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781.
代谢组学作为系统生物学的一部分,通过考察机体受刺激后体液或组织中内源性代谢物的动态变化规律,并结合生物信息统计方法,可系统全面地揭示内因和外因作用于机体的毒性效应和机制。代谢组学技术具有快速、灵敏度高、选择性强的特点,逐渐在低剂量环境污染物长期暴露的毒性效应评估方面发挥出优势。本文综述了代谢组学技术的主要研究手段,在毒理学研究中的发展历程和优点,以及在环境毒理学研究中的应用及前景展望。重点讨论了代谢组学技术在重金属和持久性有机污染物(POPs)毒性评估以及环境胁迫耐受性评价中的应用。  相似文献   
782.
通过野外模拟试验,选择中亚热带针叶林(杉木林)和阔叶林(浙江桂林和罗浮栲林)森林生态系统,设3个施氮水平CK(对照)、低氮〔30kg/(hm2·a) 〕和高氮〔100kg/(hm2·a)〕及2个凋落物处理,研究施氮对土壤主要形态氮质量分数的影响、动态变化及凋落物在其中的作用. 结果表明:与CK相比,高氮处理可瞬时(3d)提高森林土壤氮质量分数,但施氮后持续效应的影响降低. 与保留凋落物相比,去除凋落物在施氮的持续效应中,可降低阔叶林土壤w(铵态氮)18.2%,而杉木林土壤的氮质量分数则略有升高.去除凋落物下施氮的持续和瞬时效应可增加各种林下土壤的w(硝态氮),其中浙江桂林土壤w(硝态氮)分别增加58.9%和38.2%,罗浮栲林土壤分别增加7.0%和30.0%,杉木林土壤分别增加-17.1%和9.0%. 可见凋落物在施氮连续事件中存在复杂的短期和长期相互影响. 阔叶林土壤w(SON)(SON为可溶性有机氮)较高,并且其微生物w(SON)及其占微生物w(TN)的比例高于杉木林土壤,而杉木林土壤微生物w(铵态氮)及其占微生物w(TN)的比例高于阔叶林土壤.   相似文献   
783.
In order to better understand the environmental behaviors of persistent organic pollutants, the characteristics of polychlorinated dibenzo-p-dioxins and dibenzofurans (PCDD/Fs) were investigated in twenty-three soil/sediment samples from Baiying City, Northwest China, in 2008. The possible sources and potential health risk of PCDD/Fs were also discussed. The concentrations of PCDD/Fs in nineteen soil samples varied between 20.13 and 496.26 pg/g dry weight (dw.), with an average value of 125.59 pg/g dw. The highest International Toxic Equivalent (I-TEQ) of PCDD/Fs (8.34 pg/g dw.) in soil was found at sample S1 collected from proximity to a copper metallurgy plant. The concentrations of PCDD/Fs in four sediment samples ranged from 37.69 to 491.49 pg/g dw., with an average value of 169.95 pg/g dw. The highest I-TEQ of PCDD/Fs (8.56 pg/g dw.) in sediment was found at sample S12 collected from the East big ditch with waste water discharged into the Yellow River. The results indicated that PCDD/Fs contamination of soil/sediment is originated from three sources: chlorine-containing chemicals, non-ferrous metal industrial PCDD/Fs emission and coal burning. The health risk exposure to PCDD/Fs through soil, dust ingestion and dermal absorption ranged from 0.0006 to 0.0134 pg/kg/day Word Health Organization’s toxic equivalent in 1998 (WHO1998-TEQ) with mean values 0.0032 pg WHO1998-TEQ for adults and varied between 0.0012 and 0.0256 pg/kg/day WHO1998-TEQ with mean values 0.006 pg/kg/day WHO1998-TEQ for children, respectively. These results indicated that health risk of PCDD/Fs for children should be paid more attention.  相似文献   
784.
