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1.
不同浓度的五氯酚对斑马鱼运动行为的影响   总被引:1,自引:0,他引:1  
由于突发性水源污染频发,建立一种实时的风险监测评估系统十分迫切。本研究通过在线生物监测仪实时记录斑马鱼在五氯酚(PCP)中暴露前后的3D行为响应数据,分别从运动轨迹、游动速度(中值)、浮出水面频率及熵值4个指标分析斑马鱼的行为响应。结果表明:与对照组相比,暴露于低浓度(0.25、0.5 mg·L-1)的PCP中的斑马鱼,其游动速度(中值)和熵值呈递减趋势,但趋势不明显,其浮出水面频率有不同程度的增加;而暴露于较高浓度(1.0、2.0 mg·L-1)的PCP中的斑马鱼,其游动速度(中值)、浮出水面频率、熵值约有10 min的急速升高之后降低;暴露于高浓度(4.0 mg·L-1)的PCP中的斑马鱼,所有指标均呈明显下降趋势。这表明斑马鱼的毒性行为响应随PCP的浓度变化而变化,所以可以通过监测鱼类的行为变化来反映水体的污染状况。因此,鱼类行为学研究在高浓度突发性水源污染的实时监测方面具有一定的应用前景。  相似文献   

2.
采用计算机摄像跟踪技术,以正常水体中斑马鱼的行为变化为基础,比较突发性氯化镉和敌敌畏污染胁迫下斑马鱼的个体行为(游动速度、深度、转弯次数和加速度)和鱼群行为(平均距离和分散度)的变化规律.研究结果表明:斑马鱼在两种污染物突发性胁迫下,行为反应快速且敏感,游动行为响应与污染物种类和暴露时间直接相关;两种不同类型的污染胁迫...  相似文献   

3.
以马拉硫磷和百菌清为胁迫因子,本文研究了2种污染物暴露下斑马鱼行为强度的变化。首先通过急性毒性试验确定了2种农药对斑马鱼24 h、48 h、72 h、96 h的半致死浓度(LC50),其次以LC50-48 h为1个染毒单位(TU),在0.01 TU、0.1 TU、0.5 TU、1 TU、2 TU 5个条件下,本文开展了斑马鱼行为学研究。结果显示,48 h马拉硫磷暴露斑马鱼的LC50为5 mg·L~(-1),百菌清暴露斑马鱼的LC50为0.01 mg·L~(-1)。随着污染物浓度增大,综合行为强度变化幅度增大。在设置的暴露浓度下,斑马鱼的行为强度在急剧增大或减小后都出现了明显的调节适应过程,基本符合环境压力模型。通过比较在不同频率下的影响强度,马拉硫磷和百菌清暴露斑马鱼摆鳍所受影响最大。本研究提示,水质监测中可增加斑马鱼摆鳍观察指标。  相似文献   

4.
水体甲苯、乙苯和二甲苯对斑马鱼的毒性效应   总被引:8,自引:1,他引:7  
以斑马鱼(Brachydanio rerio)为实验生物,采用半静态实验方法,研究了甲苯、乙苯和二甲苯的水生生态毒性效应.研究表明,水体中甲苯、乙苯和二甲苯对斑马鱼96h半致死浓度LC50分别为77.5、31.0和34.8mg·L-1,根据化学物质对鱼类毒性分级标准,3种物质均属中等毒性,其毒性大小顺序为:乙苯>二甲苯>甲苯.在最高暴露浓度下,斑马鱼均出现了剧烈、无序游动,并伴有抽搐等现象,其中暴露在甲苯中的斑马鱼行为改变更为严重.分析认为,3种物质对斑马鱼毒性大小与疏/亲水性有关,疏水性越强,对水生生物的毒性作用越大.  相似文献   

