- Category
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- Arabidopsis Antibodies 3122
- Grain Crops Antibodies 670
- Cash Crops Antibodies 997
- Vegetable Crops Antibodies 501
- Energy And Herbaceous Crops Antibodies 493
- Other Species Antibodies 194
- Algae Antibodies 376
- Plant Pathogens Antibodies 17
- Tag antibodies 13
- GMO Antibodies 7
- Other Antibodies 101
- Secondary Antibodies 2
- Proteins 1
- Others 19
Products
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Starting at $89.00
Immunogen: AT3G25500 Q9SE97 Synonyms: AFH1, AHF1, ARABIDOPSIS THALIANA FORMIN HOMOLOGY 1, ATFH1, FH1, FORMIN HOMOLOGY 1. Background:
AFH1 is a nonprocessive formin that moves from the barbered end to the side of an actin filament after the nucleation event. It might be involved in the organization and polarity of the actin cytoskeleton. And AFH1 is involved in polar pollen cell growth process by maintaining tip-focused cell membrane expansion for the polar extension of pollen tubes. -
Starting at $89.00
Immunogen: AT5G43900 F4K7C5 Synonyms: MYA2, ARABIDOPSIS MYOSIN 2, ATMYA2, MYOSIN 2, MYOSIN X1 2, MYOSIN XI-6, XI-2, XI-6 Background:
MYA2 is a member of the type XI myosin protein family that binds F-actin and co-localizes with actin filaments and peroxisomes. This protein interacts with RabC2a and RabD1 in a GTP-dependent manner. It is also involved in root hair growth and organelle trafficking. -
Starting at $89.00
Immunogen: AT3G43600 Q7G192 Synonyms: AAO2, ALDEHYDE OXIDASE 2, ALDEHYDE OXIDASE 3, ALDEHYDE OXIDASE GAMMA, AO3, AOGAMMA, ARABIDOPSIS THALIANA ALDEHYDE OXIDASE 2, ARABIDOPSIS THALIANA ALDEHYDE OXIDASE 3, ATAO-2, ATAO3 Background:
AAO2 is an aldehyde oxidase isoform, one of four Arabidopsis aldehyde oxidase genes (AAO1 (AT5G20960), AAO2(AT3G43600), AAO3(AT2G27150), and AAO4(AT1G04580)), is the most likely candidate for the enzyme, because it can efficiently catalyze the oxidation of abscisic aldehyde to ABA. -
Starting at $89.00
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Starting at $89.00
Immunogen: AT5G55630 Q8LBL1 Synonyms: KCO1, ATKCO1, ATTPK1, CA2+ ACTIVATED OUTWARD RECTIFYING K+ CHANNEL 1, TANDEM PORE K+ CHANNEL 1, TPK1, TWO PORE K CHANNEL, TWO PORE K CHANNEL 1 Background:
KCO1 is a member of the Arabidopsis thaliana K+ channel family of AtTPK/KCO proteins. KCO1 is targeted to the vacuolar membrane. It forms homomeric ion channels in vivo. -
Starting at $89.00
Immunogen: AT3G21510 Q9ZNV9 Synonyms: AHP1, HISTIDINE-CONTAINING PHOSPHOTRANSMITTER 1 Background:
AHP1 is one of the six Arabidopsis thaliana histidine phosphotransfer proteins (AHPs). AHPs function as redundant positive regulators of cytokinin signaling. Members of the AHP gene family include: AT3G21510 (AHP1), AT3G29350 (AHP2), AT5G39340 (AHP3), AT3G16360 (AHP4), AT1G03430 (AHP5) and AT1G80100 (AHP6). -
Starting at $89.00
Immunogen: AT2G21340 Q8W4G3 Synonyms: EDS5H, EDS5 HOMOLOGUE Background:
ESD5H is a homolog of the multidrug and toxin extrusion transporter NHANCED DISEASE SUSCEPTIBILITY5 that is constitutively expressed in green tissues independent of pathogen infection and is expressed in the chloroplast envelope. -
Starting at $89.00
Immunogen: AT2G40840 Q8RXD9 Synonyms: DPE2, DISPROPORTIONATING ENZYME 2. Background:
DPE2 is a cytosolic protein with transglucosidase and amylomaltase activity. It is an essential component of the pathway from starch to sucrose and cellular metabolism in leaves at night. The protein binds to heteroglycans and utilizes glucose, mannose and xylose as acceptors. -
Starting at $89.00
Immunogen: ATMG00160 P93285 Synonyms: COX2, CYTOCHROME OXIDASE 2 Background:
Cytochrome c oxidase is the component of the respiratory chain that catalyzes the reduction of oxygen to water. Subunits 1-3 form the functional core of the enzyme complex. Subunit 2 transfers the electrons from cytochrome c via its binuclear copper A center to the bimetallic center of the catalytic subunit 1. -
Starting at $89.00
Immunogen: AT4G10310 Q84TI7 Synonyms: HKT1, AtHKT1, HIGH-AFFINITY K+ TRANSPORTER 1, HKT1;1. Background:
AtHKT1 is a sodium (Na + ) transporter that functions in mediating tolerance to salt stress. AtHKT1 is involved in Na+ recirculation from shoots to roots, probably by mediating Na+ loading into the phloem sap in shoots and unloading in roots, thereby removing large amounts of Na+ from the shoot.