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1.
Arsenic (As) is a pervasive and ubiquitous environmental toxin that has created catastrophic human health problems world-wide. Chlamydomonas reinhardtii is a unicellular green alga, which exists ubiquitously in freshwater aquatic systems. Arsenic metabolism processes of this alga through arsenate reduction and sequent store and efflux were investigated. When supplied with 10 mol/L arsenate, arsenic speciation analysis showed that arsenite concentration increased from 5.7 to 15.7 mg/kg dry weight during a 7-day period, accounting for 18%–24% of the total As in alga. When treated with different levels of arsenate (10, 20, 30, 40, 50 mol/L) for 7 days, the arsenite concentration increased with increasing external arsenate concentrations, the proportion of arsenite was up to 23%–28% of the total As in alga. In efflux experiments, both arsenate and arsenite could be found in the efflux solutions. Additionally, the efflux of arsenate was more than that of arsenite. Furthermore, two arsenate reductase genes of C. reinhardtii (CrACR2s) were cloned and expressed in Escherichia coli strain WC3110 (ΔarsC) for the first time. The abilities of both CrACR2s genes to complement the arsenatesensitive strain were examined. CrACR2.1 restored arsenate resistance at 0.8 mmol/L. However, CrACR2.2 showed much less ability to complement. The gene products were demonstrated to reduce arsenate to arsenite in vivo. In agreement with the complementation results, CrACR2.1 showed higher reduction ability than CrACR2.2, when treated with 0.4 mmol/L arsenate for 16 hr incubation.  相似文献   

2.
Arsenic-contaminated water is a serious hazard for human health. Plankton plays a critical role in the fate and toxicity of arsenic in water by accumulation and biotransformation.Spirulina platensis(S. platensis), a typical plankton, is often used as a supplement or feed for pharmacy and aquiculture, and may introduce arsenic into the food chain, resulting in a risk to human health. However, there are few studies about how S. platensis biotransforms arsenic. In this study, we investigated arsenic biotransformation by S. platensis. When exposed to arsenite(As(Ⅲ)), S. platensis accumulated arsenic up to 4.1 mg/kg dry weight.After exposure to As(Ⅲ), arsenate(As(Ⅴ)) was the predominant species making up 64% to86% of the total arsenic. Monomethylarsenate(MMA(Ⅴ)) and dimethylarsenate(DMA(Ⅴ))were also detected. An arsenite S-adenosylmethionine methyltransferase from S. platensis(Sp Ars M) was identified and characterized. Sp Ars M showed low identity with other reported Ars M enzymes. The Escherichia coli AW3110 bearing Spars M gene resulted in As(Ⅲ) methylation and conferring resistance to As(Ⅲ). The in vitro assay showed that Sp Ars M exhibited As(Ⅲ) methylation activity. DMA(Ⅴ) and a small amount of MMA(Ⅴ) were detected in the reaction system within 0.5 hr. A truncated Sp Ars M derivative lacking the last 34 residues still had the ability to methylate As(Ⅲ). The three single mutants of Sp Ars M(C59S, C186 S, and C238S) abolished the capability of As(Ⅲ) methylation, suggesting the three cysteine residues are involved in catalysis. We propose that Sp Ars M is responsible for As methylation and detoxification of As(Ⅲ) and may contribute to As biogeochemistry.  相似文献   

3.
运用涂铁砂粒进行分散式饮水除砷的效果   总被引:4,自引:0,他引:4  
袁涛  罗启芳 《环境科学》2001,22(3):25-29
采用铁盐处理普通河砂研制成涂铁砂粒(IOCS),通过静态和动态吸附试验观察其分散式饮水除砷效果,并选取地砷病现场进行了验证.结果表明,IOCS性质较为稳定,扫描电镜下可见铁氧化物呈片状分散的覆盖在砂粒表层;IOCS无需活化处理,其对砷的最大吸附发生在30min~60min;pH5~9时,五价砷的去除率随着pH值的升高而下降,三价砷的去除率变化不明显.IOCS对砷的吸附符合朗格缪尔(Langmuir)吸附方程;5次滤柱循环中,75g(50ml)的IOCS分别处理含砷1.0mg·L-1的水样408~426床(三价砷),390~412床(五价砷),用0.2 mol·L-1NaOH进行再生处理,砷回收率均在94%以上.充填IOCS 3.0kg的家庭用模拟装置处理含1.0mg·L-1的五价砷209L和198L,三价砷196L和185L,并在现场实验期间,连续处理含砷0.202~1.733mg·L-1的水样200L,对水质亦无不良影响.无论是经济上还是技术上,IOCS均是适合于分散式饮水除砷的一种新型除砷剂.  相似文献   

