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排序方式: 共有74条查询结果,搜索用时 109 毫秒
1.
旨在调查川西北牦牛哺乳动物正呼肠孤病毒(MRV)的感染情况并分离病毒。采用RT-PCR方法,对采自川西北15个牧场的72份牦牛腹泻粪便样本和其中5个牧场的15份腹泻牦牛血清样本进行MRV检测,阳性样本进一步用分型PCR确定其血清型。结果显示,粪便样本中MRV检出率为20.83%(15/72),血清2型的比例为60%(9/15);血清样本中MRV检出率为40%(6/15),血清2型的比例为83.33%(5/6);未检测到其他血清型。成功地从腹泻粪便中分离到1株MRV血清2型毒株(TCID50为4×10-8.56·mL-1),并获得长度为23 587 bp的分离株全基因组,该分离株与中国猪源毒株的遗传关系最近;与GenBank中所有的MRV S1基因相比,该分离株有4个独特的氨基酸突变。本研究从牦牛中检测到MRV,并分离到1株牛源MRV血清2型毒株,为进一步研究MRV血清2型生物学特性奠定了基础。 相似文献
2.
影响体细胞核移植效率的因素 总被引:2,自引:0,他引:2
哺乳动物体细胞核移植 (克隆 )是近年来迅速发展起来的一项新技术 ,对濒危动物保护、优良种畜快速扩群以及核质关系的研究、药物试验等诸多领域都具有重大意义。但体细胞核移植是一项程序繁杂的工作 ,每一步操作所采用的试剂、材料和方案等都会影响到核移植效率 ,因而其影响因素十分众多。文章根据目前已有资料 ,论述了卵母细胞来源、卵母细胞与供体细胞的胞质容量、卵母细胞的去核方案、体细胞供体动物的年龄、供体细胞的组织来源与传代次数及供体细胞的冷藏、冷冻和所处的细胞周期阶段对核移植效率的影响。另外 ,对重组胚的融合 -激活方案、核移植方案及重构胚的培养方案对核移植效率的影响也作了简要论述。 相似文献
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Several authors have suggested that edible plants could avoid herbivory by mimicking olfactory cues of toxic plants. However, very few studies have been carried out to test this hypothesis. The aims of the present study were to identify the volatiles of three clover species and to test whether a species lacking chemical defences, such as red clover, could avoid being grazed by rabbits by mimicking the volatiles of the cyanogenic white clover. Two main volatiles were identified in all three clover species, and a further two volatiles were present in white clover only. Rabbits presented with a choice between white clover, red clover and red clover sprayed with white clover extract ate significantly more red clover than white or white-flavoured red clover. The results suggest that the volatiles of toxic plants could be used and exploited as a source of natural, safe and effective repellents to control the impact of pest herbivores on plants. 相似文献
5.
为了研究卡那霉素抗性(KanR)基因能否在哺乳动物细胞中表达以及用含相同抗性基因重组质粒防治奶牛乳腺炎的安全性,用PCR从重组质粒p215C3LYZ中扩增得KanR基因,将其克隆入原核表达载体pQE-31,用含卡那霉素(Kan)琼脂平板筛选得KanR重组菌,经IPTG诱导成功表达了预期大小的Kan抗性融合蛋白;用纯化的重组蛋白免疫小鼠,获得了Kan抗性蛋白抗血清,经Western blotting证明免疫血清特异性良好;分别用重组质粒pQE-Kan和p215C3LYZ转染COS-1细胞,在不含抗生素培养液中培养后分别收集细胞上清和细胞裂解物;将转染细胞上清分为添加和不加Kan组,接种Kan敏感菌DH5α大肠杆菌,培养物的OD600检测结果显示,添加组的指示菌生长被抑制,转染细胞上清中无Kan抗性蛋白表达;以Kan抗性蛋白免疫血清进行的Western blotting结果显示,转染细胞内无Kan抗性蛋白表达;将p215C3LYZ注射奶牛乳腺,用脱脂和浓缩奶样进行Western blotting检测,结果显示试验牛乳中也无Kan抗性蛋白表达。这些试验结果提示,来源于原核大肠杆菌的KanR基因启动子在动物细胞中无转录活性,乳腺注射含KanR基因的重组质粒不会表达对奶牛和人体有害的Kan抗性蛋白。 相似文献
6.
