71 resultados para Reactive oxygen species


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The type of oxygen species in perovskite-type oxides LaMnyCo1-yO3 (y = 0.0, 0.1, 0.3, 0.5, 0.7, 0.9, 1.0) has been studied by means of XRD, XPS and TPD. The catalytic activity in ammonia oxidation was also investigated. It was found that there were three desorption peaks in TPD curve corresponding to three types of oxygen species (alpha, beta, beta'). The desorption temperatures were 293 K less-than-or-equal-to T(alpha) less-than-or-equal-to 773 K, 773 K less-than-or-equal-to T(beta) less-than-or-equal-to K and T(beta') greater-than-or-equal-to 1073 K respectively. The relationship among the composition, structure and the catalytic property of.the catalyst was correlated and could be explainned with a model based on solid defect reaction and the interaction between Co and Mn ions. The adsorption strength and quantity of a oxygen are proportional to the catalytic activity. The, result indicates that the synergetic effect between B-site ions seems to the benefit of the ammonis oxidation reaction.

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Silver is well known to show peculiar catalytic activities in several oxidation reactions. In the present paper, we investigate the catalytic activity of silver catalysts toward CO-gelective oxidation in H-2. XRD, TEM, TPD, and in situ FTIR techniques were used to characterize the catalysts. The pretreatment of the catalysts was found to have great influence on their performance. The pretreatment in 02 improves the activity of the silver catalyst, whereas He pretreatment at 700 degreesC or direct hydrogen pretreatment shows an inverse effect. Silver catalysts undergo massive structural change during oxygen pretreatment at high temperatures (> 500 degreesC), and there is solid evidence for the formation of subsurface oxygen species. The existence of this silver-subsurface oxygen structure facilitates the formation of active sites on silver catalysts for CO oxidation, which are related to the size, morphology, and exposed crystal planes of the silver particles. Its formation requires a certain temperature, and a higher pretreatment temperature with oxygen is required for the silver catalyst with a smaller particle size. It is observed, for the first time, that adsorbed CO on the surface of silver particles can directly react with subsurface oxygen species at low temperatures (e.g., RT), and the surface oxygen can migrate into and refill these subsurface sites after the consumption of subsurface oxygen by the reaction with CO. This finding provides a new reaction pathway for CO oxidation on silver catalyst. (C) 2004 Published by Elsevier Inc.

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过氧化氢(Hydrogen peroxide,H2O2)是植物和病原微生物互作中快速合成的一种早期活性氧类(reactive oxygen species, ROS ),它在植物受到病原微生物侵染后引发的一系列防御反应中起着非常重要的作用,因此通过外源基因导入提高植物体内过氧化氢的含量,可以增强植物的广谱抗病性。葡萄糖氧化酶(glucose oxidase, GO)可以催化β-D-葡萄糖氧化生成过氧化氢和葡萄糖酸,此酶已在数种细菌和真菌中检测到,但在植物和动物中仍未发现。为了尝试将此酶应用于水稻广谱抗病基因工程,本研究将葡萄糖氧化酶基因插入具有潮霉素抗性选择标记的双元载体pCAMBIA1301,新构建为水稻高效表达载体pCAG1301。将此质粒导入根癌农杆菌(Agrobacterium tumefaciens )菌株LBA4404后,转化粳稻(Oryza sativa )品种日本晴(Nipponbare)成熟胚来源的愈伤组织和幼胚,并由筛选出的潮霉素抗性愈伤组织分化再生植株。对所得到的潮霉素抗性植株的Southern杂交分析表明GO基因已整合到受体基因组,为单拷贝或双拷贝插入。利用过氧化氢与淀粉-碘化钾反应显蓝色的特性检测到了转基因植株产生的过氧化氢,证实GO基因表达产生的葡萄糖氧化酶已经在水稻中发挥功能,这是将GO基因转入单子叶植物的首例报道。 基于过氧化氢诱导的植物防御反应没有种属专一性的优点,可以预期所得转基因水稻植株很可能对水稻的多种病原菌具有良好的抗性。已完成的抗病性鉴定表明,所得转基因水稻植株对稻瘟病具有良好的抗性。

