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Merck

M5524

Murashige and Skoog Basal Salt Mixture (MS)

powder, suitable for plant cell culture

Synonyme(s) :

MS Basal Salts, MS0 Basal Salts, MSO Basal Salts

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A propos de cet article

NACRES:
NA.72
UNSPSC Code:
12352207
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Nom du produit

Murashige and Skoog Basal Salt Mixture (MS), powder, suitable for plant cell culture

form

powder

technique(s)

cell culture | plant: suitable

application(s)

agriculture

shipped in

ambient

storage temp.

2-8°C

Quality Level

Application

Murashige and Skoog Basal Salt Mixture (MS) has been used to support the growth and regeneration of transformed tobacco cells. It has also been used as a growth medium for germination of Arabidopsis thaliana (Col-0) seeds.

General description

Murashige and Skoog medium is a widely used plant tissue culture growth medium. M&S Basal Medium contains macronutrients that include high levels of nitrate and organic additives such as agar, sugars, vitamins and growth regulators. Important growth regulators frequently added to M&S include IAA (auxin/morphogen) and Kinetin (cytokinin/cell division promoter).

Other Notes

Storage
Powdered media are extremely hygroscopic and must be protected from atmospheric moisture. If possible the entire contents of each package should be used immediately after opening.

Store dry medium in a desiccator at 0-5 °C.

Deterioration of powdered medium may be recognized by: 1) color change; 2) granulation, clumping, or particulate matter throughout the powder; 3) insolubility; 4) pH change; or 5) inability to promote growth when properly used.

Media Preparation

Preparation Note

Formulated to contain 4.3 grams of powder per liter of medium.
Murashige and Skoog medium can be reconstituted from powder or by combining products that are major components of complete M&S medium, such as macronutrient mixtures and vitamin mixtures. Murashige and Skoog Salt mixture (M5524) contains the macronutrients and micronutrients of the original classic formulation. It can be combined with M&S vitamins or Gamborg′s vitamins and supplemented with sucrose, agar, auxins (IAA) and cytokinins (Kinetin) to generate a complete medium for growth plant tissue culture.
With the macro- and micronutrients as described by Murashige and Skoog (1962).

Media Formulation

pictograms

Flame over circleExclamation mark

signalword

Warning

hcodes

Hazard Classifications

Eye Irrit. 2 - Ox. Sol. 3

Classe de stockage

5.1B - Oxidizing hazardous materials

wgk

WGK 1

flash_point_f

Not applicable

flash_point_c

Not applicable


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Consulter la Bibliothèque de documents

Long Xiao et al.
BMC plant biology, 20(1), 292-292 (2020-06-27)
Starch is synthesized during daylight for temporary storage in leaves and then degraded during the subsequent night to support plant growth and development. Impairment of starch degradation leads to stunted growth, even senescence and death. The nuclear pore complex is
Edith Muñoz-Parra et al.
Plant, cell & environment, 40(9), 1887-1899 (2017-05-31)
Transcriptional regulation of gene expression influences plant growth, environmental interactions and plant-plant communication. Here, we report that population density is a key factor for plant productivity and a major root architectural determinant in Arabidopsis thaliana. When grown in soil at
Joel Colchado-López et al.
Plants (Basel, Switzerland), 8(7) (2019-07-25)
Root architecture is a complex structure that comprises multiple traits of the root phenotype. Novel platforms and models have been developed to better understand root architecture. In this methods paper, we introduce a novel allometric model, named rhizochron index (m)
Sarah Reisinger et al.
International journal of phytoremediation, 10(5), 440-454 (2009-03-06)
The overexpression of either gamma-glutamylcysteine synthetase (gamma-ECS) or glutathione synthetase (GS) in Brassica juncea transgenics was shown previously to result in higher accumulation of glutathione (GSH) and phytochelatins (PCs), as well as enhanced Cd tolerance and accumulation. The present study
A gene encoding scots pine antimicrobial protein Sp-AMP2 (PR-19) confers increased tolerance against Botrytis cinerea in transgenic tobacco
Jaber E, et al.
Forests, 9(1), 10-10 (2017)

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