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91.
基因芯片技术检测重要人兽共患病病毒方法的建立 总被引:1,自引:0,他引:1
为了建立能对25种重要人兽共患病病毒进行筛查及鉴定用的基因芯片技术,本实验首先设计针对每种病毒的寡核苷酸探针并进行探针特异性的生物信息学验证.然后探索病毒核酸随机扩增方法,优化杂交动力学条件,建立本芯片标准的数据处理分析方法.最后用细胞培养的病毒和模拟临床标本验证芯片的敏感性与特异性.结果表明,锚定随机PCR扩增法适合于本芯片病毒核酸的扩增;芯片杂交前用0.25% NaBH4进行封闭,最优杂交条件为51 ℃,2 h及50%甲酰胺浓度;芯片具有较好的敏感性及检测特异性.初步结果表明,本实验所建立的基因芯片技术可应用于对25种重要人兽共患病病毒进行筛查及鉴定. 相似文献
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为探讨氮肥对水稻(Oryza sativa)穗发育的调控作用, 使用高通量测序技术检测氮肥处理前后水稻叶片和幼穗组织中转录组的变化, 并从中筛选到大量差异表达基因。这些基因的功能涉及转录调控、激素代谢和信号转导、物质代谢和转运、胁迫响应、信号转导(受体)和蛋白质降解等。同时对目前克隆得到的穗发育相关基因进行分析, 发现在氮素穗肥的作用下, 部分重要功能基因的表达量发生了明显变化, 其中一些基因还参与调控水稻株高、抽穗期、分蘖和结实率等性状。对这些差异表达基因的功能研究有助于揭示氮素穗肥调控水稻每穗颖花数的分子机制。 相似文献
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生长素是一种重要的植物激素, 几乎参与了植物所有的生命活动过程。GH3-6具有IAA酰胺合成酶活性, 催化氨基酸与IAA形成IAA的氨基轭合物, 发挥暂时或永久灭活IAA的作用。该文探讨了GH3-6基因在拟南芥(Arabidopsis thaliana)逆境适应过程中的功能。结果显示GH3-6基因受干旱、ABA和高盐的诱导表达。与野生型相比, GH3-6基因过表达突变体dfl1-D对干旱的抗性明显减弱, 叶片失水速率更快。在抗盐方面, dfl1-D也显著弱于野生型。在3种逆境(干旱、ABA和高盐)胁迫下, GH3-6基因的高表达抑制了逆境响应基因RD22、KIN1、RD29A和DREB1A的表达。而且在干旱胁迫下, dfl1-D中ABA的含量明显低于野生型。研究结果证明, 高表达GH3-6基因负调控拟南芥对逆境的抗性。 相似文献
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Joint United Nations Programme on HIV/AIDS 《Developing world bioethics》2001,1(2):116-120
Here are the 18 guidance points contained in the UNAIDS document on Ethical Considerations in HIV Preventive Vaccine Research, reproduced by kind permission of the Joint United Nations Programme on HIV/AIDS (UNAIDS). 相似文献
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Hartung T;Human 《Alternatives to laboratory animals : ATLA》2002,30(Z2):49-51
The Limulus amoebocyte lysate (LAL) test has replaced about 80% of the use of the rabbit pyrogen test. Ideally, human-based in vitro tests are needed, to replace the remaining use of the rabbit test and the use of the LAL test. The progress of an EU-funded project is described, in which a number of in vitro tests, based on the human fever reaction are passing through a prevalidation study on the way to evaluation in a formal validation study. 相似文献
100.
Hünkar T Aktan F Ceylan A Karasu C;Antioxidants in Diabetes-Induced Complications 《Cell biochemistry and function》2002,20(4):297-302
Lipid disorders and increased oxidative stress may exacerbate some complications of diabetes mellitus. Previous studies have implicated the beneficial effects of some antioxidants, omega-3 polyunsaturated fatty acids (PUFAs), eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) in the protection of cells from the destructive effect of increased lipids and lipid peroxidation products. This study, therefore, was designed to investigate the effects of cod liver oil (CLO, Lysi Ltd. Island), which comprises mainly vitamin A, PUFAs, EPA and DHA. Effects were monitored on plasma lipids, lipid peroxidation products (MDA) and the activities of antioxidant enzymes, glutathione peroxidase (GSHPx) and catalase in heart, liver, kidney and lung of non-diabetic control and streptozotocin (STZ)-induced-diabetic rats. Two days after STZ-injection (55 mg kg(-1) i.p.), non-diabetic control and diabetic rats were divided randomly into two groups as untreated or treated with CLO (0.5 ml kg(-1) rat per day) for 12 weeks. Plasma glucose, triacylglycerol and cholesterol concentrations were significantly elevated in 12-week untreated-diabetic animals; CLO treatment almost completely prevented these abnormalities in triacylglycerol and cholesterol, but hyperglycaemia was partially controlled. CLO also provided better weight gain in diabetic animals. In untreated diabetic rats, MDA markedly increased in aorta, heart and liver but was not significantly changed in kidney and lung. This was accompanied by a significant increase in both GSHPx and catalase enzyme activities in aorta, heart, and liver of diabetic rats. In kidney and lung, diabetes resulted in reduced catalase while GSHPx was significantly activated. In aorta, heart, and liver, diabetes-induced changes in MDA were entirely prevented by CLO treatment. In the tissues of CLO-treated diabetic animals, GSHPx activity paralleled those of control animals. CLO treatment also caused significant improvements in catalase activities in every tissue of diabetic rats, but failed to affect MDA and antioxidant activity in control animals. The current study suggests that the treatment of diabetic rats with CLO provides better control of glucose and lipid metabolism, allows recovery of normal growth rate, prevents oxidative/peroxidative stress and ameliorates endogenous antioxidant enzyme activities in various tissues. Because CLO contains a plethora of beneficial compounds together, its use for the management of diabetes-induced complications may provide important advantages. 相似文献