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经验公式(希尔记法):
C6H9NaO7
化学文摘社编号:
分子量:
216.12
NACRES:
NA.22
PubChem Substance ID:
UNSPSC Code:
12352201
MDL number:
产品名称
D-半乳糖醛酸 钠盐, ≥95.0% (T)
InChI
1S/C6H10O7.Na/c7-1-2(8)4(5(10)11)13-6(12)3(1)9;/h1-4,6-9,12H,(H,10,11);/q;+1/p-1/t1-,2+,3+,4-,6?;/m0./s1
SMILES string
[Na+].OC1O[C@@H]([C@H](O)[C@H](O)[C@H]1O)C([O-])=O
InChI key
MSXHSNHNTORCAW-KSSASCOMSA-M
biological source
plant
assay
≥95.0% (T)
form
powder or crystals
optical activity
[α]/D +36.5±2°, 5 hr, c = 10% in H2O
Quality Level
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存储类别
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
Eyeshields, Gloves, type N95 (US)
Chatchaya Onumpai et al.
Applied and environmental microbiology, 77(16), 5747-5754 (2011-07-05)
To evaluate the fermentation properties of oligosaccharides derived from pectins and their parent polysaccharides, a 5-ml-working-volume, pH- and temperature-controlled fermentor was tested. Six pectic oligosaccharides representing specific substructures found within pectins were prepared. These consisted of oligogalacturonides (average degrees of
S Rasul et al.
Plant, cell & environment, 35(8), 1483-1499 (2012-03-08)
Nitric oxide (NO) regulates a wide range of plant processes from development to environmental adaptation. In this study, we investigated the production and/or function of NO in Arabidopsis thaliana leaf discs and plants elicited by oligogalacturonides (OGs) and challenged with
Hayato Tokumoto et al.
Bioresource technology, 126, 13-17 (2012-10-18)
High-loading glycerol containing slight amounts of five different monosaccharides was inoculated with seed sludge obtained from a methane fermentation reactor. The use of different monosaccharides as fermentation promoters resulted in changes in fermentation types; in particular, glucose induced the formation
Nina Elisabeth Nagy et al.
Planta, 236(4), 1125-1133 (2012-05-31)
Heterobasidion parviporum, a common pathogenic white-rot fungus in managed Norway spruce forests in northern and central Europe, causes extensive decay columns within stem heartwood of the host tree. Infected trees combat the lateral spread of decay by bordering the heartwood
Zafer Dallal Bashi et al.
Canadian journal of microbiology, 58(5), 605-616 (2012-04-25)
Sclerotinia sclerotiorum releases hydrolytic enzymes that sequentially degrade the plant cuticle, middle lamellae, and primary and secondary cell walls. The cuticle was found to be a barrier to S. sclerotiorum infection, as leaves stripped of epicuticular wax were more rapidly
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