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Table 3 The classification of subgroups for Al responsive AhRLKs

From: Genome-wide identification and evolutionary analysis of RLKs involved in the response to aluminium stress in peanut

Subgroups

Gene ID

Gene Name

Reported

Function

I

AH05G06780.1

Proline-rich receptor-like protein kinase PERK4

PERK1

responses to wounding and treatment with salicylic acid and PERK1 mRNA accumulation in response to these treatments shows a role in plant defense signaling [43]

II

AH09G18420.1

Leucine-rich repeat receptor-like protein kinase PXC1

PXC1

a regulator of secondary wall formation correlated with the TDIF-PXY/TDR-WOX4 signaling pathway [44]

II

AH01G04120.1

Calmodulin-binding receptor-like cytoplasmic kinase 1

CRCK1

plays a role in stress signal transduction in plants [45]

II

AH13G53400.1

Probable LRR receptor-like serine/threonine-protein kinase RKF3

RKF1

regulates early flower primordia during stamen development [58]

II

AH13G49190.2

AH04G06840.1

LRR receptor-like serine/threonine-protein kinase FLS2

FLS2

involves in preinvasive immunity against bacterial infection [59]

II

AH02G15400.1

Proline-rich receptor-like protein kinase PERK3

PERK1

responses to wounding and treatment with salicylic acid and PERK1 mRNA accumulation in response to these treatments shows a role in plant defense signaling [43]

II

AH01G20770.1

AH03G24540.1

Pollen receptor-like kinase 3

PRK1

PRK1 is essential for postmeiotic development of pollen [46]

II

AH09G25780.1

LRR receptor-like serine/threonine-protein kinase ERL1

ERECTA

regulates elongation of above-ground organs [60]

II

AH08G04970.1

LRR receptor-like serine/threonine-protein kinase RCH1

RCH1

resistances to the hemibiotrophic fungal pathogen colletotrichum higginsianum [48]

II

AH09G16620.1

Leucine-rich repeat receptor-like protein kinase PXL1

PXL1

regulates signal transduction pathways under temperature fluctuations [61]

II

AH05G37250.1

Leucine-rich repeat receptor-like tyrosine-protein kinase PXC3

PXC1

a regulator of secondary wall formation correlated with the TDIF-PXY/TDR-WOX4 signaling pathway [44]

II

AH05G22210.1

LRR receptor-like serine/threonine-protein kinase HSL2

HSL2

involves in Floral organ abscission and lateral root emergence [62]

II

AH05G25480.1

Receptor-like protein kinase HSL1

HSL1

participates in the Repression of Seed Maturation Genes in Arabidopsis Seedlings [63]

II

AH02G27570.1

Probable LRR receptor-like serine/threonine-protein kinase RKF3

RKF1

regulates early flower primordia during stamen development [58]

III

AH01G26450.1

Receptor-like protein kinase ANXUR1

ANXUR1/ANXUR2

control pollen tube rupture during the fertilization process in A. thaliana [49]

III

AH10G26000.1

AH14G43820.1

AH05G20280.1

Receptor-like protein kinase FERONIA

FERONIA

affects plant reproduction, development, and stress tolerance [50]

III

AH05G06270.1

LysM domain receptor-like kinase 4

RLK1

activates defense and Abiotic-Stress Responses [52]

III

AH14G43630.1

Receptor-like protein kinase ANXUR2

ANXUR1/ANXUR2

control pollen tube rupture during the fertilization process in Arabidopsis thaliana [49]

III

AH11G35150.1

LRR receptor-like serine/threonine-protein kinase HSL2

HSL2

involved in Floral organ abscission and lateral root emergence [62]

IV

AH02G03870.1

Receptor protein kinase TMK1

TMK1

an essential enzyme for DNA synthesis in bacteria, phosphorylating deoxythymidine monophosphate (dTMP) to deoxythymidine diphosphate (dTDP), and thus is a potential new antibacterial drug target [51]

V

AH01G31190.1

AH01G31150.1

G-type lectin S-receptor-like serine/threonine-protein kinase RLK1 isoform X2

RLK1

activates defense and Abiotic-Stress Responses [52]

VI

AH09G27120.1

AH19G41030.1

Cysteine-rich receptor-like protein kinase 29

CRK45/CRK5

response to abscisic acid and abiotic stressesa potentially positive regulator of ABA signaling in early seedling growth, stomatal movement and plant drought tolerance [53, 54]

VI

AH08G24070.1

AH14G27090.1

Cysteine-rich receptor-like protein kinase 25

CRK45/CRK5

response to abscisic acid and abiotic stresses, a potentially positive regulator of ABA signaling in early seedling growth, stomatal movement and plant drought tolerance[53, 54]

VI

AH10G29990.1

AH13G57290.1

AH09G27070.1

Cysteine-rich receptor-like protein kinase 10

CRK45/CRK5

response to abscisic acid and abiotic stresses, a potentially positive regulator of ABA signaling in early seedling growth, stomatal movement and plant drought tolerance[53, 54]

VI

AH03G40310.1

Cysteine-rich receptor-like protein kinase 2

CRK45/CRK5

response to abscisic acid and abiotic stresses, a potentially positive regulator of ABA signaling in early seedling growth, stomatal movement and plant drought tolerance[53, 54]

VII

AH10G03910.1

G-type lectin S-receptor-like serine/threonine-protein kinase B120

GsSRK

a positive regulator of plant tolerance to salt stress [56]

VII

AH20G01850.1

AH10G04020.1

AH06G22210.1

Receptor-like serine/threonine-protein kinase SD1-8

SD1-29

resistances to bacteria in crop species [64]

VII

AH01G24170.1

G-type lectin S-receptor-like serine/threonine-protein kinase B120

GsSRK

a positive regulator of plant tolerance to salt stress [56]

  1. Note: only the Al responsive AhRLKs with characterized homologs were listed in the table