Medicinal herbs are steadily increasing in complementary use for chronic and alterative therapies. The health risks associated with herbal supplements have therefore been identified as a top research priority. Tecoma stans (Tronadora), a Bignoniaceae plant, is a herbal drug traditionally consumed as tea in South America for the control of diabetes. It contains the alkaloids of tecomine and tecostanine which were shown as functional compounds responsible for hypoglycemic activity. However, the side effects of aqueous extracts of this herbal tea have not been reported. In this study, studies sought to evaluate the cytotoxicity of water extracts from T. stans in human hepatoblastoma (HepG2). Toxic effects of T. stans were concentration- and time-dependent in the presence and absence of fetal bovine serum (FBS). Cells were incubated for up to 72-h with varying concentrations of herbal extracts (60–100%), cytotoxicity was determined spectrophotometrically by MTT and reported in terms of % cell viability. For IC50 assay (24 h exposure), cytotoxicity was found at concentration of 60–100%. Evaluation of the effects of T. stans and Brickellia cavanillesi (Asteraceae) in combination revealed that extracts of both herbal extracts' nontoxic levels of T. stans significantly reduced cell viability in a time-dependent manner. Further studies are needed regarding the identification, toxicity, and molecular mechanism of action of active compounds, as well as their cytotoxicity to other cell lines following exposure to both single and combined herbal extracts of these plants with anti-diabetic properties.  相似文献   
785.
Grassland is one of the most widespread vegetation types worldwide and plays a significant role in global carbon cycling. Understanding the sensitivity of grassland to climate change and the effect of climate changes on the grassland ecosystems is a key issue in global carbon cycling. One of the goals of this study was to evaluate the three net primary productivity (NPP)–climate models, i.e. the Miami model, the Schuur model and the classification indices-based model. Results indicated that the classification indices-based model was the most effective model at estimating large-scale grassland NPP. In this research, changes in the spatial pattern of global potential grassland from recent past (1950–2000) to future (2001–2050) A2a scenario were analysed with the integrated orderly classification system of grassland (IOCSG) approach in a Geographic Information System (GIS) environment. NPP was evaluated with the classification indices-based model. Results indicate that under recent past climatic conditions, the main parts of global grassland are the savanna and tundra and alpine grassland and will be converted into the savanna, steppe and semi-desert grassland in A2a scenario. As a whole, areas of grassland will increase by 31.76 million hectares. The classification indices-based model estimated a 12.40% increase of total NPP in grassland from recent past to A2a scenario. It will impose a new issue for future grassland researches to support sustainable development and to provide action relevant knowledge to meet the challenge of climate change.  相似文献   
786.
DN322p, an offspring of Aeromonas hydrophila DN322, has the capacity to adsorb and decolorize triphenylmethane dyes in wastewater simultaneously. As a common triphenylmethane dye, crystal violet (CV) was chosen to test the decolorization characteristics of DN322p. Within 0.5 h, the strain DN322p adsorbed a large amount of CV, producing a deep-colored cell pellet and colorless supernatant. The colors of the cell pellet and supernatant lightened over time. The supernatant and dichloromethane extract of the cell pellet both showed conspicuous CV and leuco CV (LCV) characteristic absorbance peaks at 590 nm and 260 nm, respectively, in the UV-vis spectral analysis. This finding indicated that the DN322p cells can adsorb the two dyes. A 99% (w/w) decolorization rate was achieved within 2.5 h with shaking at 30°C for 50 mg CV·L?1. High Performance Liquid Chromatography (HPLC) analysis of the dichloromethane extract of the supernatant and cell pellet confirmed that CV was mainly converted into its leuco form. Dead cells had a similar adsorption capacity with living cells. About 90% of CV in the dye solution (50 mg·L?1) was removed by autoclaved cells with an optical delnsity at 600 nm (OD600) above 1.0.  相似文献   
787.
