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1.
拟果蝇钠离子通道基因克隆及其生物信息学分析   总被引:1,自引:0,他引:1  
本文采用RT-PCR技术克隆获得了拟果蝇Drosophila simulans电压门控钠离子通道基因序列,明确其典型特征,分析了进化关系,为拟果蝇抗性分子机理研究奠定基础。克隆得到拟果蝇钠离子通道开放阅读框(GenBank登录号为MT113357),长为6270 bp,编码2090个氨基酸。通过生物信息学分析,发现拟果蝇与黑腹果蝇Drosophila melanogaster钠离子通道基因相似度高达96.86%,与家蝇Musca domestica钠离子通道基因相似度达88.75%,在进化起源上与双翅目果蝇属昆虫有极高的相似度。所克隆出的序列符合昆虫钠离子通道的基本特征,具有DEKA模块和疏水性失活闸门MFM。获得三个选择性剪接(i、a、b)和17个RNA编辑。本文成功克隆拟果蝇钠离子通道基因,对拟果蝇钠离子通道基因进行分析,为研究其抗性机理奠定基础,为农业生产新型药剂的开发提供了新思路。  相似文献   
2.
为探讨有机氟化物和无机氟化物单一及联合暴露对斑马鱼(Danio rerio)肝脏的毒性效应,本研究将雄性斑马鱼随机分为对照组、氟化钠(NaF,无机氟)暴露组、全氟辛烷磺酸(PFOS,有机氟)暴露组、NaF+PFOS(无机氟及有机氟联合)暴露组,经15、30 d暴露试验后,检测了血液硝基蓝四氮唑(NBT)阳性细胞数及肝脏抗氧化酶和免疫相关酶活性,并观察了暴露对肝脏组织结构的影响。结果显示,暴露15 d后,NaF和PFOS单一暴露组NBT阳性细胞数以及过氧化氢酶(CAT)、碱性磷酸酶(AKP)活性均显著下降,而丙二醛(MDA)含量显著上升;暴露30 d后,NaF单一暴露组NBT阳性细胞数、超氧化物歧化酶(SOD)活性均显著下降,而MDA含量显著升高,联合暴露组酸性磷酸酶(ACP)、CAT活性较PFOS单一暴露组显著降低;而NaF+PFOS联合暴露15、30 d后均具有叠加效用。综上,NaF和PFOS单一及联合暴露均能对斑马鱼肝脏组织结构及抗氧化和免疫功能造成不同程度的毒性效应。本研究可为氟化物生态毒性效应的研究提供思路和研究基础。  相似文献   
3.
Routine gill swabbing is a non-destructive sampling method used for the downstream qPCR detection and quantitation of the pathogen Neoparamoeba perurans, a causative agent of amoebic gill disease (AGD). Three commercially available swabs were compared aiming their application for timelier AGD diagnosis (Calgiswab® (calcium alginate fibre-tipped), Isohelix® DNA buccal and cotton wool-tipped). Calcium alginate is soluble in most sodium salts, which potentially allows the total recovery of biological material, hence a better extraction of target organisms’ DNA. Thus, this study consisted of (a) an in vitro assessment involving spiking of the swabs with known amounts of amoebae and additional assessment of retrieval efficiency of amoebae from agar plates; (b) in vivo testing by swabbing of gill arches (second, third and fourth) of AGD-infected fish. Both in vitro and in vivo experiments identified an enhanced amoeba retrieval with Calgiswab® and Isohelix® swabs in comparison with cotton swabs. Additionally, the third and fourth gill arches presented significantly higher amoebic loads compared to the second gill arch. Results suggest that limiting routine gill swabbing to one or two arches, instead of all, could likely lead to reduced stress-related effects incurred by handling and sampling and a timelier diagnosis of AGD.  相似文献   
4.