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系统获得性抗性(Systematic acquired resistance, SAR)是植物抵御病原菌侵染的最有效手段,利用基因工程技术导入SAR信号发生过程中的关键基因后,植物的SAR基因表达量提高并且对病原菌侵染的反应速度加快,因此植物的抗病性得以增强,与传统的抗病基因工程技术相比它对病原菌没有专一性,许多学者称之为广谱抗病基因工程,该领域已成为目前抗病基因工程研究的热点和前沿。 NDR1和NPR1基因在植物的SAR发生中起着重要的作用,前者功能定位在ROS(reactive oxygen species)的激活和随后的水杨酸(SA)诱导合成之间,突变株病原菌诱导后SA合成能力降低,SAR发生减弱,目前还没有对该基因进行过量表达分析的报道;后者功能定位在SAR信号转导级联反应之中的SA积累和随后的SAR基因表达之间。该突变株在病原菌侵染时不产生病程相关蛋白(PRs),表现为感病,而对照抗病;过量表达该基因的转基因拟南芥对多种病原菌的侵染产生抗性,PR1等PRs蛋白的表达量也提高,异源表达该基因的水稻对白叶枯病的抗性也提高。本研究利用RT-PCR方法从拟南芥中克隆了这两种基因,序列分析表明拟南芥Wassilewskija生态型的NDR1基因与Columbia生态型相比,共有7处碱基不同,引起编码氨基酸变化4处,而NPR1基因与报道的Wassilewskija生态型来源的NPR1基因完全相同。 我们构建了35S启动子驱动的NDR1和NPR1基因的植物组成型高效表达载体,利用农杆菌介导法转化烟草,PCR和Southern鉴定外源基因已经整合到植物基因组中。抗病性分析显示过量表达NDR1和NPR1基因的烟草对晚疫病和赤星病的抗性都有明显提高,说明这两个基因的在其它植物中异源表达后,都能提高植物对多种病原菌的抗性。 本论文提出了利用这两个基因来培育抗黄萎病棉花的设想,一方面为解决这个“世纪性”难题积累新的资料,另一方面也为其它作物的抗病基因工程提供新的经验。利用35S启动子驱动的NDR1和NPR1基因的植物组成型表达载体分别对陆地棉品种石远321进行花粉管通道法转化。同时,还探讨了这两个基因在棉花中的共转化实验,希望它们的“协同增效”能进一步提高棉花的抗病性。对其中2001年夏天在南京注射所获得的5,000粒种子在三亚进行100 g/ml卡那霉素筛选,初步鉴定分别获得转NDR1和NPR1基因株系26和24棵,PCR进一步鉴定其中分别有12和7棵为转基因阳性,转基因频率分别为0.50%和0.27%,目前利用营养钵蘸根法对其二代进行抗枯、黄萎病鉴定,结果显示有转基因植株对枯、黄萎病的抗性都明显增强,进一步的鉴定正在进行中。2002年初海南注射分别获得转NDR1和NPR1基因以及共转化种子22,000、10,500和12,500粒种子,2002年夏在中国农科院植保所黄萎菌病圃筛选抗黄萎病单株,并利用100 g/ml卡那霉素初步筛选出了一批抗性植株,每种转基因株系随机挑选5株进行PCR鉴定,结果显示为阳性。进一步的抗黄萎病鉴定和筛选以及分子分析正在进行中。 同时,本文还探讨了病原菌诱导型启动子在广谱抗病基因工程应用的可能性。根据烟草的Pr1-a启动子已知序列设计引物,PCR扩增启动子序列后,构建病原菌诱导型NPR1基因植物表达载体,并对棉花进行转化,获得种子11,500粒,利用同上的筛选方法,获得了一致的结果,目前抗黄萎病鉴定、分子检测以及生物学分析正在进行中。 最后,鉴于抗生素标记在转基因植物的应用引起了许多“安全性”争论的事实,还构建了无筛选标记的表达载体对抗虫棉进行转化,这样在生产上可以直接获得抗虫棉抗黄萎病棉花新材料,也为其它作物抗病基因工程积累经验。 本研究还提出了一种较为有效的提取高质量棉花总RNA的方法,与原来一些棉花RNA纯化方法相比,该方法所用都为常规试剂,易于重复,质量高。并且利用获得的总RNA构建了黄萎菌激发子诱导的cDNA文库,滴度测定为1╳107pfμ/μg,插入片段大小在5 00~2 000 bp范围内。 鉴于NPR1基因研究的重要性,本研究还利用简并引物PCR技术从海岛棉和陆地棉的基因组中都分离到了NPR1基因的同源片段,大小都为208 bp,与拟南芥NPR1基因的相应部分的同源性分别为66%和65%,它们之间的同源性为87%,目前该基因的全长正在分离鉴定中。 多聚半乳糖醛酸酶抑制蛋白(PGIPs)在植物的防御反应中起着重要的作用,通过分析已知20余种pgip基因序列的保守区,设计简并引物,PCR扩增海岛棉(Gossypium barbadense)7124 cDNA文库,得到一条长561 bp的片段,序列测定后分析确认为pgip基因的一部分。根据此序列和棉花病原菌诱导的cDNA文库载体中已知部分设计RACE引物,扩增后,5’和3’RACE分别得到666bp和906 bp的片段。序列分析表明它具有完整的编码框,产物为330 aa的蛋白质。序列分析该蛋白具有10个串联的LRR(leucine-rich repeat)区,与柑桔(Citrus)和枳(Poncirus)的pgip基因的同源性分别为69.2%和68.7%。进一步PCR扩增得到该基因的全长阅读框,并且获得了相应的基因组片段,序列分析发现该基因没有内含子。这是从棉属植物中克隆的第一个pgip基因。

