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11.
When using stable enzyme genes from a thermophile to create a biosensor in Escherichia coli, it is vital that these genes be overexpressed in order to provide a sufficient supply of enzymes. In this study, overexpression of the NADH oxidase (Nox) gene from the thermophile Deinococcus geothermalis was successfully achieved with the aim of creating a stable biosensor active at room temperatures. To do so, modification of 10 nucleotides, GAAATTAACT, upstream of the start codon of the Nox gene was necessary.  相似文献   
12.
模拟干旱胁迫对诸葛菜无机碳利用的影响   总被引:1,自引:0,他引:1  
为研究喀斯特适生植物的碳酸酐酶应对岩溶干旱机制,本实验以诸葛菜为研究对象,以聚乙二醇(polyethyleneglycol,PEG)浓度为控制因子,已知δ13 C值的NaHCO3为无机碳源模拟喀斯特干旱逆境,测定分析不同浓度PEG下诸葛菜叶片的碳酸酐酶活力、稳定碳同位素组成、净光合速率和叶绿素荧光等指标。结果表明,诸葛菜的碳酸酐酶活力在PEG胁迫浓度低于40g·L-1时显著性增高;碳酸氢根离子利用份额随PEG浓度变化不同,10g·L-1时利用份额最多,20g·L-1时诸葛菜的碳酸氢根离子利用份额与对照相比无显著性差异;净光合速率随着PEG浓度的增加而下降,且下降趋势成非线性关系;PEG浓度低于40g·L-1时,荧光参数显示光合系统未受到损坏。适当的渗透逆境胁迫下,诸葛菜表现出高碳酸酐酶活力应对逆境。诸葛菜可凭借碳酸酐酶作用交替利用碳酸氢根离子和大气中的二氧化碳,补充诸葛菜因渗透胁迫造成的水分和二氧化碳的不足,保护光合系统,减缓净光合速率的下降。  相似文献   
13.
滨岸缓冲带控制农田氮磷流失的作用和机理研究   总被引:1,自引:0,他引:1  
农田面源氮磷的流失是导致河流湖泊等水体产生富营养化的主要原因之一,其带来的环境、经济及社会问题已引起国内外广泛关注。近年来,关于滨岸缓冲带截留污染物的效率和机理已成为研究热点。文章介绍了滨岸缓冲带在农业面源污染防治上的功能和作用,论述了滨岸缓冲带对氮磷养分的截留转化机理以及稳定同位素技术在机理研究中的应用,讨论了影响滨岸缓冲带截留转化氮磷养分的调控因子,在此基础上就目前滨岸缓冲带控制农田氮磷流失研究中存在的问题提出了未来的研究展望。  相似文献   
14.
青海湖沉积物稳定碳同位素常常被用来指示古环境的变化,然而准确地解译其信号需要充分认识溶解无机碳同位素比值(δ13CDIC)变化及其控制因素。本文利用沉积物捕获器连续一年收集的青海湖湖水及颗粒物,通过其中湖水的δ13CDIC和细颗粒沉积物中碳酸盐稳定碳同位素(δ13Ccarb)的同步分析,结合湖水δ13CDIC的垂直分布和表层沉积物δ13Ccarb及有机碳同位素(δ13Corg),探讨了有机质分解在δ13CDIC和δ13Ccarb中的调节作用。结果表明,从沉积物捕获器中获得的湖水δ13CDIC的变化主要受控于与外界隔绝后(微)生物对有机质的分解作用,但这种(微)生物分解作用并不会影响到δ13Ccarb比值。这些现象反映了(1)还原环境下(微)生物对有机质的分解作用对水体δ13CDIC有重要影响和(2)青海湖自生碳酸盐主要从上层湖水沉淀,且形成后不再与周围水体发生交换作用。  相似文献   
15.
A new phenol-degrading bacterium with high biodegradation activity and high tolerance of phenol, strain PD 12, was isolated from the activated sludge of Tianjin Jizhuangzi Wastewater Treatment Facility in China. This strain was capable of removing 500 mg phenol/L in liquid minimal medium by 99.6% within 9 h and metabolizing phenol at concentrations up to 1100 mg/L. DNA sequencing and homologous analysis of 16S rRNA gene identified PD12 to be an Acinetobacter sp. Polyvinyl alcohol (PVA) was used as a gel matrix to immobilize Acinetobacter sp. strain PDI2 by repeated freezing and thawing. The factors affecting phenol degradation of immobilized cells were investigated, and the results showed that the immobilized cells could tolerate a high phenol level and protected the bacteria against changes in temperature and pH. Storage stability and reusability tests revealed that the phenol degradation functions of immobilized cells were stable after reuse for 50 times or storing at 4℃ for 50 d. These results indicate that immobilized Acinetobacter sp. strain PD 12 possesses a good application potential in the treatment of phenol-containing wastewater.  相似文献   
16.