Cadmium(Cd) is highly toxic to plants, animals, and humans. Limited information is available on the role of nitric oxide(NO)and/or 24-epibrassinolide(EBR) in response of plants to Cd stress. In this study, a hydroponic experiment was performed to investigate the effects of NO and/or EBR on peanut plants subjected to Cd stress(200 μmol L~(-1)) with sodium nitroprusside(SNP, an exogenous NO donor)(250 μmol L~(-1)) and/or EBR(0.1 μmol L~(-1)) addition. The results showed that Cd exposure inhibited plant growth, and this stress was alleviated by exogenous NO or EBR, and especially the combination of the two. Treatment with Cd inhibited the growth of peanut seedlings, decreased chlorophyll content, and significantly increased the Cd concentration in plants. Furthermore, the concentration of reactive oxygen species(ROS) markedly increased in peanut seedlings under Cd stress, resulting in the accumulation of malondialdehyde(MDA) and proline in leaves and roots. Under Cd stress, applications of SNP, EBR, and especially the two in combination significantly reduced the translocation of Cd from roots to leaves, increased the chlorophyll content, decreased the concentrations of ROS, MDA, and proline, and significantly enhanced the activities of superoxide dismutase(SOD), peroxidase(POD), and catalase(CAT) in peanut seedlings. Exogenous NO and/or EBR also stimulated the activities of nitrate reductase(NR)and nitric oxide synthase(NOS) and increased the contents of antioxidants, such as ascorbic acid(AsA) and reduced glutathione(GSH). Furthermore, exogenous NO and/or EBR enhanced Cd accumulation in the cell wall and thus decreased Cd distribution in the organelles in the roots. The concentrations of calcium(Ca), iron(Fe), magnesium(Mg), and zinc(Zn) were also regulated by exogenous NO or EBR, and especially by the two in combination. These results indicated that SNP and EBR, alone and particularly in combination, can mitigate the negative effects of Cd stress in peanut plants.  相似文献   
5.
Epithelial sodium channel (ENaC) is an ion channel widely distributed in various tissues and organs of human. It is composed of 3 homologous subunits and allows the flow of sodium ion across epithelial cells, maintain?ing water-salt balance in the cells. Recent studies show that abnormal expression or dysfunction of ENaC in the respiratory system affects water-salt balance, fluid transportation and cell mobility, and causes abnormal changes of the airway surface liquid level and impaired clearance. ENaC is closely related to the development of respiratory diseases, such as cystic fibrosis, asthma and chronic obstructive pulmonary disease. This article reviews the progress in ENaC structure, function and roles in related respiratory diseases in order to provide a reference for the treatment of the diseases.  相似文献   
6.
ObjectiveTo determine whether suction, lavage and instillation of sodium bicarbonate, following a gastro-oesophageal regurgitation event under general anaesthesia, would alter oesophageal pH to a greater degree than when lavage was not used.Study designProspective, randomised, clinical study.AnimalsA group of 22 client-owned dogs.MethodsDogs presenting with gastro-oesophageal regurgitation (GOReg) under general anaesthesia were randomised into groups: no lavage (G1) or lavage (G2). All dogs underwent oesophageal suctioning until no further regurgitant material was retrieved. Dogs in G2 had oesophageal lavage with tap water until the suctioned water was clear. All dogs then had 4.2% sodium bicarbonate (0.6 mL kg–1) instilled into the oesophagus. An oesophageal pH probe was placed to record pH immediately after: GOReg (T1), suctioning (T2), lavage of the oesophagus (T3; G2 only) and sodium bicarbonate instillation (T4). Categorical data were analysed using Fisher’s exact test, and continuous data were analysed using either the two-sample t-test or the Wilcoxon rank-sum test. Parametric data are reported as mean ± standard deviation and non-parametric data as median (interquartile range). A p value < 0.05 was considered significant.ResultsOesophageal pH was low in both groups immediately after GOReg [G1: 2.95 (2.20–4.18), G2: 3.29 (1.41–4.03)] but oesophageal pH was not significantly different between groups at T1, T2 and T4. Oesophageal lavage significantly increased pH but the overall change in pH following bicarbonate administration (T2–T4) was not significantly different between groups [G1: 3.16 ± 1.52, G2: 3.52 ± 1.47]. No adverse events following GOReg were recorded.Conclusions and clinical relevance:Both groups had similar and clinically important increases in oesophageal pH. Although oesophageal lavage increased pH, this did not affect the final oesophageal pH when sodium bicarbonate was instilled and therefore may be an unnecessary step.  相似文献   
7.