5.
磷酸三苯酯(triphenyl phosphate,TPP)作为多溴联苯醚类阻燃剂的替代产品,是一类生产和需求量均相当高的有机磷酸酯类阻燃剂,目前已在多种环境介质以及生物体内均有不同程度检出。由于结构和有机磷农药具有相似性,其对生物的神经毒性值得关注。本研究以斑马鱼为实验动物,研究了TPP(5~625%g·L-1)的胚胎发育毒性和行为毒性,并通过检测乙酰胆碱酯酶活性以及神经系统相关基因的转录水平,探讨其可能的毒性机制。研究发现,TPP可导致斑马鱼胚胎孵化时间延长,体长变短,心率变慢。同时,TPP暴露也可以影响斑马鱼幼鱼在持续光照和明暗周期刺激下的游泳行为,表现为低浓度增加而高浓度降低其游泳速度。而TPP暴露后幼鱼乙酰胆碱酯酶活性以及神经发育相关基因转录水平的变化可能是导致其行为毒性的原因。虽然实验中所设定的暴露浓度高于环境中一般浓度,但TPP在短期暴露中所表现出的胚胎和神经发育毒性表明TPP对于水生生物可能存在一定风险,需要进一步研究加以确认。  相似文献   

6.
铅是公认的神经毒物,它的神经毒性是全世界备受关注的重要公共健康问题,特别是发育早期阶段铅暴露与神经行为变化之间的关联.斑马鱼被认为是研究发育早期阶段低浓度铅暴露诱导神经行为毒性的优良模式生物.因此,本研究以斑马鱼胚胎/仔鱼为研究对象,利用Zebrabox建立的行为学效应测试方法,包括运动行为、转动行为和社交行为,系统评价发育早期阶段环境相关浓度(以电子废弃物拆解场地为例)铅暴露的神经行为毒性效应.发育正常的斑马鱼胚胎暴露在浓度为0、5、10、20μg·L~(-1)铅暴露液中直至6 dpf.铅暴露对斑马鱼胚胎/仔鱼具有发育毒性作用,包括孵化率和存活率下降,卵黄囊肿、心包囊肿和脊柱弯曲等畸形现象.在光照条件下,铅暴露对斑马鱼仔鱼的运行行为和转向行为并未产生显著影响;但是在黑暗条件下,20μg·L~(-1)铅暴露后斑马鱼仔鱼运动距离和总转向次数均显著下降,但是其行进路径角度和偏转偏好却无变化.与运动行为和转向行为不同,在黑暗条件下,铅暴露对斑马鱼仔鱼的社交行为并未产生显著影响;但在光照条件下20μg·L~(-1)铅暴露却显著改变了仔鱼的社交次数.本研究结果表明,行为学指标不仅具备足够的灵敏度可用于指示电子废弃物拆解场地铅污染的潜在风险,还能更好地服务于人类健康早期预警的需求.  相似文献   

7.
1,3-二苯胍(1,3-diphenyl guanidine, DPG)是橡胶生产过程中添加的硫化促进剂,在水环境中广泛存在。然而作为水环境中的一种污染物,目前DPG对水生生物的毒性及其机制的研究极为匮乏。为了研究DPG对水生生物的生殖发育毒性及潜在机制,选择水生模式生物斑马鱼(Danio rerio)作为受试生物。将斑马鱼胚胎分别暴露于浓度为30、100和300μg·L-1的DPG溶液中120 h,通过转录组测序、基因表达水平定量分析及性激素水平测定(雌二醇和睾酮)来探究其对斑马鱼早期生命阶段的生殖发育毒性及机制。转录组测序结果表明,DPG暴露可以显著影响与精卵识别及生殖细胞发育相关的生物学过程。DPG暴露使类固醇合成通路相关基因(cyp11a1、cyp17a1、cyp19a1a、hsd17b1、ar)的转录表达显著上调。激素结果表明DPG暴露导致斑马鱼仔鱼体内雌二醇水平显著升高。以上研究结果表明,在分子水平上,DPG能够影响斑马鱼胚胎及仔鱼的发育,但是在个体水平上仍然缺乏直接的证据揭示DPG暴露对斑马鱼生殖和胚胎发育的不良结局。本研究为DPG对水生生物的毒性研...  相似文献   

