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(1,4)-beta-D-xylan degradation
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PWY-6717
3-hydroxypropanoate cycle
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PWY-5743
3-hydroxypropanoate/4-hydroxybutanate cycle
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PWY-5789
Amino sugar and nucleotide sugar metabolism
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Ascorbate and aldarate metabolism
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Biosynthesis of secondary metabolites
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C4 photosynthetic carbon assimilation cycle, NAD-ME type
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PWY-7115
C4 photosynthetic carbon assimilation cycle, NADP-ME type
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PWY-241
C4 photosynthetic carbon assimilation cycle, PEPCK type
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PWY-7117
cellulose and hemicellulose degradation (cellulolosome)
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PWY-6784
cellulose biosynthesis
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PWY-1001
cellulose degradation
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cellulose degradation II (fungi)
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PWY-6788
CO2 fixation into oxaloacetate (anaplerotic)
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PWYQT-4429
degradation of hexoses
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Diterpenoid biosynthesis
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fructan degradation
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PWY-862
Fructose and mannose metabolism
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gibberellin biosynthesis III (early C-13 hydroxylation)
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PWY-5035
gluconeogenesis II (Methanobacterium thermoautotrophicum)
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PWY-6142
Glutathione metabolism
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Glycerolipid metabolism
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glycogen biosynthesis
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glyoxylate assimilation
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PWY-5744
inulin degradation
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PWY-8314
isoprene biosynthesis I
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PWY-6270
isoprene biosynthesis II (engineered)
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PWY-7391
metabolism of disaccharids
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mevalonate metabolism
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O-Antigen nucleotide sugar biosynthesis
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Other glycan degradation
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pectin degradation I
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PWY-7246
pectin degradation II
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PWY-7248
Pentose and glucuronate interconversions
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phytochelatins biosynthesis
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PWY-6745
retinol biosynthesis
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PWY-6857
Sphingolipid metabolism
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stachyose degradation
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PWY-6527
Starch and sucrose metabolism
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sucrose biosynthesis II
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PWY-7238
sucrose degradation II (sucrose synthase)
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PWY-3801
sucrose degradation III (sucrose invertase)
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PWY-621
sucrose degradation V (sucrose alpha-glucosidase)
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PWY66-373
teichuronic acid biosynthesis (B. subtilis 168)
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PWY-7820
Terpenoid backbone biosynthesis
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triacylglycerol degradation
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LIPAS-PWY
type I lipoteichoic acid biosynthesis (S. aureus)
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PWY-7817
UDP-alpha-D-glucose biosynthesis
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PWY-7343
UDP-alpha-D-glucuronate biosynthesis (from UDP-glucose)
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PWY-7346
xyloglucan degradation II (exoglucanase)
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PWY-6807
cyanate degradation
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CYANCAT-PWY
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male flower, isoform UGP1 is the predominant transcript
brenda
XET activity in xylem and phloem fibers at the stage of secondary wall formation, PttXET16A
brenda
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brenda
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brenda
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from one year old seedlings of hybrid aspen clone 200 which are grown under photosynthetic photon flux density of 0.5 mmol qm/s with 14 light period. Air temperature is kept at 25°C during the day and 20°C during the night, relative air humidity is 60%. Plants are watered daily with distilled water and once per weak with a combined nutrient solution containing macro- and microelements
brenda
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isoform UGP1 is the predominant transcript. Isoform UGP1, but not UGP2 is upregulated by light and short-term sucrose feeding. Isoform UGP2 is transiently upregulated by cold treatment
brenda
PttXET16A is expressed transiently in developing leaves
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young leaf
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PttXET16A expression in young roots and root tips
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root xylem, isoform UGP1 is the predominant transcript, no upregulation of isoform UGP2 by cold treatment
brenda
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brenda
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isoform UGP2 is upregulated by cold treatment
brenda
tissues active in secondary growth and during dormancy, PME1 expression patterns, overview
brenda
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brenda
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developing, at least 16 Populus XTH genes are expressed in developing wood. Five genes are highly and ubiquitously expressed, whereas PtxtXET16-34 is expressed more weakly but specifically in developing wood
brenda
differentiating
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primary- and secondary-walled xylem tissues
brenda
the enzyme is expressed specifically in early developing xylem vessel elements
brenda
XET activity in xylem and phloem fibers at the stage of secondary wall formation, PttXET16A
brenda
additional information
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apart from root xylem, leaf and male flowers, isoforms UGP1 and UGP2 are expressed in similar amounts. Enzyme activity and protein correlate in all tissues and conditions. UGP isoforms generally have lower expressions than sucrose synthases
brenda
additional information
detailed localization of XET in poplar stems, PttXET16A expression pattern, expression in secondary vascular tissues
brenda
additional information
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enzyme activity and protein correlate in all tissues and conditions. UGP isoforms generally have lower expressions than sucrose synthases
brenda
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