[目的]探究子宫内膜炎患牛唾液生物标志物特点,[方法]研究收集试验组子宫内膜炎患牛和对照组健康奶牛唾液,针对所选10种生物标志物使用相关试剂盒在自动生化分析仪上进行检测,并将所得数据进行对比分析。[结果]相比健康奶牛,子宫内膜炎患牛唾液生物标志物的升高项为α唾液淀粉酶、皮质醇、乳酸和尿酸,而腺苷脱氨酶、乙酰胆碱酯酶水平、pH值、钠钾比则下降明显。[结论]说明应激、炎症和氧化应激在患子宫内膜炎奶牛体内的存在,钠营养状况略受影响。  相似文献   
8.
文章旨在评估日粮钠水平及种类对肉鸡生长性能、胴体性状及血清矿物质水平的影响。试验选择平均初始体重一致的白羽肉仔鸡832只,随机分为8组,每组4个重复,每个重复26只鸡。试验日粮采用4×2因子设计,即日粮钠水平分别为1.5、2.4、3.3和4.2 g/kg,以小苏打和硫酸钠两种形式添加,试验共进行42 d。结果:1~10 d肉鸡的增重和采食量受钠盐水平及钠盐水平与种类交互作用的显著影响(P<0.05),在1~10 d时,硫酸钠组日增重和采食量最高(P<0.05)。同时,在整个试验期间(1~42 d),2.4 g/kg硫酸钠显著改善了增重(P<0.05)。随着钠水平的升高,血液pH表现为显著升高(P<0.05),硫酸钠组血液pH显著高于小苏打组(P<0.05),硫酸钠组腹脂占比较小苏打组显著提高2.23%(P<0.05)。4.2 g/kg钠水平组血清钠和钙浓度最高(P<0.05),3.3 g/kg钠水平组血清钾、氯和镁浓度最高(P<0.05)。与小苏打组相比,硫酸钠组血清钾水平显著降低0.33%(P<0.05),而血清钙浓度显著提高9.2%(P<0.05)。结论:日粮中钠以硫酸钠的形式添加2.4~3.3 g/kg可改善1~10 d肉鸡的生长性能,而在33~42 d时降低日粮钠水平可以使肉鸡获得最大的增重和采食量。  相似文献   
9.
采用杉木屑为原料,氢氧化钠为活化剂制备木质活性炭产品,探讨活化时间、活化温度、氢氧化钠浓度等工艺参数对木质活性炭的得率和吸附性能的影响。结果表明,随活化温度、氢氧化钠浓度和活化时间的增大,木质活性炭的得率呈不断下降的趋势,木质活性炭的吸附性能呈先上升后下降的趋势。较优的工艺条件为:活化温度850℃、活化时间1.0 h、氢氧化钠质量分数为2.5%,木质活性炭的碘吸附值为693.1 mg·g-1、亚甲基蓝吸附值为75 mg·g-1。  相似文献   
10.
NaCl溶液处理亚热带土壤水分特征曲线差异与模型优选   总被引:3,自引:0,他引:3  
胡传旺  王辉  武芸  卢佳宇  刘常 《农业机械学报》2018,49(4):290-296,329
携带大量盐分的低质水长期灌溉导致土壤存在极大的物理化学特性退化风险,为了探究盐分对土壤水分特征曲线影响的差异性,采用压力膜法对亚热带地区粘性潮土、沙性潮土、红壤、紫色土、水稻土等5种土壤进行室内测定,对比分析了各土壤在0、5、10、15 g/L等4个钠盐浓度水平下土壤水分特征曲线的差异,并利用RETC软件结合数理统计方法确定了各土壤不同钠盐浓度水平下相应的最优拟合模型。结果表明:钠盐处理均可提高各土壤的持水能力,且粘粒含量较高的土壤影响显著;钠盐处理减少了粘性潮土、沙性潮土和红壤的有效含水率,分别最大减少了40.8%、30.5%、31.5%,却提高了紫色土、水稻土有效含水率,分别最大提高了45.7%、28.9%。粘粒含量少或低浓度盐溶液处理的土壤水分特征曲线以BC模型拟合最优,而粘粒含量多且高浓度盐溶液处理的以DP-M模型拟合最优。  相似文献   
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