8.
环境浓度水平下双酚A(BPA)暴露对生物体的毒性效应受到广泛关注。以早期发育阶段斑马鱼为模型,评价了环境浓度下BPA暴露对斑马鱼幼鱼运动行为的影响,并探讨了可能的作用机制。将斑马鱼胚胎暴露于不同浓度BPA(0、1、3、10和30"g·L-1)后,斑马鱼幼鱼的整体平均运动速率显著降低。低浓度组幼鱼在持续光照条件下的运动行为显著降低,同时5-羟色胺受体(htr1a)的转录水平增加十分显著,表明BPA可能通过5-羟色胺受体对斑马鱼的运动行为产生影响。而高浓度组幼鱼在第2个黑暗刺激周期的活动过度受到抑制,同时多巴胺受体(d1r)的转录水平显著降低,表明BPA可能通过多巴胺受体影响斑马鱼对外界刺激的响应。HPLC分析结果表明,5-羟色胺和多巴胺神经递质含量在所有浓度组均显著升高。进一步分析与早期神经发育(wnt1,shha)、单胺类递质神经元分化(lmx1a,nr4a2和syn2a)以及递质合成(tph1b,th)相关的基因和蛋白水平,发现神经递质含量的升高可能是由于BPA促进了斑马鱼胚胎早期神经发育和单胺类递质神经元的分化。综上,环境浓度下BPA暴露即可对斑马鱼的运行行为产生影响,提示BPA污染很可能对生态环境及人体健康产生潜在的危害。  相似文献   

9.
为评价双酚AF(BPAF)的甲状腺毒性,以雄性斑马鱼成鱼为受试模式生物,采用半静态染毒的方式对雄性斑马鱼成鱼染毒14 d(0、5、50和500μg·L~(-1)),分别设置7 d、14 d 2个时间节点,通过酶联免疫法(ELISA)分别检测斑马鱼血浆中总三碘甲腺原氨酸(TT3)、总甲状腺素(TT4)、游离三碘甲腺原氨酸(FT3)、游离甲状腺素(FT4)的含量水平,并对14 d暴露后斑马鱼甲状腺进行组织学检测分析。结果显示随着暴露浓度的提高,出现甲状腺滤泡上皮细胞增生,滤泡组织变形明显,细胞胶质缺失等病理学变化。雄性斑马鱼在BPAF暴露情况下,血浆中TT3、TT4、FT3、FT4含量随着暴露浓度的提升和时间的延长出现显著上升,呈现出甲状腺功能亢奋的干扰效应。  相似文献   

10.
采用半静态水体暴露的方式研究了非离子表面活性剂对成熟雄性斑马鱼精巢组织的影响。用荧光定量PCR(qRTPCR)方法检测试验鱼精巢雌激素受体α(ERα)、雄激素受体(AR)基因以及性激素合成相关细胞色素P450酶类基因(CYP17和CYP19a)的表达,通过组织学观察研究受试鱼精巢结构的变化。结果表明,壬基酚聚氧乙烯醚(NPEO)暴露可以引起雄性斑马鱼精巢组织结构的改变,并影响成年雄性斑马鱼ERα、AR基因和性激素合成相关细胞色素P450酶类基因的表达水平,且10.0 mg·L~(-1)的NPEO暴露可以显著上调CYP19a、ERα和AR基因的表达量,可显著下调斑马鱼精巢中CYP17基因的表达量。在组织学上,0.1 mg·L~(-1)组斑马鱼生精小管内不仅生精小囊数目减少,且管腔中精子数量减少,出现非细胞区域; 1.0和10.0 mg·L~(-1)组可见部分个体精子凝聚于生精小管管腔中央,管腔内空隙明显增大,表现出严重的精子浓缩效应。由此表明,NPEO暴露通过抑制CYP17基因的表达干扰睾酮的合成;同时,NPEO暴露通过诱导CYP19a和ER基因的表达增加内源雌激素的合成,导致斑马鱼精巢中性激素紊乱,最终损伤斑马鱼精巢组织。  相似文献   

