Table 2 Primer sequences and primer efficiency.

From: Reference genes to study the sex-biased expression of genes regulating Drosophila metabolism

Gene name

Forward primer (5'-3')

Reverse primer (5'-3')

Efficiency head

Efficiency body

Efficiency whole fly

Act42A

TGCAAAAGGAAATCACGGCG

CCGCCGATCCAAACAGAGTA

97

105

 

Arp3

ACTACTTCCTGCTGACTGAG

CCTGGACGGCGATATACA

132

93

 

aTub84B

GGAGTTCGCCATCTACCCAG

ACTGATTTCGACGGTTACCCC

83

78

 

bTub60D

CAAATCGGCGCTAAGTTCTGG

CCCACGTAGATGCCATTGCT

91

109

 

bTub97EF

CCGCATCATGAACTCCTTCT

TGGACAGCGTGGCATTGTAC

119

94

 

eEF1a1

AGGCCGCCTAAATTGGGAAA

ATCGGAGGCAACAAGCAAA

98

152

 

LaminCa

TCCACCCAACAATCTGGTGAT

GCAACATCCTCTTTGTCGGC

94

100

 

RpL32

GTCCCAAGGGTATCGACAACA

CTTGCGCTTCTTGGAGGAGA

95

102

 

RpS13

GGGTCTGAAGCCCGACATT

GGCGACGGCCTTCTTGAT

93

96

 

dIlp2

AGCAAGCCTTTGTCCTTCATCTC

ACACCATACTCAGCACCTCGTTG

93

  

dIlp3

GCAATGACCAAGAGAACTTTGGA

GCAGGGAACGGTCTTCGA

93

  

dIlp5

GCTCCGAATCTCACCACATGAA

GGAAAAGGAACACGATTTGCG

94

  

Bmm

AATGGCGTCGAATCAGACTT

AACACAGATGGGGATTTGGA

 

126

 

dIlp6

TGCTAGTCCTGGCCACCTTGTTCG

GCTTCCCGAAACTGTTGGGAAATA

 

128

 

Fit

TCGTTGGTCTGAGGAGGACA

CCAGTTGACAGAGTGCGGAT

 

105

 

Foxo

AAATTCGTCTATCGGCTGCG

TTGGAAGATAATAACTGCGCCTCT

 

106

 

Drs

ACCAAGCTCCGTGAGAACCTT

TTGTATCTTCCGGACAGGCAG

 

109

 

Lpin

ATCCCACGTCCCTGATATCG

TTCATCTTGGTTGGTTAGCAGG

  

104

FASN1

GTTGGGAGCGTGGTCTGTAT

GCACACCGAAGAACTGTTGG

  

97

ACc

GGCTATGCTGCGCTTAACA

GCCTCTGTTTTGTGGGTGAC

  

85

HSL

GATCCATTCCTGTCGCCGTA

CAGGGGTCCATGTTAAGTGTAAGT

  

102

LSD1

TCACAATCTCACGGCTGGAC

GGCTACCATAGAACGCCAGC

  

112

LSD2

CGGATGTCGAGGAAGATAATGATGA

GTCGTAGCTCTCCCCAACAA

  

128

ATPCL

CTTCTGACCATCGGGGATCG

CAGGTTGGTGTCGTATGCCT

  

95

Sea

ACATGAAGGAGCTGGGCGTC

CCAGGGTCTCCTCGTCGAAC

  

93

Pgi

GCATTCCAAGGAGCCTGAGT

ATGTTGGTGCTGTCAATGCC

  

111

Tpi

CATCAAGGACCTGTTCGTGAA

AGTCCAGCAGTATCTCGCCAT

  

103

PEPCK

GCCTGAGCTCATTGAACAAAG

ACCGCAATTGTCCTGGCGCA

  

101

bigmax

GCCAAGTTTCAAGTGTTCCAG

CTCCAGCCAGGGGATAATG

  

112

GADPH2

ATGAAATTAAGGCCAAGGTT

GAGTAGCCAAACTCGTTGTC

  

102

GADPH1

CTCGACTCACGGTCGTTTCA

GGTGATCTTCTGGCCGTTCA

  

59

Upd2

AGTGCGGTGAAGCTAAAGACTTG

GCCCGTCCCAGATATGAGAA

  

83

zw

ATCTGTGCGGGAAGTGATG

CCAAACTTGGCTTCGGAAC

  

84

Pgd

ATGAGCGGACAAGCGGATATT

TAGGCGCACACCACGAATC

  

98

GlyS

AGTCCTACTTCATCGCGGCA

GTCTCCTCATCCACGGAGTC

  

81

GlyP

ATACAACAACAACCACGTAAACAC

GGATGTAGTCACCATCGTTGAAG

  

97

Tps1

TTCCTGGACATCCCATTCCC

TCACAACCCAACATACCCTGT

  

105

Eiger

TCCTAGTCCGCAAAGGTGAA

CAAGTGGAAATGGGCTGCTG

  

82

TACE

AGAATTGCGCGGCCCTG

CTTGGCACCCCTTTTCACCA

  

103

cchamide

CGCCAAATGAACAGGTGCC

GTCGGCGAGGTCGGTTAAA

  

104

Pgk

TCATCGTGTGGAACGGACCC

AGACGAGTGCCTCCGTGTTC

  

90

Rel

TTCCGTGAAAAGCTGACCCG

GAGTGGGCTGGTGAAAAGGA

  

104

STAT92E

CAGGGCGTTCTCTGACCATT

TTCGGGCTCTTGACGCTTTG

  

100