4.
5.
阳离子表面活性剂改性的活性炭吸附砷(V)和砷(Ⅲ)   总被引:5,自引:0,他引:5  
选用阳离子表面活性剂十六烷基三甲基氯化铵(CTAC)、癸基三甲基溴化铵(MTAB) 以及三甲基正十四烷溴化铵(DTAB) 改性活性炭. 结果发现,表面活性剂加载使得活性炭的比表面积、孔径体积和表面Zeta电位发生改变. 改性后的活性炭用来吸附水中的砷酸盐和亚砷酸盐. 吸附等温实验结果显示,改性后活性炭对砷酸盐的吸附能力有显著提高,但对亚砷酸盐则只有在pH>10才有明显吸附.无论对砷酸盐还是亚砷酸盐,CTAC改性效果均要好于MTAB和DTAB. 改性后活性炭对砷酸盐的吸附主要通过离子交换,但离子交换并不是唯一的吸附机理. 砷酸盐的吸附受到溶液pH值和水中其他阴离子的竞争吸附的影响.中性pH范围内吸附最佳,而阴离子对砷酸盐的竞争则是PO43- >SO42- > NO3-.  相似文献   

6.
The prediction and assessment of environmental pollution by arsenic are important preconditions of advocating environmental protection and human health risk assessment.A yellow fluorescent protein-based whole-cell biosensor for the detection of arsenite and arsenate was constructed and tested.An arsenic-resistant promoter and the regulatory gene arsR were obtained by PCR from the genome of Escherichia coli DH5α,and phiYFP was introduced into E.coli DH5α as a reporter gene to construct an arsenic-resistant whole-cell biosensor(WCB-11) in which phiYFP was expressed well for the first time.Experimental results demonstrated that the biosensor has a good response to arsenic and the expression of phiYFP.When strain WCB-11 was exposed to As 3+ and As 5+,the expression of yellow fluorescence was time-dependent and dose-dependent.This engineered construct is expected to become established as an inexpensive and convenient method for the detection of arsenic in the field.  相似文献   

7.
采用XANES(X射线近边分析)方法和化学分级法,研究了刁江污染源区尾砂及刁江底泥的砷形态组成特征. XANES方法结果表明,尾砂中砷的形态主要以毒砂(FeAsS)存在,其相对百分含量为63%~99%;而刁江底泥中的砷形态主要是毒砂、砷酸盐和亚砷酸盐,其中毒砂的比例较高,表现出典型的尾砂污染特征. 化学分级法结果表明,尾砂中砷形态主要是残渣态砷(Res-As),而底泥中的砷主要以铁合态、钙合态及残渣态形式存在. 刁江底泥中毒砂相对百分含量和残渣态砷随着与污染源区距离的增大而减小,砷酸盐和亚砷酸盐则呈相反的趋势. 化学分级法和XANES方法所反映的刁江底泥和污染源的砷形态组成和变化趋势总体上较为一致,但这2种方法所获得的定量数据存在一定的差异.   相似文献   

8.
Bacterial strain Enterobacter aerogenes TJ-D capable of utilizing 2-methylquinoline as the sole carbon and energy source was isolated from acclimated activated sludge under denitrifying conditions. The ability to degrade 2-methylquinoline by E. aerogenes TJ-D was investigated under denitrifying conditions. Under optimal conditions of temperature (35℃) and initial pH 7, 2-methylquinoline of 100 mg/L was degraded within 176 hr. The degradation of 2-methylquinoline by E. aerogenes TJ-D could be well described by the Haldane model (R2 > 0.91). During the degradation period of 2-methylquinoline (initial concentration 100 mg/L), nitrate was almost completely consumed (the removal efficiency was 98.5%), while nitrite remained at low concentration (< 0.62 mg/L) during the whole denitrification period. 1,2,3,4-Tetrahydro-2-methylquinoline, 4-ethyl-benzenamine, N-butyl-benzenamine, N-ethyl-benzenamine and 2,6-diethyl-benzenamine were metabolites produced during the degradation. The degradation pathway of 2-methylquinoline by E. aerogenes TJ-D was proposed. 2-Methylquinoline is initially hydroxylated at C-4 to form 2-methyl-4-hydroxy-quinoline, and then forms 2-methyl-4-quinolinol as a result of tautomerism. Hydrogenation of the heterocyclic ring at positions 2 and 3 produces 2,3-dihydro-2-methyl-4-quinolinol. The carbon-carbon bond at position 2 and 3 in the heterocyclic ring may cleave and form 2-ethyl-N-ethyl-benzenamine. Tautomerism may result in the formation of 2,6-diethyl-benzenamine and N-butyl-benzenamine. 4-Ethyl-benzenamine and N-ethyl-benzenamine were produced as a result of losing one ethyl group from the above molecules.  相似文献   