云南极端气候干旱的特征分析   总被引:5,自引:0,他引:5  
应用云南124个站点1961-2011年的旬、日、月降水和气温资料,采用综合气象干旱指数和逐日降水分析云南1961年以来的干旱强度。以云南的干旱过程强度指数为-50、区域代表站的干旱过程用强度指数为-100以上选取极端干旱较为合适,选取干旱强度最大1962/1963、1968/1969、1978/1979和2009/2010年为极端干旱年进行分析表明,在4次极端干旱过程中,强度最强的是2009/2010年出现的秋冬春初夏连旱,是有气象记录以来最强的,其造成的危害及经济损失也最大,其次是1978/1979年、1968/1969年和1962/1963年出现的冬春初夏连旱。云南干旱灾害出现频繁、持续时间长,其分布具有一致性的特点,干旱出现的时段大致在冬、春及初夏季,而近年来秋季干旱呈频发之势。由于云南降水分布极不均,造成各地干旱强度指数存在差异。除滇西、滇西南局部边沿地区降水偏多,出现极端干旱相对较少外,云南大部,特别是云南中部及东部地区最容易发生极端干旱。从1970年代以来,云南出现严重干旱的强度及持续时间呈加重趋势。  相似文献   
788.
用非洲爪蟾胚胎致畸实验和黑斑蛙胚胎发育毒性实验,比较研究了PFOS及其4种替代品对两栖动物胚胎的发育毒性。结果发现,用调聚法合成的织物三防整理剂和50%的全氟丁基有机铵盐阳离子表面活性剂同PFOS一样对非洲爪蟾胚胎有明显毒性,且织物三防整理剂和表面活性剂的毒性强于PFOS;电解氟化法合成的C4织物及C6织物三防整理剂(以下简称C4及C6织物三防整理剂)对非洲爪蟾胚胎没有明显毒性。与非洲爪蟾不同,PFOS和4种替代品对黑斑蛙胚胎没有明显毒性。结果显示,从生物安全性的角度分析,C4和C6织物三防整理剂可作为PFOS的替代品使用,而织物三防整理剂和表面活性剂的毒性比PFOS大,作为PFOS替代品使用需要慎重考虑。  相似文献   
789.
This paper reviews the usage and emissions of endosulfan, the newest member of the persistent organic pollutants (POPs), in China, and its fate and behavior in Chinese environment. Endosulfan usage in China has been estimated to be approximately 25700 t between 1994 and 2004. Concentrations of endosulfan in different environmental compartments in China, such as air, soil, water, and biota, but focusing at air and surface soil, have been summarized. Concentrations of total endosulfan in surface soil across China were ranged from below detection limit (BDL) to 19000 pg·g?1 dry weight (dw), with geometric mean of 120 pg·g?1dw. The results indicated that endosulfan sulfate had highest concentration in Chinese soil, followed by ??- and ??-endosulfan. Air concentrations of endosulfan in China were ranged 0?C340 pg·m?3 for ??-endosulfan and 0?C121 pg·m?3 for ??-endosulfan, with high concentrations occurred in the cotton production areas. Gridded usage inventories of endosulfan on a fine gridded system with a 1/4° longitude by 1/6° latitude resolution were compiled, from which, emission to air and residues in soil of endosulfan were calculated in each grid by using a modified simplified gridded pesticide emission and residue model (SGPERM), an integrated modeling system combining mathematical model, database management system, and geographic information system. Total emissions were around 10800 t from 1994 to 2004. Based on the emission and residue inventories, concentrations of ??- and ??-endosulfan in Chinese air and agricultural surface soil were also calculated for each grid cell, which are in general consistent with the published monitoring data.  相似文献   
790.
A sediment microbial fuel cell (SMFC) with three dimensional floating biocathode (FBC) was developed for the electricity generation and biodegradation of sediment organic matter in order to avoid negative effect of dissolved oxygen (DO) depletion in aqueous environments on cathode performance and search cost-effective cathode materials. The biocathode was made from graphite granules with microbial attachment to replace platinum (Pt)-coated carbon paper cathode in a laboratory-scale SMFC (3 L in volume) filled with river sediment (organic content 49±4 g·kg-1 dry weight). After start-up of 10 days, the maximum power density of 1.00W·m-3 (based on anode volume) was achieved. The biocathode was better than carbon paper cathode catalyzed by Pt. The attached biofilm on cathode enhanced power generation significantly. The FBC enhanced SMFC performance further in the presence aeration. The SMFC was continuously operated for an over 120-day period. Power generation peaked within 24 days, declined gradually and stabilized at a level of 1/6 peak power output. At the end, the sediment organic matter content near the anode was removed by 29% and the total electricity generated was equal to 0.251 g of chemical oxygen demand (COD) removed.  相似文献   
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