Rice
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Starting at $89.00
Immunogen: Oryza sativa (Os10g0415900 Uniprot: Q338B9). 
Synonyms: GCN5, HAG702, OsHAG702, OsGCN5, OsBrd10, Brd10 Background: OsGCN5 is a histone acetyltransferase that acetylates H3 and H4 lysine residues. It positively regulates rice growth, development, and salt tolerance by epigenetically activating gene expression. It also plays a role in drought resistance and root development. -
Starting at $289.00
Immunogen: Os06g0474200 B7F9Q5 
Synonyms: OsFIP Background:
OsFIP Out of stock -
Starting at $289.00
Immunogen: Os03g0750800 Q75LL6 
Synonyms: ADA2, OsHXA701, HXA701 Background:
ADA2 Out of stock -
Starting at $289.00
Immunogen: Os01g0953600 Q941Z0 
Synonyms: NQR1 Background:
NQR1 Out of stock -
Starting at $89.00
Immunogen: Os07g0423000 Q6Z3Q4 
Synonyms: Os07g0423000 Background:
Os07g0423000 -
Starting at $89.00
Immunogen: Os01g0218500 Os06g0157700 Q5NAT3 
Synonyms: FTL1, FTL, FT-L1, OsFTL1, FTL2, FTL, FT-L2, OsFTL2 Background:
OsFTL1 is a florigen-like protein that forms a florigen activation complex (FAC) with GF14c and OsFD1 to activate OsMADS14 and OsMADS15 expression, thereby promoting flowering under both short-day and long-day conditions. It localizes to the nucleus and cytoplasm, with predominant expression in the shoot base. OsFTL2 is a mobile florigen that moves from leaves to the shoot apical meristem (SAM) to induce flowering. It acts downstream of HD1 and EHD1 under short-day conditions and upstream of MADS14 and MADS15. It is expressed in the inner region of the SAM, stem, and leaf blade vascular tissues. -
Starting at $89.00
Immunogen: Os06g0157700 Q93WI9 
Synonyms: HD3A, Hd3a, FT, qHD3(t)*, FT-L 2, OsFTL2, FT-L2, FTL2, OsHd3a Background:
HD3A -
Starting at $89.00
Immunogen: Oryza sativa (LOC_Os01g58000 Uniprot: P0C2Z3). 
Synonyms: ATPE -
Starting at $89.00
Immunogen: Oryza sativa (Os10g0554200 Uniprot: Q336T8 NCBI: BAT11983) 
Synonyms: NRT1.1B, NPF6.5, OsNRT1.1B, OsNPF6.5 Background: NRT1.1B/NPF6.5 is a nitrate transporter that regulates nitrate uptake and nitrogen use efficiency. It also influences root microbiota composition and contributes to grain yield.