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盐角草(Salicornia europaea L.)是一种叶片退化而茎肉质化,不具有盐腺和盐囊泡的真盐生植物,可以在1020 mM NaCl下生存。其特殊的形态适应特点使其成为研究植物抗盐性的良好实验材料。但目前与盐角草抗盐机理相关的生理和分子方面的研究还非常有限。本文以盐角草为材料,首先探讨了盐分和渗透胁迫对其光合作用和渗透平衡的影响,在此基础上进一步克隆了盐角草类胡萝卜素合成途径中的两个关键酶,八氢番茄红素合成酶(SePSY)和番茄红素β-环化酶(SeLCY)基因,并进行了功能分析。该研究对于了解类胡萝卜素在植物抗盐性中所起的作用具有重要意义。 盐分和渗透胁迫对其光合作用和渗透平衡影响的实验结果表明:200 mM NaCl是盐生植物盐角草生长的最适盐浓度,在该盐度下盐角草中叶绿素a/b的比值和光饱和点升高,植株的光合作用表现出增强的效应,植株生长最佳。而27% PEG-6000所模拟的渗透胁迫显著降低了盐角草中叶绿色a/b的比值,抑制其光合作用和生长。200 mM NaCl下,Na+的含量显著增加,但脯氨酸含量保持不变,说明Na+对盐角草渗透平衡的作用要强于脯氨酸。同时盐角草中液泡H+-ATPase(V-H+-ATPase)活性增强,而盐角草Na+/H+逆向转运蛋白基因(SeNHX1)在盐分和渗透胁迫下却表现为组成型表达;我们因此推断在盐分胁迫下,Na+的吸收是由于液泡H+-ATPase活性的增强,而不是诱导SeNHX1基因的表达。同时Na+的吸收可能进一步诱导了与光合作用相关基因的表达。 盐分对植物的影响涉及植物体内包括光合作用和活性氧代谢在内的多个代谢过程。在植物中,类胡萝卜素是植物捕光天线复合体(LHC)和光系统反应中心叶绿素结合蛋白的重要组成部分。植物体内类胡萝卜素能够清除植物叶绿体,线粒体和过氧化物体在电子传递过程中产生的活性氧。同时类胡萝卜素是植物激素ABA的前体。200 mM NaCl虽然增加了盐角草细胞的渗透势,但并没有对其造成氧化胁迫和离子毒害,相反提高了其光合能力。类胡萝卜素作为植物活性氧的淬灭剂和光系统的组成成分,可能在盐角草抗盐机理中发挥着比较重要的作用。在过去的十年中,类胡萝卜素研究大多集中在其生物合成和提高作物中类胡萝卜素含量方面,可是,在植物对非生物逆境(如氧化和盐分胁迫)的适应机制中,类胡萝卜素合成途径究竟发挥什么作用目前还不是很清楚。为了了解盐角草中类胡萝卜素合成途径在植物逆境的适应机制中所发挥的作用,本文采用RACE的方法克隆了盐角草类胡萝卜素合成途径中的两个关键酶基因 SePSY和SeLCY,将它们构建到植物表达载体SN1301中,转化拟南芥,并对它们进行了初步的功能分析。 研究发现盐角草SePSY基因全长1655 bp,编码419个氨基酸,推测分子量为47.2 kDa,等电点为8.92。其蛋白在1-65个氨基酸处有一个信号肽。在1-19和242-264氨基酸处有2个跨膜区。盐角草SeLCY基因全长1937 bp,编码498个氨基酸,推测分子量为56.1 kDa,等电点为8.41。其蛋白在1-37个氨基酸处有一个信号肽。在79-96,367-385和454-474氨基酸处有3个跨膜区。SePSY和SeLCY基因过量表达均促进转基因拟南芥的生长,转SePSY基因拟南芥次生根数目比野生型拟南芥明显增多。SePSY和SeLCY基因的过量表达还使转基因拟南芥对百草枯的抗性得到提高;SePSY基 因的过量表达增强了植株体内抗氧化保护酶过氧化物酶(POD),超氧化物歧化酶(SOD)活性,但过氧化氢酶 (CAT)的变化不显著;转SeLCY基因株系POD,SOD,CAT的活性都有所增强,但转SePSY基因株系中POD活性明显高于 转SeLCY基因株系。转SePSY和SeLCY基因拟南芥叶片中丙二醛(MDA)和H2O2含量均降低,但转SePSY基因株系中MDA和H2O2含量明显低于转SeLCY基因株系。说明转基因拟南芥对氧化胁迫的抗性得到了提高,同时使得光系统II(PSII)和细胞膜的结构和功能不被破坏。而转SePSY基因株系对盐分和氧化胁迫的抗性明显高于转SeLCY基因株系。SePSY和SeLCY基因的过量表达还提高了转基因拟南芥的光合效率,气孔导度和Fv/Fm比值。 SePSY和SeLCY基因转化拟南芥及其功能分析的初步结果表明,SePSY和SeLCY基因的过量表达提高了转基因拟南芥对体内活性氧(ROS)的清除能力,增强了拟南芥的光合能力,进而提高了拟南芥的抗盐性。