9.
Arsenic is one of the most common inorganic contaminants in groundwater worldwide, mainly due to the release of naturally occurring arsenic from aquifer sediments (Amini et al., 2008, Li and Cai, 2015 and Rahman et al., 2015). Naturally occurring arsenic exists predominantly in arsenate and arsenite species in groundwater.  相似文献   

10.
We investigated the role of glutathione(GSH) and phytochelatins(PCs) on the detoxification of selenite using Arabidopsis thaliana. The wild-type(WT) of Arabidopsis thaliana and its mutants(glutathione deficient Cad 2–1 and phytochelatins deficient Cad 1–3) were separately exposed to varying concentrations of selenite and arsenate and jointly to both toxicants to determine their sensitivities. The results of the study revealed that, the mutants were about 20-fold more sensitive to arsenate than the WT, an indication that the GSH and PCs affect arsenate detoxification. On the contrary, the WT and both mutants showed a similar level of sensitivity to selenite, an indication that the GSH and PCs do not significantly affect selenite detoxification. However, the WT is about 8 times more sensitive to selenite than to arsenate, and the mutants were more resistant to selenite than arsenate by a factor of 2. This could not be explained by the accumulation of both elements in roots and shoots in exposure experiments. The co-exposure of the WT indicates a synergistic effect with regards to toxicity since selenite did not induce PCs but arsenic and selenium compete in their PC binding as revealed by speciation analysis of the root extracts using HPLC–ICP–MS/ESI–MS. In the absence of PCs an antagonistic effect has been detected which might suggest indirectly that the formation of Se glutathione complex prevent the formation of detrimental selenopeptides. This study, therefore, revealed that PC and GSH have only a subordinate role in the detoxification of selenite.  相似文献   

11.
Dietary uptake is the major way that inorganic arsenic (iAs) enters into benthic fish; however, the metabolic process of dietborne iAs in fish muscle following chronic exposure remains unclear. This was a 40-day study on chronic dietborne iAs [arsenite (AsIII) and arsenate (AsV)] exposure in the benthic freshwater food fish, the crucian carp (Carassius auratus), which determined the temporal profiles of iAs metabolism and toxicokinetics during exposure. We found that an adaptive response occurred in the fish body after iAs dietary exposure, which was associated with decreased As accumulation and increased As transformation into a non-toxic As form (arsenobetaine). The bioavailability of dietary AsIII was lower than that of AsV, probably because AsIII has a lower ability to pass through fish tissues. Dietary AsV exhibited a high potential for transformation into AsIII species, which then accumulated in fish muscle. The largely produced AsIII considered more toxic at the earlier stage of AsV exposure should attract sufficient attention to human exposure assessment. Therefore, the pristine As species and exposure duration had significant effects on As bioaccumulation and biotransformation in fish. The behavior determined for dietborne arsenic in food fish is crucial for not only arsenic ecotoxicology but also food safety.  相似文献   