Duchêne S Audouin E Crochet S Duclos MJ Dupont J Tesseraud S 《Domestic animal endocrinology》2008,34(1):63-73
In mammals, insulin regulates S6K1, a key enzyme involved in the control of protein synthesis, via the well-documented phosphoinositide-3'kinase (PI3K) pathway. Conversely, S6K1 is activated by insulin in avian muscle despite the relative insulin insensitivity of the PI3K pathway in this tissue. Mitogen-activated protein kinase (MAPK) cascade is another insulin sensitive pathway. The aim of this study was to explore the potential involvement of the ERK1/2 MAPK pathway in the control of p70 S6 kinase (S6K1) in avian species. Firstly, we characterized ERK1/2 MAPK in various chicken tissues. ERK2 was the only isoform detected in avian species whatever the tissue studied. We also showed that ERK2 is activated in vivo by insulin in chicken muscle. The regulation and the role of ERK2 in insulin signaling were next investigated in chicken hepatoma cells (LMH) and primary myoblasts. Insulin stimulation led to ERK2 and S6K1 phosphorylation, and concomitantly increased kinase activity. U0126, an inhibitor of the ERK MAPK pathway, completely abolished insulin-induced S6K1 phosphorylation and activity in chicken myoblasts, whereas its effect was only partial in LMH cells. In conclusion, these results show that ERK1/2 MAPK is involved in the control of S6K1 by insulin in chicken cells, particularly myoblasts. 相似文献
7.
Suriya R Hassan L Omar AR Aini I Tan CG Lim YS Kamaruddin MI 《Zoonoses and public health》2008,55(7):342-351
Following a series of H5N1 cases in chickens and birds in a few states in Malaysia, there was much interest in the influenza A viruses subtypes that circulate among the local pig populations. Pigs may act as a mixing vessel for avian and mammal influenza viruses, resulting in new reassorted viruses. This study investigated the presence of antibodies against influenza H1N1 and H3N2 viruses in pigs from Peninsular Malaysia using Herdcheck Swine Influenza H1N1 and H3N2 Antibody Test Kits. At the same time, the presence of influenza virus was examined from the nasal swabs of seropositive pigs by virus isolation and real time RT-PCR. The list of pig farms was obtained from the headquarters of the Department of Veterinary Services, Malaysia, and pig herds were selected randomly from six of 11 states in Peninsular Malaysia. A total of 727 serum and nasal swab samples were collected from 4- to 6-month-old pigs between May and August 2005. By ELISA, the seroprevalences of swine influenza H1N1 and H3N2 among pigs were 12.2% and 12.1% respectively. Seropositivity for either of the virus subtypes was detected in less than half of the 41 sampled farms (41.4%). Combination of both subtypes was detected in 4% of all pigs and in 22% of sampled farms. However, no virus or viral nucleic acid was detected from nasal samples. This study identified that the seropositivity of pigs to H1N1 and H3N2 based on ELISA was significantly associated with factors such as size of farm, importation or purchase of pigs, proximity of farm to other pig farms and the presence of mammalian pets within the farm. 相似文献
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Colm J. Reid Samantha Donnelly David J. Marlin Jane A. Irwin 《Research in veterinary science》2009,87(1):20-25
Recurrent airway obstruction (RAO) is a chronic inflammatory condition in equine lung, which may share a common immunological basis with human asthma, in which dysregulated Th2 responses occur. Mammals express chitinases and chitinase-like proteins, two of which are active enzymes, chitotriosidase and acidic mammalian chitinase (AMCase). Both enzymes are upregulated in a range of inflammatory conditions, including asthma. We investigated the activity of chitinase in bronchoalveolar lavage fluid from horses with and without RAO in response to organic dust challenges. No significant differences were found in activity, although in one study RAO animals had elevated chitinase activity that fell short of statistical significance. The pH optimum and pH lability of the activity was consistent with the presence of chitotriosidase. RT-PCR amplification of the mRNA encoding chitotriosidase and AMCase in normal equine lung showed that chitotriosidase, but not AMCase, is expressed in trachea, bronchi, and peripheral lung tissue. The gene for chitotriosidase was identified from the Equus caballus (horse) genome 1.1 database and its similarity to the same genes from other species was determined. The results of this study indicate that the involvement of chitotriosidase in RAO is uncertain. 相似文献
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