Air and soil pollution from traffic has been considered as a critical issue to crop production and food safety, however, few efforts have been paid on distinguish the source origin of traffic-related contaminants in rice plant along highway. Therefore, we investigated metals (Pb, Cd, Cr, Zn and Cu) concentrations and stable Pb isotope ratios in rice plants exposed and unexposed to highway traffic pollution in Eastern China in 2008. Significant differences in metals concentrations between the exposed and unexposed plants existed in leaf for Pb, Cd and Zn, in stem only for Zn, and in grain for Pb and Cd. About 46% of Pb and 41% of Cd in the grain were attributed to the foliar uptake from atmosphere, and there were no obvious contribution of atmosphere to the accumulations of Cr, Zn and Cu in grain. Except for Zn, all of the heavy metals in stem were attributed to the root uptake from soil, although significant accumulations of Pb and Cd from atmosphere existed in leaf. This indicated that different processes existed in the subsequent translocation of foliar-absorbed heavy metals between rice organs. The distinct separation of stable Pb isotope ratios among rice grain, leaf, stem, soil and vehicle exhaust further provided evidences on the different pathways of heavy metal accumulation in rice plant. These results suggested that further more attentions should be paid to the atmospheric deposition of heavy metals from traffic emission when plan crop layout for food safety along highway.  相似文献   
17.
桂江主要离子及溶解无机碳的生物地球化学过程   总被引:18,自引:9,他引:9  
河流水体的化学组成记录了流域内各种自然过程与人类活动的信息.对西江一级支流桂江化学径流的分析结果表明,桂江水体的离子组成主要受碳酸盐岩化学风化过程的控制,CO2是这一过程的主要侵蚀介质;H2SO4对碳酸盐岩的风化影响桂江河水的化学组成.大气沉降、人类活动、碳酸盐岩和硅酸盐岩化学风化对桂江水体贡献的溶解物质分别占总溶解物质的2.7%、6.3%、72.8%和18.2%.河流溶解无机碳(DIC)的稳定同位素组成(δ13CDIC)揭示桂江河水中的DIC明显被浮游植物的光合作用所利用.浮游植物初级生产力对桂江颗粒有机碳(POC)的贡献达22.3%~30.9%,这表明岩石风化来源的DIC经浮游植物的光合作用转化为有机碳,并在迁移过程中部分沉积水体底部,进而形成埋藏有机碳.  相似文献   
18.
本文以红枫湖、百花湖和阿哈水库中的微藻为研究对象,通过测定湖水中的DIC含量,微藻胞外碳酸酐酶活力和藻体的稳定碳同位素组成等信息,来研究湖泊微藻的碳同位素组成对全球气候变化的响应。结果发现:水体无机碳和微藻胞外碳酸酐酶活力是影响湖泊微藻稳定碳同位素组成变化的决定性因素。本研究所获得的认识将在全球气候变化方面具有重要意义。  相似文献   
19.
长沙地区近地面水汽中氢氧稳定同位素的变化特征   总被引:4,自引:0,他引:4  
基于在长沙地区2014年10月—2015年10月监测的近地面水汽中氢氧稳定同位素组成(δv)及相关气象要素,对水汽中氢氧稳定同位素的变化特征、影响因素及与降水中稳定同位素(δp)的相互关系进行了分析.结果表明:大气水汽中氢氧稳定同位素存在显著的季节变化和日变化,冬、春季值高于夏、秋季值,夜晚值高于白天值.δv~(18)O的季节变化与大尺度水汽输送的季节性变化有关,日变化则与地表蒸散发、大气湍流等局地气象条件有关.通过对δv~(18)O的平衡模拟发现,水汽中和降水中稳定同位素在暖季处于或接近平衡状态,在冷季处于非平衡状态.不同季节的大气水汽线和大气水线具有一定程度的相似性,两者的斜率均为暖季大于冷季;受下垫面新降水蒸发的影响,降水日大气水汽线的斜率和截距相对于无降水日均有增加,暖季分别增加0.11和3.52‰,冷季分别增加0.07和0.14‰.  相似文献   
20.
The size and isotopic behavior of sulfur pools in210Pb-dated peat cores were investigated to obtain aninsight into retention mechanisms of pollutant S in twomountain-top peatlands of the Northern Czech Republic, CentralEurope. The bogs were situated 40 km apart in an area whichbetween the years 1985 and 1995 received as much as 130 kg Sha-1 yr-1 from the atmosphere. Vertical peataccretion was faster at Pod Jelení horou (JH) than atVelký moál (VM). Organic carbon-bonded S was themost abundant sulfur pool, constituting 77 and 65 wt. % at JHand VM, respectively. At JH both the S concentration maximumand the highest annual S deposition rate were displaceddownward by more than 20 years (from 1987 to the 1960s)indicating that the buried S is vertically mobile. At VM the Sconcentration was the highest in the topmost 2-cm section eventhough atmospheric S deposition peaked in 1987. Differentmechanisms of S isotope redistribution prevailed in thetopmost peat layers at JH, where a negative 34Sshift occurred, and at VM, where a positive 34Sshift occurred. Bacterial sulfate reduction was responsiblefor the negative 34S shift at JH. One possibleexplanation of the positive 34S shift at VM isrelease of 32S-enriched products of mineralization duringpeat diagenesis. There was a strong positive correlationbetween the abundance of total and pyrite S along the profiles.The presence of pyrite S at VM (526 ± 60 ppm) suggestedthat even at VM bacterial sulfate reduction occurred. Ananaerobic incubation of JH peat indicated sulfate reductionrate of 600 nmol g-1 day-1. The turnover times forinorganic S pools were shorter than for the organic S pools.Cumulative S contents in the Czech peat bogs were found to besignificantly lower than in similar sites in the NortheasternU.S., even though the atmospheric S inputs were more thanthree times higher at the Czech sites. Possible causes of suchdiscrepancy are discussed.  相似文献   
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