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Barley Yellow Dwarf Virus(BYDV

)大麦黄矮病毒RT-PCR试剂盒
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  • KA&M BIO
  • 国产
  • BFS0983
  • 2025年07月14日
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    • 保存条件

      低温

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    • 库存

      99

    • 供应商

      上海圻明生物

    • 规格

      50次

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    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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    图标文献和实验
    相关实验
    • Luteovirus Isolation and RNA Extraction

      Most known luteoviruses can be placed in one of two subgroups as defined by serological relationships and genome organization (ref. 1 ; see Fig. 1 ). Subgroup I is represented by three strains of barley yellow dwarf virus (BYDV-PAV, BYDV-MAV

    • Analysis of Population Structures of Viral Isolates using Single StrandConformation Polymorphism (SSCP) Method

      , electrophoresis conditions, and staining procedures), are described using a region (500 bases) of the barley yellow dwarf virus-PAV (BYDV-PAV, Luteovirus ) genome as molecular target.

    • 转基因麦类作物:未来前景

      最近,报道了两例关于转基因小麦获得抗大麦病毒BYDV) 的研究,一 例是表达由大麦病毒病( BYDV)  GPV 菌株的双链复制酶( dsRNA) 为茎、外壳蛋白基因同源反义 RNA 为环构建的复合发夹 RNA (hpRNA) 结构 [35],另一例是表达裂殖酵母(SciizosaccAaromyces)的 pacl 基因 [36]。 4.3.3 耐非生物逆境 与抗病相比,耐非生物逆境研究的报道较少。已报道的有甘露醇积累转基因小麦耐盐和水胁迫 [37],以及转大麦 

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