12.
对南京市的18个采样点进行PM_(2.5)样品采集,并利用电感耦合等离子体质谱仪以及液相电感耦合等离子体质谱联用仪分别对样品中的总砷和4种水溶性砷进行测量,在此基础上研究PM_(2.5)中砷的形态及其时空分布特征.结果表明:南京市PM_(2.5)中的砷以无机砷为主,有机砷为辅.无机砷以三价砷(As(III))为主,五价砷(As(V))为辅,As(III)/As(V)的平均值为0.39±0.03.有机砷以二甲基胂酸(DMAs(V))为主,所有样品均未检出甲基胂酸(MMAs(V)).总砷(As_T)、As(III)、As(V)和DMAs(V)的年平均浓度分别为6.90、0.99、3.20和0.03 ng·m~(-3).PM_(2.5)中的砷浓度具有明显季节变化:总砷和As(V)最大浓度出现在冬季,As(III)最大浓度出现在夏季,DMAs(V)只在夏季出现.T检验表明:As(III)、总砷和DMAs(V)年平均浓度在城区和郊区之间存在显著差异.空间变异系数的计算结果表明DMAs(V)的空间变化最大,其空间变异系数为0.6.总砷和3种水溶性砷年平均浓度由大到小排列为:农村郊区城区.道路采样点和城市背景点的总砷年平均浓度比为0.92,说明城区交通源对PM_(2.5)中砷污染的贡献不明显.As(III)和As(V)的主要排放源可能为燃煤电厂和钢铁冶炼厂,而DMAs(V)可能主要来源于生物挥发产物的二次生成.  相似文献   

13.
两个品种水稻对砷的吸收富集与转化特征及其健康风险   总被引:7,自引:1,他引:7  
以2个水稻品种威优402号和Ⅱ优416号为实验材料,采用温室栽培方法研究对比两个品种水稻在人工添加砷处理(0、10、20和40mg·kg-1)和模拟自然砷污染(贵州高砷土和北京褐土的混合土,质量比为1∶1)胁迫条件下的生长发育状况,分析砷在水稻不同部位的累积、形态转化及其健康风险.砷处理显著地抑制了两个品种水稻的生长,水稻地上与地下部生物量、株高和穗数随砷处理水平的提高均出现明显的下降,但Ⅱ优416号的下降幅度明显低于威优402号.两个品种水稻籽粒中砷含量随砷处理水平提高也显著升高,人工添加砷各处理条件下,两个品种水稻稻谷中砷含量没有显著性差异;而在模拟自然砷污染土中,Ⅱ优416号稻谷中砷含量平均值为0.062mg·kg-1,明显低于威优402号稻谷平均值的0.278mg·kg-1.两个品种水稻各部位砷的转运系数在低砷处理时(10mg·kg-1)出现显著的升高,而在其他处理条件下保持不变.无论何种水稻品种,水稻各部位砷形态的组成和比例无显著性差异,水稻根、茎、叶中主要为无机砷,稻谷中无机和有机砷各占60%和40%.依据WHO相关建议标准,种植水稻品种Ⅱ优416号的健康风险要明显低于种植威优402号.  相似文献   

14.
Microbial reduction of As(V) (i.e., arsenate) plays an important role in arsenic (As) mobilization in aqueous environment. In this study, we investigated As(Ⅴ) reduction characteristics of the bacteria enriched from the arsenic-contaminated soil at an abandoned smelter site. It was found that As(Ⅴ) was completely reduced to As(Ⅲ) (i.e., arsenite) in 21 h. After 3-d incubation, a yellow solid was precipitated and the concentration of As(Ⅲ) decreased sharply. After 150 h incubation, ca. 65% of soluble arsenic was removed from the solution. The analysis of the precipitate by scanning electron microscopy and energy dispersive spectrometer (SEM-EDS) and X-ray diffraction (XRD) revealed that the main component was crystalline arsenic sulfide (ASS). Microbial mediated reduction and mobilization of adsorbed As(Ⅴ) on ferric hydroxide was also examined. In the microcosm slurry experiment, ca. 53% of the adsorbed As(V) was reduced to As(Ⅲ) by the bacteria, which resulted in an appreciable release of arsenic into aqueous phase. The released arsenic was present predominantly as As(Ⅲ). The microbial diversity was analyzed by 16S rDNA-dependent molecular phylogeny. A near-full-length 16S rDNA gene clone library was constructed. The 197 clones were analyzed using RFLP (restriction fragment length polymorphism) and 72 OTUs were obtained, which contributed 51% of the content for total clone number in six OTUs. Six bacterial clones in these six OTUs were selected for sequencing and the sequenced clones were found to belong to the group Caloramator, Clostridium, and Bacillus.  相似文献   

