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. 2015 Nov 5;6:946. doi: 10.3389/fpls.2015.00946

Table 4.

Putative targets of selected miRNAs.

Class miRNA_Acc. Target Acc. Number Inhibition Target description
H.O.R. pda-miR529e PDK_30s774191g002 Cleavage Abscisic acid responsive elements-binding factor
pda-miR160b, pda-miR160a, pda-miR160a PDK_30s951701g002 Cleavage Auxin response factor 17-like
pda-miR156g, pda-miR156c PDK_30s928741g002 Cleavage Cytokinin dehydrogenase 3-like
pda-3p-130659_69 PDK_30s65509272g006 Cleavage Gibberellin 2-beta-dioxygenase 8-like
pda-3p-44090_382 PDK_30s1006281g001 Cleavage IAA-amino acid hydrolase ilr1-like 6-like
K.I.N. pda-miR166a PDK_30s6550978g002 Cleavage Calcium-dependent protein kinase 28-like
pda-miR397 PDK_30s903491g006 Cleavage Mitogen-activated protein kinase
T.F pda-3p-313824_18 PDK_30s770411g002 Cleavage C-myb-like transcription factor myb3r-4
pda-miR396 PDK_30s1150791g004 Translation Ethylene-responsive transcription factor rap2-2-like
pda-miR167a, pda-miR167c PDK_30s1201081g001 Cleavage F-box protein skip16-like
pda-miR172a, pda-miR172i, pda-miR172c PDK_30s749921g002 Cleavage Floral homeotic protein apetala 2-like
pda-miR164, pda-miR164, pda-miR164a PDK_30s1198591g001 Cleavage Nac domain-containing protein 21 22-like
pda-miR156a, pda-miR156c, pda-miR156h, pda-miR156e, pda-miR156g, pda-miR529e, pda-miR156b PDK_30s756061g001 Cleavage Promoter-binding protein spl9
pda-miR156h PDK_30s1139181g002 Translation Squamosa promoter-binding-like protein 16
T.S.P. pda-miR828a PDK_30s927361g003 Cleavage Abc transporter f family member 3
pda-miR393a PDK_30s947241g003 Cleavage Transport inhibitor response 1-like protein
pda-miR535 PDK_30s1187081g002 Cleavage potassium channel akt2-like
pda-5p-5696_4736 PDK_30s693381g001 Cleavage Vacuolar protein sorting-associated protein 41 homolog

The genes were classified as hormones (H.O.R.), Kinases (K.I.N.), Transcription factors (T.F.), or transportation (T.S.P.)-related function. The miRNAs were selected based on their targets, which could have a functional relationship to salinity tolerance mechanisms in plants.