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  近年来,酵母拮抗菌在水果采后病害防治中展示了良好的应用前景。然而,在实际应用中,酵母拮抗菌在逆境条件下会因为发生凋亡或细胞损伤而引起生活力的下降,最终导致拮抗菌抑病能力降低。研究酵母拮抗菌生活力下降的规律,提高酵母拮抗菌的生产效率,减少剂型加工过程中的细胞损伤,增强其对逆境条件的耐受力是增加或稳定生防制剂防治效果的有效途径。本文主要研究酵母拮抗菌正常培养过程中生活力下降的规律,筛选剂型加工过程中对酵母拮抗菌具有保护作用的化学物质,并对酵母拮抗菌的培养条件进行了优化。主要研究结果如下:   1. 在正常培养过程中,酵母拮抗菌Rhodotorula glutinis和Cryptococcus laurentii中细胞染色质凝集或细胞膜破损的发生一般在6天以后。外源加入的N-乙酰半胱氨酸及硅酸钠等物质在超过一定浓度时会加速酵母菌的死亡。   2. 在不同的液体悬浮制剂中,对R. glutinis而言,使用磷酸缓冲液(PBS)悬浮时保护效果最好;而C. laurentii悬浮在NYDB培养基中或海藻糖、乳糖溶液中时的生活力最高。   3. 以10 %葡萄糖 + 5 %脱脂牛奶作保护剂,可以有效地保持酵母拮抗菌C. laurentii冻干制剂的生活力,配合使用的保护效果高于它们单独使用时的保护效果。添加1 mM N-乙酰半胱氨酸能更好地保持拮抗菌制剂在常温保存过程中的生活力,这可能与这种还原性物质缓解了细胞内活性氧的积累有关。   4. 不同酵母拮抗菌对不同碳、氮源的利用能力有明显差异。在9种不同的碳源和10种不同的氮源中,Pichia membranefaciens能够最有效利用的碳、氮源是葡萄糖、果糖和多价胨,而Candida guilliermondii的最佳碳源和氮源分别是果糖和肉蛋白胨。

