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Morganella morganii摩氏摩根菌PCR试剂盒

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  • KA&M BIO
  • 国产
  • BFS1176
  • 2025年07月12日
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      99

    • 供应商

      上海圻明生物

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      50次

    Morganella morganii摩氏摩根菌PCR试剂盒上海圻明生物优势供应。更多产品资料欢迎免费咨询。

    One of the many important uses of PCR technology is that it can be used to label DNA probes with high specific activity. PCR technology has high specificity, and can synthesize probe DNA fragments in quantities within 1~2h if [α-32P]dNTP or other markers are added to the substrate
    dNTPs, the probe DNA can be well labeled during DNA synthesis, and the incorporation rate of the marker can be as high as 70%~80%. Therefore, PCR labeling technology is particularly suitable for large-scale detection and non-radiolabeling. The disadvantage of this method is that a specific pair of PCR primers is synthesized.
    Labeling can also be achieved by using small fragments prepared from probe DNA as primers.

    Solution preparation

    1. Prepare a stock solution

    Unless otherwise stated, all unused stock solutions should be divided into disposable aliquots and stored at -20 °C after preparation. Avoid repeated freeze-thaw cycles.
    1.1* Acid Stock Solution (125X):
    Add 20 μL DMSO to *ate (component B) to make a 125X* acid stock solution. 

    2. Prepare standard solutions

    *Salt standard solution
    Add 50 μL of 1 mM KH2PO4 (Component C) to 950 μL of deionized water or enzyme reaction buffer to give a 50 μM * saline standard solution (PS7). A 50 μM * saline standard solution (PS7) was taken and serially diluted 1:2 to obtain a serially diluted phosphate standard with deionized water or enzyme reaction buffer.

    3. Prepare a working solution

    Add 20 μL of 125X* stock solution to 2.5 mL of sterile H2O and mix well to make a working solution of *salt. Avoid potential Pi contamination. Note: Avoid direct exposure of *salts (component B) to light. Due to the high sensitivity of this assay to Pi, it is extremely important to use Pi-free labware and reagents.

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    相关实验
    • Use of the Morganella morganii phoC Gene as Reporter in Bacterial and Yeast Hosts

      In this chapter are described the applications of the Morganella morganii phoC gene, encoding a molecular class A nonspecific phosphatase, as a reporter both in prokaryotic (Escherichia coli ) and in eukaryotic (Saccharomyces cerevisiae

    • 幽门螺杆菌的免疫学研究

      ,证明纯化的尿素酶所占Hp菌体粗提取物可溶性蛋白5.9%,Mr为550 000,由两个Mr分别为66 000和29 500的亚单位组成,两者在分子中的比例约为1:1,6对这样的亚单位构成一个基本的酶分子。并推测Hp强大的尿素酶活力是由于大量的尿素酶分子作用的结果,而不是单一酶分子活性特别高。   N-末端分析显示29 500亚单位氨基酸顺序上同刀豆尿素酶亚单位的氨基末端以及奇异变形杆菌和摩氏摩根菌Morganella morganii)尿素酶3个亚单位中最小者具有很高的相似性。66

    • 3.幽门螺杆菌的免疫学研究--幽门螺杆菌的免疫学研究进展

      基本的酶分子。并推测Hp强大的尿素酶活力是由于大量的尿素酶分子作用的结果,而不是单一酶分子活性特别高。 N-末端分析显示29 500亚单位氨基酸顺序上同刀豆尿素酶亚单位的氨基末端以及奇异变形杆菌和摩氏摩根菌Morganella morganii)尿素酶3个亚单位中最小者具有很高的相似性。66 000亚单位同奇异变形杆菌、摩氏摩根菌和产生气克雷白杆菌尿素酶3个亚单位中最大者具有相似的内顺序(氨基酸271~285)。再者,摩氏摩根菌和刀豆的尿素酶亚单位可被Hp66000亚单位的特异性抗血清

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