11.
斑马鱼幼鱼运动行为测试评价饮用水安全   总被引:1,自引:1,他引:0  
饮用水安全直接关乎人类的健康与安全,当前迫切需要全新的毒性测试方法对饮用水的潜在人类健康风险进行全面、准确和灵敏的评估和预警。本研究以反渗透技术(RO)取代常用的固相萃取,分别浓缩饮用水厂的进厂水、出厂水和管网水进行毒性试验水样的前处理。反渗透技术前处理方法可以避免传统固相萃取方法中使用的有机溶剂对行为学测试体系的干扰。RO浓缩后的饮用水对斑马鱼胚胎进行持续暴露,采用Viewpoint行为测试软件量化分析出生后第6天(6 dpf)斑马鱼幼鱼的运动行为,选择运动距离和转向行为作为测试终点,分析进厂水、出厂水及管网水的潜在毒性及可能变化。结果表明,暴露在进厂水的幼鱼出现了明显的行为变化,尤其在较高浓度(20倍浓缩)暴露时,运动距离相比对照组显著减少,同时伴有剧烈的转向等异常行为;管网水对斑马鱼幼鱼行为存在一定程度的影响,而出厂水对幼鱼的运动行为没有显著影响。研究结果反映出当前饮用水厂深度处理工艺可以有效降低进厂水的潜在毒性和健康风险,但是经供水管网输送后,其水质可能发生了改变,导致管网水可能存在潜在的毒性。本研究所采用的反渗透技术前处理技术及斑马鱼幼鱼的运动行为学测试方法,可用于未来建立评估饮用水水质安全的早期预警系统。  相似文献   

12.
PFOA对斑马鱼胚胎发育、行为和DNA损伤的毒性研究   总被引:1,自引:0,他引:1  
全氟辛酸(PFOA)是一种分布广泛的环境持久性有机污染物,在野生动物与人体内普遍被检出。目前PFOA发育毒性的特点和机制尚未阐明,已有的研究显示,PFOA毒性与受试物种及性别密切相关。因此,利用不同物种进行PFOA毒性研究对阐明其毒性机制十分重要。本研究选用了斑马鱼这种理想的脊椎动物模型,考察了PFOA暴露对其胚胎发育的自主运动、心跳、行为、细胞凋亡和DNA损伤的影响。研究发现,始于6hpf的PFOA暴露会导致斑马鱼胚胎自主运动异常,心率降低,且具有一定的剂量依赖性;6~24hpf的高浓度的PFOA暴露(>414.0mg·L-1)会导致胚胎发生显著的细胞凋亡,凋亡主要出现在眼部、头部、心脏和尾部。较高浓度的PFOA暴露(165.6mg·L-1)会使仔鱼的光刺激应激行为模式发生变化。此外,PFOA暴露会致使斑马鱼发生DNA损伤,且损伤程度随PFOA浓度的升高而加重,表明PFOA具有一定的基因毒性。上述结果表明,PFOA对斑马鱼胚胎具有发育毒性,具体表现为自主运动异常,心率降低和行为反应能力变弱,同时伴随畸形、细胞凋亡和DNA损伤。  相似文献   

13.

Objective and Background

PCB (polychlorinated biphenyle) are typical man-made environmental pollutants that cause a broad spectrum of effects in vertebrates. Although a lot has been studied about the toxic effects of xenobiotic substances on aquatic organisms, their subacute effects are not yet well known. Fish occupies a central position in freshwater food webs and therefore, carp was chosen to be our test organism. The aim of our study was the investigation of subacute effects of Aroclor 1254 (22μg l?1) on respiration, swimming activity, and biotransformation, allowing discussion of changed interaction between the available energy resources.

Methods

The respiration experiments under controlled laboratory conditions were run for 29 days (5 d before, 16 d with and 8 d after chemical exposure) with exposed carp compared to the non-exposed fish. Furthermore, the BehavioQuant system quantitatively monitors the positions of each individual fish before (8 d) and during (21 d) PCB exposure and swimming activity (number of horizontal turnings s?1) of animals was calculated. Thereafter, liver samples were taken from animals for analysis of the phase 2 enzyme activity (glutathione-S-transferase). In the respiration experiments were 6 exposure, 6 controll, and 3 solubilizer controll groups (12 animals each group); in the behavioral experiments were 9 exposure, 6 controll- und 3 solubilizer controll groups (6 animals each group), and in the enzyme activity measurements were 9 exposure, 6 controll and 3 solubilizer controll groups (6 animals each group) examined.