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质膜上存在一种富含甾醇物质的液相有序膜脂微区,被称作脂筏 (lipid rafts或lipid microdomains)。这种小的膜微区可以通过在质膜上的侧向移动,聚集形成较大的片状结构,而与微区相关联的蛋白可以通过脂筏的这种聚合作用而凝聚分布于特定的亚细胞结构上。脂筏区域在真菌和动物质膜上具极性分布,并参与细胞的极性形态建成和运动。最近,通过生物化学研究证实,脂筏也存在于植物细胞,然而迄今为止,脂筏与植物细胞极性生长相关联的直接功能证据尚未见报道。 NADPH氧化酶 (NOX,在植物中又称为 Rboh) 产生的活性氧 (Reactive oxygen species, ROS) 可能是调控植物细胞(包括花粉管、根毛和墨角藻合子等)极性生长的通用信号机制。花粉管作为研究细胞极性控制的一种理想模式系统,已被许多信号转导调控研究所采用。在本研究中,我们使用一种能螯合甾醇类物质的多烯类抗生素filipin破坏脂筏结构,以探讨脂筏极化对ROS介导的白杄花粉管极性生长的作用。 我们首次在白杄 (Picea meyeri) 花粉管上应用一种全新的苯乙烯基染料di-4-ANEPPDHQ,成功地在活体细胞上观察到脂筏在花粉管生长顶端的极性分布模式。通过脂筏和甾醇在质膜上的相似定位清楚表明:在花粉管极性生长过程中,存在富含甾醇类物质的质膜微区在花粉管生长顶端的极化现象。 氮蓝四唑(NBT)的还原和二氯二氢荧光素(H2DCF)的氧化均显示,在活跃生长的花粉管顶端区域存在一个以顶端为基底的陡峭ROS梯度,从而进一步验证了ROS在细胞极性生长过程中的信号作用。此外,我们还发现在生长花粉管的亚顶端位置有另一类性质的活性氧组分存在,该ROS组分与线粒体的能量代谢相关。研究结果首次揭示,在快速生长的花粉管中同时存在两类性质不同的ROS组分。 ROS是一种寿命很短而且容易扩散的分子,NADPH氧化酶产生的ROS信号在细胞伸长位点的准确定位是调控极性生长的必要条件。免疫共定位实验显示,NOX成簇极化分布于花粉管的生长顶端。使用filipin进行甾醇的螯合会破坏膜的异质性,干扰NOX簇在生长顶端的定位,减少了顶端的ROS形成,消弱了胞质Ca2+ 浓度梯度,进而抑制了花粉管的顶端生长。 在纯化质膜的基础上,我们使用Triton去垢剂处理结合Optiprep密度梯度离心,分离纯化了抗去垢剂抽提的质膜微区 (Detergent-resistant microdomains, DRMs)。通过免疫印迹分析证实,NADPH氧化酶部分地存在于DRMs中。非变性胶活性实验证明,该酶需要脂筏定位来保持酶活性。因此我们认为,在正常的细胞极性生长中,脂筏招募并运载NADPH氧化酶到花粉管的生长顶端,并为NOX及其活性亚基的有效互作提供了适宜的微环境,由此保证了NOX蛋白产生ROS的较高酶活性,进而维持花粉管的极性顶端生长。 总之,甾醇螯合对白杄花粉管生长影响的研究,为脂筏极化在花粉管极性生长中的作用提供了证据。基于以上生物化学和细胞生物学的结果,我们针对花粉管中富含甾醇的脂筏微区和NOX功能之间的联系,提出了一种假说模式:(1) 植物细胞质膜上的脂筏为信号分子ROS在特定位点的聚集提供了物理载体;(2) 脂筏的完整性和甾醇依赖性对NOX的定位和活性是必要的,并为花粉管细胞极性产生和维持所必需。上述研究结果表明,脂筏在花粉管顶端的极化,以及作为关键生长因子的NOX在质膜脂筏中的定位,对花粉管的高度极性生长具有重要作用。

