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Table 1 Noteworthy differentially expressed genes identified in semigametic tissues.

From: Identification of differentially expressed genes associated with semigamy in Pima cotton (Gossypium barbadenseL.) through comparative microarray analysis

Category

Gene

Log2 Signal Anthers

Log2 Signal Ovules

GeneBank ID

Glycolysis and TCA

Fructose-bisphosphate aldolase

2.3

-1.5

CA993106/AI054483

 

Succinate dehydrogenase

-1.0

-2.3

DT570098/CO122837

 

Phosphoglycerate kinase

-1.3

-2.2

DW481615/DW498822

 

Glucose-6-isomerase

-

-1.1

DT456471

 

Pyruvate dehydrogenase subunit E1

-

-2.1

DT570955

Photosynthesis

Oxygen-evolving enhancer protein

-3.6

-1.3

DT458079/CO093680

 

Rubisco small subunit precursor

3.5

-1.1

DN780767/CO496683

 

Rubisco activase 1

1.8

-

AF329934

 

Rubisco activase 2

1.6

-

DQ233255

 

Chlorophyll A/B binding protein

1.1

-1.5

CA992778

 

Cytochrome b5

-1.3

-1.3

CO085819/DT047754

 

Cytochrome c oxidase

-

3.2

CA993773

Metabolism

(+)-δ-cadinene synthase

1.4

1.4

U23205/CO107110

 

Phosphoethanolamine N-methyltransferase

-1.1

-1.3

DW225135

Cytoskeleton

α-Tubulin

-

-1.5

DT052122

 

Actin

1.0

-1.4

DN759693/CO084889

 

β-Tubulin 1

-1.0

-1.5

CO124765/DW516614

 

β-Tubulin 3

-

-2.1

DT557030

 

β-Tubulin 8

-1.1

-

CO124872

 

Tubulin

-1.4

-2.4

DW507015

Hormone-related

12-oxophytodienoate reductase

1.1

1.2

DT466538

 

Allene oxide synthase

-1.2

-

DT047194

 

DELLA protein GAI

1.3

1.1

DT468888

 

Ethylene-responsive transcription factor 5

-2.5

-2.2

DT047349/AW186839

 

Ethylene-responsive transcription factor ERF017

-5.0

-2.2

DT049130

 

Auxin/Indole acetic acid protein

-2.0

-2.0

DW517716/CA992726

 

Auxin repressed protein

-

-1.1

CO127792

 

ACC synthase

-1.2

-

DQ122174

 

ACC oxidase

1.0

-

DQ116442

SOD-related

FeSOD

-1.9

-1.9

DQ088821

 

Cytosol Cu/Zn SOD

-

-1.4

DQ088818

 

Chloroplast Cu/Zn SOD

-

-1.1

DQ120514

  1. Dashes designate that the gene was not found to be differentially expressed through microarray analysis