Millennium™ RNA 标记物
Invitrogen17万+抗体限时买二赠一,靶点广,灵活用!
Millennium™ RNA 标记物
Invitrogen™

Millennium™ RNA 标记物

Ambion® RNA Millennium™ 标记物设计用于测定 0.5 至 9 kb 的单链 RNA了解更多信息
Have Questions?
货号数量
AM715050 μL
货号 AM7150
价格(CNY)
1,641.00
飞享价
Ends: 31-Dec-2025
3,758.00
共减 2,117.00 (56%)
Each
添加至购物车
数量:
50 μL
请求批量或定制报价
价格(CNY)
1,641.00
飞享价
Ends: 31-Dec-2025
3,758.00
共减 2,117.00 (56%)
Each
添加至购物车
Ambion® RNA Millennium™ 标记物设计用于测定 0.5 至 9 kb 的单链 RNA 转录物的大小,可用于任何Northern印迹杂交方案。为 25 Northern印迹杂交 凝胶泳道提供了足够的标记物。它们由 10 不同 RNA 转录本的混合物组成,易于记忆大小:0.5、1、1.5、2、2.5、3、4、5、6 和 9 千碱基。在电泳过程中或之后,可以对这些标记物用溴化乙锭染色。由于其数量和间距均匀,这些标记物是构建精确标准曲线、确定 mRNA 大小的理想方法。它们还提供了能够简单验证、比较已知条带的基准标度。使用溴化乙锭染色,1–2 μg (1–2 μg) 的 RNA Millennium™ 标记物可在 1% 变性琼脂糖凝胶上产生 10 个明显的条带。所有标记物批次均经过严格的核酸酶检测,并在 37°C 条件下稳定过夜。
仅供科研使用。不可用于诊断程序。
规格
最大浓度1 μg/μl
凝胶兼容性含甲醛的凝胶,变性琼脂糖凝胶
产品线Ambion™、Millennium 标记物™
产品类型RNA 标志物
数量50 μL
即用型
运输条件干冰
大小范围0.5 至 9 kb
Unit SizeEach
内容与储存
在–70°C 以下储存。

常见问题解答 (FAQ)

Why are my RNA bands not sharp?

(1) RNA was not completely denatured. Electrophorese RNA under denaturing conditions. Use urea, formamide or formaldehyde gels, or glyoxal-treated RNA.

(2) For glyoxal-treated RNA, a buffer gradient formed during electrophoresis. Recirculate buffer during electrophoresis to prevent gradient formation.

What is the cause of extra bands when using an RNA ladder?

Extra bands appear in RNA Ladders for a few reasons:

(1) RNA was not completely denatured. Electrophorese RNA under denaturing conditions. Use urea, formamide or formaldehyde gels, or glyoxal-treated RNA.

(2) Extra bands may be a result of using formaldehyde that is not fresh; the pH becomes acidic in older formaldehyde. In our hands, when fresh formaldehyde with neutral pH was used, the extra bands disappeared.

(3) Alternatively, if the extra bands appear after hybridization, it could be that the gel purified probe contains contaminating vector DNA (pUC or pBR) that hybridizes to RNA Ladder template DNA.

Why are some of the RNA marker bands not visible?

Missing RNA bands may be due to:

(1) A small amount of RNA diffused out of gel during extended destaining. Minimize destaining time. Destaining for 2 hours is sufficient for most applications.

(2) RNA bands of similar molecular size were not resolved. Use the correct gel type and denaturing conditions.

Why are the RNA bands disappearing when looking and photographing a gel on a UV box?

RNA was exposed to UV light for extended periods of time. Minimize exposure to UV light. Stain and destain gels in the dark and photograph the gel immediately.

Why are the RNA marker bands so faint?

Many factors could affect the intensity of the bands as summarized below.

(1) Insufficient RNA was loaded on the gel. Increase the amount of RNA loaded.

(2) RNA was degraded. Avoid nuclease contamination of the RNA standards. Store RNA at -70 degrees C in formamide. Deionize formamide and glyoxal, store aliquots at -20 degrees C.

(3) RNA was electrophoresed off the gel. Electrophorese the gel for less time, at a lower voltage, or in a higher percentage gel.

(4) For ethidium bromide-stained RNA, improper UV light source was used. Use short-wavelength (254 nm) UV light. For ethidium bromide-stained RNA, improper staining and destaining conditions were used. Stain in the dark with 5 mg/mL ethidium bromide. For thin (3.2 mm) formaldehyde gels, stain 5 min and destain 1 h. For thicker gels, stain 30 min and destain 2 hr. To reduce background staining, use 0.66 M formaldehyde instead of 2.2 M formaldehyde in gels. For glyoxal RNA gels, stain and destain in 0.5 M ammonium acetate to help reduce background staining.

(5) For radiolabeled RNA, an improper labeling method was used.