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It is generally agreed that reactive oxygen species (ROS) contribute to skin aging, skin disorders, and skin diseases. Skin possesses an extremely efficient antioxidant system. This antioxidant activity is conferred by two systems: antioxidant enzymes and

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Ticks are blood-feeding arthropods that may secrete immunosuppressant molecules, which inhibit host inflammatory and immune responses and provide survival advantages to pathogens at tick bleeding sites in hosts. In the current work, two families of immunoregulatory peptides, hyalomin-A and -B, were first identified from salivary glands of hard tick Hyalomma asiaticum asiaticum. Three copies of hyalomin-A are encoded by an identical gene and released from the same protein precursor. Both hyalomin-A and -B can exert significant anti-inflammatory functions, either by directly inhibiting host secretion of inflammatory factors such as tumor necrosis factor-alpha, monocyte chemotectic protein-1, and interferon-gamma or by indirectly increasing the secretion of immunosuppressant cytokine of interleukin-10. Hyalomin-A and -B were both found to potently scavenge free radical in vitro in a rapid manner and inhibited adjuvant-induced inflammation in mouse models in vivo. The JNK/SAPK subgroup of the MAPK signaling pathway was involved in such immunoregulatory functions of hyalomin-A and -B. These results showed that immunoregulatory peptides of tick salivary glands suppress host inflammatory response by modulating cytokine secretion and detoxifying reactive oxygen species.

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The question of how amphibians can protect themselves from reactive oxygen species when exposed to the sun in an oxygen-rich atmosphere is important and interesting, not only from an evolutionary viewpoint, but also as a primer for researchers interested in mammalian skin biology, in which such peptide systems for antioxidant defense are not well studied. The identification of an antioxidant peptide named antioxidin-RL from frog (Odorrana livida) skin in this report supports the idea that a peptide antioxidant system may be a widespread antioxidant strategy among amphibian skins. Its ability to eliminate most of the 2,2'-azino-bis(3-ethylbenzthiazoline-6-sulfonic acid) radical tested within 2 s, which is much faster than the commercial antioxidant factor butylated hydroxytoluene, suggests that it has a potentially large impact on redox homeostasis in amphibian skins. Cys10 is proven to be responsible for its rapid radical scavenging function and tyrosines take part in the binding of antioxidin-RL to radicals according to our nuclear magnetic resonance assay. (C) 2010 Elsevier Inc. All rights reserved.