15.
Contamination of irrigation water represents a major constraint to Bangladesh agriculture, resulting in elevated levels in the terrestrial systems. Lux bacterial biosensor technology has previously been used to measure the toxicity of metals in various environmental matrices. While arbuscular mycorrhizal fungi have their most significant effect on phosphorus uptake, but showed alleviated metal toxicity to the host plant. The study examined the effects of arsenic and inoculation with an arbuscular mycorrhizal fungus, Glomus mosseae, on lentil (Lens culinaris L. cv. Titore). Plants were grown with and without arbuscular mycorrhizal inoculum for 9 weeks in a sand and terra-green mixture (50:50, V/V) and watered with five levels of arsenic (0, 1, 2, 5, 10 mg As/L arsenate). The results showed that arsenic addition above 1 mg/L significantly reduced percentage of mycorrhizal root infection. On further analysis a close relationship was established with the vegetative and reproductive properties of lentil (L. culinaris) plants compared to the percentage bioluminescence of the soil leachate. However, arbuscular mycorrhizal fungal inoculation reduced arsenic concentration in roots and shoots. Higher concentrations of arsenic (5, 10 mg As/L arsenate) reduced the mycorrhizal efficiency to increase phosphorus content and nitrogen fixation. Therefore, this study showed that increased concentration of arsenic in irrigation water had direct implications to the lentil (L. culinaris) plants overall performance. Moreover the use of bioassay demonstrated that mycorrhiza and clay particle reduced arsenic bioavailability in soil.  相似文献   

16.
2006年春季长江口砷形态分析及其生物有效性   总被引:7,自引:1,他引:6  
于2006年春季在长江河口开展野外调查.采集水和表层沉积物样品,并进行总砷、砷形态分析和生物有效性评估.将过滤水样用于测定溶解态砷含量,而未过滤水样经酸消解后用于测定总砷含量,两者之差则为颗粒态砷含量.结果表明.长江口青草沙水源地各层水体中总砷含量为0.88-1.35ug·L-1(涨憩),2.37-3.35ug·L-1(落憩).溶解态和颗粒态砷含量均随潮汐变化明显,各形态砷含量在落憩时均高于涨憩时,颗粒态砷所占总砷的比例也是落憩时明显高于涨憩时.以0.3 mol·L-1磷酸溶液为萃取剂.在微波辅助下可以有效地将沉积物中砷酸盐[As(V)]、亚砷酸盐[As(Ⅲ)]、一甲基胂酸盐(MMA)和二甲基胂酸盐(DMA)提取出来,然后利用高效液相色谱一氢化物发生.原子吸收光谱(HPLC-HG-AAS)联用技术进行检测.结果表明,长江口表层沉积物中总砷含量为6.3-30.7 mg·kg-1,主要为无机砷形态,在江心沙洲及离岸沉积物中且以砷酸盐为主.而在近岸沉积物中以亚砷酸盐为主;利用醋酸纤维素/氧化铁复合膜方法(FeO/CAM)所得沉积物中有嫂砷含量占总砷含量0.6%-3.9%,平均约为2.1%.有效砷含量与总砷含量没有显著相关性,与亚砷酸盐含量呈显著正相关性,与砷酸盐含量呈显著负相关性.结果还表明,长江口南支沉积物中的砷形态分布特征及其生物有效性受城市支流输入和排污活动影响显著.  相似文献   

17.
李海燕  吴丽华 《环境科学学报》2021,41(10):4325-4330
以模式生物酿酒酵母为研究对象,采用醋酸铅试纸条法、BIGGY琼脂及qRT-PCR技术检测了不同浓度亚砷酸钠胁迫下H2S产量及产H2S酶编码基因表达的变化,以探讨砷化物对酵母细胞H2S代谢的影响.结果显示,0.5~2 mmol·L-1的亚砷酸钠可诱导酵母细胞内源H2S的产生,且H2S合成相关基因的相对表达量与对照相比均有不同程度的上调.经0.05~0.2 mmol·L-1的外源H2S预处理后,酵母细胞对砷的耐受性明显提高.研究表明,亚砷酸钠可影响酵母细胞H2S代谢,而H2S含量可在一定程度上调控砷对酵母的毒性.  相似文献   

