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经验公式(希尔记法):
C15H21N5O5
化学文摘社编号:
分子量:
351.36
UNSPSC Code:
10171502
NACRES:
NA.72
PubChem Substance ID:
MDL number:
Beilstein/REAXYS Number:
5460894
Assay:
~95%
Biological source:
synthetic (organic)
Form:
powder
Solubility:
glacial acetic acid: 50 mg/mL, clear, colorless to faintly yellow
Storage temp.:
−20°C
产品名称
反式-玉米素核苷, suitable for plant cell culture, BioReagent, ~95%
InChI
1S/C15H21N5O5/c1-8(4-21)2-3-16-13-10-14(18-6-17-13)20(7-19-10)15-12(24)11(23)9(5-22)25-15/h2,6-7,9,11-12,15,21-24H,3-5H2,1H3,(H,16,17,18)/b8-2+/t9-,11-,12-,15-/m1/s1
SMILES string
C\C(CO)=C/CNc1ncnc2n(cnc12)[C@@H]3O[C@H](CO)[C@@H](O)[C@H]3O
InChI key
GOSWTRUMMSCNCW-HNNGNKQASA-N
biological source
synthetic (organic)
product line
BioReagent
assay
~95%
form
powder
technique(s)
cell culture | plant: suitable
solubility
glacial acetic acid: 50 mg/mL, clear, colorless to faintly yellow
application(s)
agriculture
storage temp.
−20°C
Quality Level
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Application
反式-玉米素-核糖核苷已用于处理从毛细血管中回收的晶体,从而进行结晶。它还被用作Murashige和Skoog(MS)培养基的补充剂,配制芽诱导培养基。
Biochem/physiol Actions
反式-玉米素-核糖核苷是一种细胞分裂素前体,是木质部血管中重要的长距信号传导形式。其通过负调节不定根形成,可以作为根木质部树液的抑制因子。
Koenig RL; Morris RO; Polacco JC
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)
Systemic transport of trans-zeatin and its precursor have differing roles in Arabidopsis shoots
Osugi A, et al.
Nature plants, 3(8), 17112-17112 (2017)
An efficient marker-free vector for clean gene transfer into plants
Xin C and Guo J
African Journal of Biotechnology, 11(16), 3751-3757 (2012)
A trans-zeatin riboside in root xylem sap negatively regulates adventitious root formation on cucumber hypocotyls
Kuroha T, et al.
Journal of Experimental Botany, 53(378), 2193-2200 (2002)
Structure of mistletoe lectin I from Viscum album in complex with the phytohormone zeatin
Meyer A, et al.
Biochimica et Biophysica Acta (BBA)-Proteins and Proteomics, 1784(11), 1590-1595 (2008)
Jianchang Yang et al.
Planta, 228(1), 137-149 (2008-03-15)
Early-flowered superior spikelets usually exhibit a faster grain filling rate and heavier grain weight than late-flowered inferior spikelets in rice (Oryza sativa L.). But the intrinsic factors responsible for the variations between the two types of spikelets are unclear. This
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