Results and Discussion

A clearly increased (33%) oxygen consumption due to the PCB-exposure is found to be reversible; after the exposure period the respiration of carp shows a level comparable to the oxygen consumption during non-exposure time. By evaluating quantitative behavioral parameters of animals, it becomes evident that the exposure to PCB also causes a reversible change in their swimming behavior. Chemical stress leads to a decrease of mean daily swimming activity combined with an increase of the mean number of turnings during the night. Thereafter, the swimming activity shifts to the circadian swimming behavior under control conditions. Furthermore, our measurement of soluble and microsomal glutathione-S-transferase activity of fish liver shows a significant elevation after exposure period.

Conclusion

Our results prove that it was feasible to detect sublethal effects of PCB-mixture on all parameters under these conditions successfully. Our findings imply that fish are able to cope with the chemicals and we purse the hypothesis that the higher physiological energy demand caused by increased activity of enzymes, which are involved in biotransformation of foregin substances, may be related to a higher respiration of fish stressed by xenobiotics.

Recommendation and Outlook

Further experiments should investigate the effects of PCB on ecophysiological parameters of carp fed with exposed natural food allowing discussion of ecological consequences.  相似文献   

14.
采用生物行为传感器获取青鳉鱼的行为数据时,青鳉鱼个体差异会导致采集到的原始电信号在时空特性下完全不同。重要的行为特征往往被隐藏在原始信号中,传统的信号处理方法无法实时而有效地提取到这些特征。针对这个问题,观察并记录了暴露实验前后青鳉鱼的行为变化,提出了一种可以高效表征行为特征的直方图统计算法。实验结果表明,该方法能够准确对应人眼观测到的暴露实验前后鱼的行为变化趋势,同时也为后续异常行为识别提供一定的支持和参考。  相似文献   

15.
The high number of failures is one reason why translocation is often not recommended. Considering how behavior changes during translocations may improve translocation success. To derive decision‐tree models for species’ translocation, we used data on the short‐term responses of an endangered Australian skink in 5 simulated translocations with different release conditions. We used 4 different decision‐tree algorithms (decision tree, decision‐tree parallel, decision stump, and random forest) with 4 different criteria (gain ratio, information gain, gini index, and accuracy) to investigate how environmental and behavioral parameters may affect the success of a translocation. We assumed behavioral changes that increased dispersal away from a release site would reduce translocation success. The trees became more complex when we included all behavioral parameters as attributes, but these trees yielded more detailed information about why and how dispersal occurred. According to these complex trees, there were positive associations between some behavioral parameters, such as fight and dispersal, that showed there was a higher chance, for example, of dispersal among lizards that fought than among those that did not fight. Decision trees based on parameters related to release conditions were easier to understand and could be used by managers to make translocation decisions under different circumstances. Minimizar el Costo del Fracaso de la Reubicación con Modelos de Árboles de Decisión que Predigan la Respuesta Conductual de la Especie en los Sitios de Reubicación  相似文献   

16.
Abstract: Most evaluations of the effects of human activities on wild animals have focused on estimating changes in abundance and distribution of threatened species; however, ecosystem disturbances also affect aspects of animal behavior such as short‐term movement, activity budgets, and reproduction. It may take a long time for changes in behavior to manifest as changes in abundance or distribution. Therefore, it is important to have methods with which to detect short‐term behavioral responses to human activity. We used continuous acoustic and seismic monitoring to evaluate the short‐term effects of seismic prospecting for oil on forest elephants (Loxodonta cyclotis) in Gabon, Central Africa. We monitored changes in elephant abundance and activity as a function of the frequency and intensity of acoustic and seismic signals from dynamite detonation and human activity. Elephants did not flee the area being explored; the relative number of elephants increased in a seasonal pattern typical of elsewhere in the ecosystem. In the exploration area, however, they became more nocturnal. Neither the intensity nor the frequency of dynamite blasts affected the frequency of calling or the daily pattern of elephant activity. Nevertheless, the shift of activity to nocturnal hours became more pronounced as human activity neared each monitored area of forest. This change in activity pattern and its likely causes would not have been detected through standard monitoring methods, which are not sensitive to behavioral changes over short time scales (e.g., dung transects, point counts) or cover a limited area (e.g., camera traps). Simultaneous acoustic monitoring of animal communication, human, and environmental sounds allows the documentation of short‐term behavioral changes in response to human disturbance.  相似文献   

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