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Biological soil crusts are important in reversing desertification. Ultraviolet radiation, however, may be detrimental for the development of soil crusts. The cyanobacterium Microcoleus vaginatus can be a dominant species occurring in desert soil crusts all over the world. To investigate the physico-chemical consequences of ultraviolet-B radiation on M. vaginatus, eight parameters including the contents of chlorophyll a, reactive oxygen species, malondialdehyde and proline, as well as the activities of photosynthesis, superoxide dismutase (EC 1.15.1.1), peroxiclase (EC 1.11.1.7) and catalase (EC 1.11.1.6) were determined. As shown by the results of determinations, ultraviolet-B radiation caused decreases both in contents of chlorophyll a and in ratios of variable fluorescence over maximum fluorescence that indicate the growth and photosynthesis of M. vaginatus, besides, increases both in levels of reactive oxygen species and in contents of malondialdehyde and proline, while intensified activities of superoxide dismutase, peroxiclase and catalase reflecting the abilities of enzymatic preventive substances to oxidative stress of the treated cells. Therefore, ultraviolet-B radiation affects the growth of M. vaginatus and leads to oxidative stress in cells. Under ultraviolet-B radiation, the treated cells can improve their antioxidant abilities to alleviate oxidative injury. The change trends of reactive oxygen species, superoxide dismutase, peroxiclase and catalase are synchronous. These results suggest that a balance between the antioxidant system and the reactive oxygen species content may be one part of a complex stress response pathway in which multiple environmental factors including ultraviolet-B radiation affect the Survival of M. vaginatus. (C) 2009 Elsevier Masson SAS. All rights reserved.

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Hexabromocyclododecane (HBCD) is widely used as a brominated flame retardant, and has been detected in the aquatic environment, wild animals, and humans. However, details of the environmental health risk of HBCD are not well known. In this study, zebrafish embryos were used to assess the developmental toxicity of the chemical. Four-hour post-fertilization (hpf) zebrafish embryos were exposed to various concentrations of HBCD (0, 0.05, 0.1, 0.5, and 1.0 mg L-1) until 96 h. Exposure to 0.1, 0.5, and 1.0 mg L-1 HBCD significantly increased the malformation rate and reduced survival in the 0.5 and 1.0 mg L-1 HBCD exposure groups. Acridine orange (AO) staining showed that HBCD exposure resulted in cell apoptosis. Reactive oxygen species (ROS) was significantly induced at exposures of 0.1, 0.5, and 1.0 mg L-1 HBCD. To test the apoptotic pathway, several genes related to cell apoptosis, such as p53, Puma, Apaf-1, caspase-9, and caspase-3, were examined using real-time PCR. The expression patterns of these genes were up-regulated to some extent. Two anti-apoptotic genes, Mdm2 (antagonist of p53) and Bcl-2 (inhibitor of Bax), were down-regulated, and the activity of capspase-9 and caspase-3 was significantly increased. The overall results demonstrate that waterborne HBCD is able to produce oxidative stress and induce apoptosis through the involvement of caspases in zebrafish embryos. The results also indicate that zebrafish embryos can serve as a reliable model for the developmental toxicity of HBCD. (C) 2009 Elsevier B.V. All rights reserved.

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UV-B-induced oxidative damage and the protective effect of exopolysaccharides (EPS) in Microcoleus vaginatus, a cyanobacterium isolated from desert crust, were investigated. After being irradiated with UV-B radiation, photosynthetic activity (Fv/Fm), cellular total carbohydrates, EPS and sucrose production of irradiated cells decreased, while reducing sugars, reactive oxygen species (ROS) generation, malondialdehyde (MDA) production and DNA strand breaks increased significantly. However, when pretreated with 100 mg/L exogenous EPS, EPS production in the culture medium of UV-B stressed cells decreased significantly; Fv/Fm, cellular total carbohydrates, reducing sugars and sucrose synthase (SS) activity of irradiated cells increased significantly, while ROS generation, MDA production and DNA strand breaks of irradiated cells decreased significantly. The results suggested that EPS exhibited a significant protective effect on DNA strand breaks and lipid peroxidation by effectively eliminating ROS induced by UV-B radiation in M. vaginatus.