物线虫,并通过寿命、半数致死天数、生殖速度、生殖能力、身体运动行为等指标进行造纸厂工业废水中酸碱类毒物的毒性评价研究。结果表明,对线虫生命周期的影响程度上:2号>4号>1号>3号,对世代时间的影响程度上:2号>1号>3号?4号,对产卵数目与头部摆动频率的影响效应相当:1号?2号>3号?4号,对身体弯曲次数的影响程度上:1号?2号>3号>4号,且2号水样对线虫所有指标皆呈极显著性影响(p<0.01)。因此,造纸废水中的易受酸性影响的碱类毒物毒性相对最强,而易受碱性影响的酸类毒物以及颗粒状毒物只是对线虫具有一定程度的影响,或者影响某一特定的方面。该研究策略有效地对造纸厂工业废水中的酸碱性毒物的生态毒性进行了评价。  相似文献   

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