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Merck
CN

G5893

含极微量有机物的 Gamborg′s B-5 基本培养基

fine powder, suitable for plant cell culture

别名:

B-5基础培养基, 基础培养基, 必需有机物培养基

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NACRES:
NA.72
UNSPSC Code:
12352207
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产品名称

含极微量有机物的 Gamborg′s B-5 基本培养基, fine powder, suitable for plant cell culture

form

fine powder

technique(s)

cell culture | plant: suitable

application(s)

agriculture

storage temp.

2-8°C

Quality Level

Application

Gamborg′s B-5植物组织基础培养基(含微量有机物)还用于:
  • 作为小白菜(Brassica rapa)组织液体培养基组分
  • 作为愈伤诱导培养基组分,培养拟南芥心磷脂突变幼苗
  • 配成固体培养基,用于拟南芥种子发芽

General description

Gamborg′s B-5基础培养基是一种有效的植物营养混合物。
Gamborg′B-5培养基可以完全培养基(G5893)进行购买或通过从Vitamin 1000x(G1019)和Basal Salt混合物(G5768)等化学品储备物进行复溶而得。使用Gamborg′B-5(B5)培养基用于植物细胞系和组织的体外培养,如墨西哥红豆杉大壶藓白亚麻赤桉。Gamborg′B-5培养基已被用于培养番荔枝愈伤组织。

Preparation Note

含有Gamborg, et al.(1968)所述的大量、微量营养素和维生素。

培养基配方
配制成每升培养基含 3.2 克粉末。

pictograms

Flame over circle

signalword

Warning

hcodes

Hazard Classifications

Ox. Sol. 3

存储类别

5.1B - Oxidizing hazardous materials

wgk

WGK 1

flash_point_f

Not applicable

flash_point_c

Not applicable

法规信息

动植物来源培养基
危险化学品
此项目有

历史批次信息供参考:

分析证书(COA)

Lot/Batch Number

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Jakob Petereit et al.
Frontiers in plant science, 8, 72-72 (2017-02-24)
In eukaryotes the presence of the dimeric phospholipid cardiolipin (CL) is limited to the mitochondrial membranes. It resides predominantly in the inner membrane where it interacts with components of the mitochondrial electron transfer chain. CL deficiency has previously been shown
Experiments in Plant Tissue Culture (1985)
Establishment of Hairy Root Cultures for the Production of Biopharmaceuticals and Optimization of Methods for Recombinant Protein Secretion in the Culture Medium
Habitation (Elmsford, N.Y.), 153-173 (2020)
Leigh Mickelson-Young et al.
Journal of experimental botany, 67(21), 6077-6087 (2016-11-05)
The duration of the DNA synthesis stage (S phase) of the cell cycle is fundamental in our understanding of cell cycle kinetics, cell proliferation, and DNA replication timing programs. Most S-phase duration estimates that exist for plants are based on
RNAi-mediated down-regulation of DCL1 and AGO1 induces developmental changes in resynthesized Arabidopsis allotetraploids
Lackey E, et al.
The New phytologist, 186(1), 207-215 (2010)

商品

Classical plant tissue culture media developed years ago by pioneers such as Murashige, Skoog, Gamborg, and others still play a vital role in plant tissue culture research today.

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