Skip to main content
. 2014 Jan 28;13:16. doi: 10.1186/1475-2859-13-16

Table 4.

Expression levels of genes significantly increased in MA-R4 relative to MA-B4

ORF Gene Xylose MA-R4/MA-B4 (C3)
Glucose MA-R4/MA-B4 (C4)
Description
(C3-1) (C3-2) (C4-1) (C4-2)
Xylose metabolism
 
 
 
 
 
YGR194C
XKS1
7.23
6.13
11.97
9.20
Xylulokinase
Hexose transporters
 
 
 
 
 
YMR011W
HXT2
41.40
26.68
2.20
2.38
High-affinity glucose transporter
YDR345C
HXT8
7.17
16.25
4.10
5.35
Protein of unknown function with similarity to hexose transporter family members
Other transporters
 
 
 
 
 
YCR098C
GIT1
13.32
8.90
2.53
2.28
Plasma membrane permease, mediates uptake of glycerophosphoinositol and glycerophosphocholine
YLR237W
THI7
2.33
2.97
2.05
2.14
Plasma membrane transporter responsible for the uptake of thiamine
YKR093W
PTR2
2.32
2.69
8.30
8.87
Integral membrane peptide transporter
ATP synthesis
 
 
 
 
 
YBR085W
AAC3
3.42
3.08
4.89
3.68
Mitochondrial inner membrane ADP/ATP translocator
Q0080 ATP8 4.25 5.61 3.65 4.33 Subunit 8 of the F0 sector of mitochondrial inner membrane F1-F0 ATP synthase

Relevant genes for which the xylose MA-R4/MA-B4 ratio (C3) was higher than two, and the glucose MA-R4/MA-B4 ratio (C4) was higher than two, were selected. The DNA microarray analysis was repeated twice (Values shown in C3-2 and C4-2 are from dye-swap experiments).