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Table 1 Proteins involved in photosynthesis under heat stress and/or subsequent recovery

From: Differential proteomic analysis of grapevine leaves by iTRAQ reveals responses to heat stress and subsequent recovery

Protein accession

Fold change

Bin

Species

Description

HS

RC

A5ASG6

0.924

2.708

1.1.1.1

Arabidopsis thaliana

Photosystem II light harvesting complex protein 2.1, LHCB2.1

A5BPB2

0.438

0.524

1.1.1.1

Arabidopsis thaliana

Putative light-harvesting chlorophyll-protein complex II subunit B1, LHCB1.4

A5B5I4

0.456

1.084

1.1.1.2

Arabidopsis thaliana

Chlorophyll a/b-binding protein 1, chloroplastic, LHCB1.3

D7UA58

0.59

1.176

1.1.1.2

Gossypium hirsutum

PsbP precursor

Q67H94

1.045

0.608

1.1.1.2

Muscari comosum

Cytochrome b559 subunit alpha (Fragment), PsbE (cytb559α)

E0CR63

1.041

1.603

1.1.1.2

Ricinus communis

Photosystem II 22 kDa protein, PsbS, chloroplast precursor

B6VJV1

0.601

1.928

1.1.1.2

Vitis vinifera

Photosystem II protein D1, PsbA (D1)

A5AWT3

7.737

2.387

1.1.1.2

Nicotiana tabacum

Photosystem II 10 kDa polypeptide, PsbR, chloroplastic

F6GY64

NA*

1.645

1.1.1.2

Populus trichocarpa

One helix protein 2

A5AW35

0.656

1.226

1.1.2.2

Ricinus communis

Photosystem I reaction center subunit XI, PsaL, chloroplastic

A5B2H3

7.317

1.234

1.1.2.2

Ricinus communis

Photosystem I reaction center subunit III, chloroplast precursor, PsaF

A5AEB4

0.878

0.582

1.1.2.2

Ricinus communis

Photosystem I reaction center subunit II, PsaD, chloroplast precursor

Q0ZJ20

0.545

5.057

1.1.2.2

Vitis vinifera

photosystem I P700 apoprotein A1, PsaA

F6I0D9

28.065

0.185

1.1.2.2

Medicago truncatula

Photosystem I reaction center subunit N, PsaN

A5BHE6

5.11

2.172

1.1.2.2

Ricinus communis

Photosystem I reaction center subunit VI, PsaH

A5BX41

0.846

0.236

1.1.3

Vitis vinifera

Cytochrome b6/f complex iron-sulfur subunit, PetC

Q0ZIY8

1.479

0.417

1.1.3

Vitis vinifera

Cytochrome b6/f complex subunit IV, PetD

Q0ZIY9

0.8

1.881

1.1.3

Vitis vinifera

Cytochrome b6, PetB

Q67H40

0.392

0.818

1.1.4

Muscari comosum

ATP synthase subunit beta, chloroplastic

Q0ZJ34

8.386

0.957

1.1.4

Vitis vinifera

ATP synthase CF (0) b subunit

F6H7M1

1.502

1

1.1.4

Vitis vinifera

ATP synthase gamma chain, chloroplastic-like isoform 1

F6HVW3

1.995

1.03

1.1.4

Nicotiana tabacum

ATP synthase delta chain, chloroplastic

Q95FU2

1.83

0.401

1.1.4

Coccoloba uvifera

ATP synthase beta subunit

E0CQ75

1.234

0.554

1.1.5.3

Ricinus communis

Ferredoxin--NADP reductase, FNR

D7TQZ8

0.666

0.726

1.2.2

Glycine max

Peroxisomal (S)-2-hydroxy-acid oxidase GLO1-like

A5BTM9

2.969

0.505

1.3.1

Vitis vinifera

Ribulose-1,5-bisphosphate carboxylase/oxygenase large subunit, RbcL

Q2I314

1.627

1.886

1.3.2

Vitis pseudoreticulata

ribulose-1,5-bisphophate carboxylase/oxygenase small subunit

A5BHS5

0.61

1.167

1.3.4

Glycine max

NADP-dependent glyceraldehyde-3-phosphate dehydrogenase-like

F6HFL6

1.833

0.733

1.3.6

Vitis vinifera

Fructose-bisphosphate aldolase, FBA

F6GWQ0

0.799

0.626

1.3.6

Vitis vinifera

Fructose-bisphosphate aldolase

A5AYR7

1.476

0.664

1.3.7

Glycine max

Fructose-1,6-bisphosphatase, chloroplastic-like

A5BE19

0.84

0.447

1.3.12

Vitis vinifera

Phosphoribulose kinase, putative

D7THJ7

0.482

0.739

1.3.13

Ricinus communis

Ribulose bisphosphate carboxylase/oxygenase activase 1, chloroplast precursor

F6HBT1

0.594

1.004

1.3.13

Glycine max

Ribulose bisphosphate carboxylase/oxygenase activase, chloroplastic-like

  1. *The proteins were not quantified under heat stress or subsequent recovery.
  2. HS refers to the fold change in heat stressed proteins, with respect to controls, while RC refers to the fold change in proteins after recovery, with respect to controls.