18.
王莹  许丽英  王少锋  肖翻  贾永锋 《环境科学》2015,36(9):3298-3303
雌黄是砷的环境地球化学过程中的重要的次生矿物.雌黄的溶解性研究对于研究砷在水环境中的形态转化和环境归趋具有重要意义.环境中p H和硫化程度对于雌黄中的砷的形态变化及其稳定性有重要影响.通过室内模拟实验,结合同步辐射X射线近边吸收光谱(XANES)和扩展X射线吸收光谱(EXAFS)表征手段研究了近中性厌氧条件下,有硫和无硫体系中雌黄溶解产物中稳定存在的砷形态.结果表明,在p H中性条件下,雌黄在两种体系中均形成硫代砷和亚砷酸盐的混合物,有硫体系中硫代砷是以全硫代为主,而无硫体系中硫代亚砷酸盐是部分硫代为主.线性拟合分析确定在有硫体系中硫代亚砷酸盐形态占总砷形态的88.2%,亚砷酸盐形态占总砷形态的11.8%,而在无硫体系中,硫代三价砷形态占总砷形态的43.7%,亚砷酸盐形态占总砷形态的56.3%.可见亚砷酸盐的形成与砷硫比有关,提高硫砷比可以提高亚砷酸盐中硫取代的比例以及全硫代亚砷酸盐的形成.  相似文献   

19.
缺氧条件下土壤砷的形态转化与环境行为研究   总被引:3,自引:2,他引:1  
采集张士污灌区0~100 cm深的土壤并在实验室里负载低浓度的砷,采用不加硫和加硫对比研究了厌氧条件下土著微生物对土壤中砷的形态转化、环境行为影响及其机制.结果表明,在不外加硫酸盐条件下厌氧培养8 d后,微生物还原作用造成砷的大量还原和释放,释放的砷70%以上是以As(Ⅲ)形式存在,尤其20~40 cm深度土壤砷的释放量明显高于其它层土壤,As(Ⅲ)和As(T)分别达到892.8μg.L-1和1 240.6μg.L-1.与非生物对照相比每层土中盐酸可提取的砷总量都大大降低,且盐酸提取的As(T)几乎全部转化为As(Ⅲ).伴随砷的释放,铁发生还原和释放,溶解态的亚铁基本都在40 mg.L-1以上,不同土层固相中亚铁离子的量都在9.0~13.4 g.kg-1范围内,固相盐酸可提取态总铁中亚铁离子所占的比例基本都在50%以上,说明微生物还原作用造成固相中铁氧化物发生还原性溶解和矿物结构转化.当体系中添加10 mmol.L-1的硫酸盐时,每层土的生物培养体系中铁的释放几乎完全被抑制,砷和铁浓度也减少了50%.与不加硫生物培养体系相比,固相中盐酸可提取的砷量减少了50%,一部分砷被转化为稳定的硫化物As2S3而固定.可见在硫酸盐不足条件下微生物还原作用可造成砷被还原、活化和释放,而补充土壤中硫酸盐的量可促使微生物还原/活化的砷转化成更加稳定的形态,稳定的硫化物矿物As2S3是土壤微生物固定砷的重要途径.  相似文献   

20.
The potential risks of perfluorooctane sulfonate (PFOS) are of increasing ecological concern. Swimming performance is linked to the fitness and health of fish. However, the impacts of PFOS on swimming performance remain largely unknown. We investigated the ecotoxicological effects of acute exposure to PFOS on the swimming performance and energy expenditure of juvenile goldfish (Carassius auratus). The fish were exposed to a range of PFOS concentrations (0, 0.5, 2, 8 and 32 mg/L) for 48 hr. The spontaneous swimming activity, fast-start swimming performance, critical swimming speed (Ucrit) and active metabolic rate (AMR) of the goldfish were examined after exposure to PFOS. PFOS exposure resulted in remarkable effects on spontaneous activity. Motion distance was reduced, and the proportion of motionless time increased with increasing concentrations of PFOS. However, no significant alterations in the fast-start performance-related kinematic parameters, such as latency time, maximum linear velocity, maximum linear acceleration or escape distance during the first 120 msec after stimulus, were observed after PFOS exposure. Unexpectedly, although PFOS exposure had marked influences on the swimming oxygen consumption rates and AMR of goldfish, the U crit of the goldfish was not significantly affected by PFOS. This may result in a noteworthy increase in the energetic cost of transport. The overall results indicate that, in contrast to spontaneous activity, underlying swimming capabilities are maintained in goldfish after short-term exposure to PFOS, but energy expenditure during the process of swimming is dramatically aggravated.  相似文献   

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