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Key Documents

Y1251

Millipore

酵母氮源基础,不含氨基酸和硫酸铵

suitable for microbiology, NutriSelect® Basic

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About This Item

分類程式碼代碼:
41171606
NACRES:
NA.85

無菌

non-sterile

品質等級

形狀

powder

包裝

poly bottle of 1 kg
poly bottle of 500 g

製造商/商標名

NutriSelect® Basic

溶解度

water: soluble 67 mg/mL

應用

clinical testing
food and beverages
life science and biopharma

microbiology

適合性

Candida spp.
Pichia spp.
Saccharomyces spp.
Zygosaccharomyces spp.
molds
yeasts

一般說明

酵母氮源基础/Yeast Nitrogen Base(不含氨基酸和硫酸铵)推荐用于根据酵母的碳源和氮源需求进行菌种分类。培养基包含酵母生长必需的所有营养素,但不含氨基酸、组氨酸、甲硫氨酸和色氨酸,以及硫酸铵。根据《临床微生物学手册》所述,培养时还需要添加氮源和碳源。

應用

酵母氮源基础/YNB(不含氨基酸和硫酸铵)用于通过碳源和氮源利用对酵母进行分类。除氨基酸、氮源和碳水化合物之外,包含酵母生长的所有必需营养素。需要添加氮源和碳源。

成分

成分
生物素,2 μg/L
泛酸钙,400 μg/L
叶酸,2 μg/L
烟酸, 400 μg/L
对氨基苯甲酸,200 μg/L
盐酸吡哆醇,400 μg/L
核黄素,200 μg/L
盐酸硫胺素,400 μg/L
肌醇,2 mg/L
硼酸,500 μg/L
硫酸铜,40 μg/L
碘化钾,100 μg/L
氯化铁,200 μg/L
硫酸锰,400 μg/L
钼酸钠,200 μg/L
硫酸锌,400 μg/L
磷酸二氢钾,1 g/L
硫酸镁,0.5 g/L
氯化钠,0.1 g/L
氯化钙,0.1 g/L

準備報告

  • 将1.7 g不含氨基酸和硫酸铵的酵母氮源混悬于冷却的100 mL蒸馏水中,制得10×储备溶液。包含所需的氮和碳源。
  • 必要时可加温溶解,然后过滤灭菌。
  • 将10×储备溶液储存于2-8°C。使用时,在无菌条件下用无菌蒸馏水1:10稀释。

腳註

我们现提供两种类型的培养基:GranuCult®优质颗粒状培养基和NutriSelect®高性价比粉末状培养基,满足用户不同层次的需求。
商标后的品级称号basic(基础)、plus(加强)或prime(特级)代表产品的不同质控水平,从基础的质控到标准质控加强版到全面合规的特级质控水平。

法律資訊

GRANUCULT is a registered trademark of Merck KGaA, Darmstadt, Germany
NutriSelect is a registered trademark of Merck KGaA, Darmstadt, Germany

僅套裝組件

產品號碼
描述

  • KH2PO4 1 g/L

  • MgSO4 .5 g/L

  • NaCl .1 g/L

  • CaCl2 .1 g/L

  • Inositol 2 mg/L

儲存類別代碼

11 - Combustible Solids

水污染物質分類(WGK)

WGK 3

閃點(°F)

Not applicable

閃點(°C)

Not applicable

個人防護裝備

Eyeshields, Gloves, type N95 (US)


分析證明 (COA)

輸入產品批次/批號來搜索 分析證明 (COA)。在產品’s標籤上找到批次和批號,寫有 ‘Lot’或‘Batch’.。

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您可以在文件庫中找到最近購買的產品相關文件。

存取文件庫

Xin Li et al.
Biotechnology reports (Amsterdam, Netherlands), 9, 53-56 (2016-01-22)
Economical biofuel production from plant biomass requires the conversion of both cellulose and hemicellulose in the plant cell wall. The best industrial fermentation organism, the yeast Saccharomyces cerevisiae, has been developed to utilize xylose by heterologously expressing either a xylose
Jia Jia Zhang et al.
Methods in enzymology, 621, 87-110 (2019-05-28)
Heterologous expression of natural product biosynthetic gene clusters (BGCs) is a robust approach not only to decipher biosynthetic logic behind natural product (NP) biosynthesis, but also to discover new chemicals from uncharacterized BGCs. This approach largely relies on techniques used
Michael Mülleder et al.
Cell, 167(2), 553-565 (2016-10-04)
Genome-metabolism interactions enable cell growth. To probe the extent of these interactions and delineate their functional contributions, we quantified the Saccharomyces amino acid metabolome and its response to systematic gene deletion. Over one-third of coding genes, in particular those important for chromatin dynamics
Xin Li et al.
eLife, 4 (2015-02-04)
Sustainable biofuel production from renewable biomass will require the efficient and complete use of all abundant sugars in the plant cell wall. Using the cellulolytic fungus Neurospora crassa as a model, we identified a xylodextrin transport and consumption pathway required
Ligia Acosta-Sampson et al.
The Journal of biological chemistry, 292(48), 19610-19627 (2017-10-04)
Targeting of most integral membrane proteins to the endoplasmic reticulum is controlled by the signal recognition particle, which recognizes a hydrophobic signal sequence near the protein N terminus. Proper folding of these proteins is monitored by the unfolded protein response

文章

Traditional methods are based morphology, staining methods, enzyme reactions (metabolism) and diverse media.

Traditional methods are based morphology, staining methods, enzyme reactions (metabolism) and diverse media.

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