- Category
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- Arabidopsis Antibodies 3284
- Grain Crops Antibodies 806
- Cash Crops Antibodies 1058
- Vegetable Crops Antibodies 525
- Energy And Herbaceous Crops Antibodies 528
- Other Species Antibodies 205
- Algae Antibodies 399
- Modified Antibody 1
- Plant Pathogens Antibodies 57
- Tag antibodies 13
- GMO Antibodies 7
- Other Antibodies 108
- Secondary Antibodies 3
- Proteins 1
- Others 19
Products
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Starting at $89.00
Immunogen: AT4G20010 Q8GXH3 Synonyms: pTAC9, ORGANELLAR SINGLE-STRANDED DNA BINDING PROTEIN 2, OSB2, PLASTID TRANSCRIPTIONALLY ACTIVE 9, PTAC9 Background:
In chloroplasts, transcription of plastid genes is mediated by two types of RNA polymerase: plastid-encoded RNA polymerase (PEP) and nuclearencoded RNA polymerase (NEP). Transcription in plastids is also mediated by a number of nuclear-encoded factors in addition to PEP and NEP. In the insoluble RNA polymerase preparation samples, a total of 18 components named as pTACs (pTAC1 to pTAC18) were identified. pTAC9 (AT4G20010) is one of the components associated with PEP complex. -
Starting at $89.00
Immunogen: AT3G10800 Q9SG86 Synonyms: BZIP28 Background:
BZIP28 is a putative membrane-tethered transcriptional factor. It has a similar domain structure to the mammalian ATF6 protein involved in the unfolded protein response (UPR), and shares a bZIP domain, transmembrane domain, and a canonical S1P cleavage site. This protein present in root cells appears to translocate from the cytoplasm and ER to the nucleus following TM treatment. -
Starting at $89.00
Immunogen: AT5G23310 Q9FMX0 Synonyms: FSD3, FE SUPEROXIDE DISMUTASE 3, SOD3, SUPEROXIDE DISMUTASE 3 Background:
Iron superoxide dismutases (FeSODs; FSDs) are primary antioxidant enzymes in Arabidopsis thaliana chloroplasts. The stromal FSD1 conferred the only detectable FeSOD activity, whereas the thylakoid membrane- and nucleoid-co-localized FSD2 and FSD3 double mutant showed arrested chloroplast development. -
Starting at $89.00
Immunogen: AT1G10522 Q9XIK0 Synonyms: PRIN2, PLASTID REDOX INSENSITIVE 2 Background:
PLASTID REDOX INSENSITIVE2 (PRIN2) was identified using forward genetics as a chloroplast component involved in redox mediated retrograde signaling. PRIN2 mutants are impaired in PEP (plastid-encoded RNA polymerase) activity and high light dependent plastid redox signalling to the nucleus. -
Starting at $89.00
Immunogen: AT1G67370 F4HRV8 Synonyms: ASY1, ASYNAPTIC 1, ATASY1 Background:
ASY1 protein is initially distributed as numerous foci throughout the chromatin. It is required for normal meiosis in male and female gametophytes. And it plays a crucial role in coordinating the activity of DMC1, a key member of the homologous recombination machinery. -
Starting at $89.00
Immunogen: AT1G14130 Q9XI75 Synonyms: DAO1, ATDAO, DIOXYGENASE FOR AUXIN OXIDATION 1 Background:
DAO1 is an IAA oxidase expressed in many different plant parts. It is a member of a family of dioxygenase and 2OG Fe(II) oxygenase domain and DAO domain containing proteins. It appears to be the major IAA oxidase in planta and major contributor to IAA degradation. -
Starting at $89.00
Immunogen: AT1G77760 P11832 Synonyms: NR1, GNR1, NIA1, NITRATE REDUCTASE 1 Background:
Assimilatory nitrate reductase is an enzyme of the assimilative metabolism involved in reduction of nitrate to nitrite. The nitrite is immediately reduced to ammonia (probably via hydroxylamine) by the activity of nitrite reductase. Plants contain 2 forms of NR: NADH-NR (most common form in plants and algae, predominantly found in green tissues) and NAD(P)H-NR (uses NADH or NADPH as the electron donor, constitutively expressed in plants at a low level). NADH-NR is a homodimer of two identical subunits (100-115 kDa each, hold together by a Mo-cofactor) each of them coded by up to three genes (NR1-3, NIA1-NIA3). -
Starting at $89.00
Immunogen: AT1G67350 Q9FYF8 Synonyms: AT1G67350 Background:
Complex I is the largest protein complex of the oxidative phosphorylation system in mitochondrial and it catalyzes NADH-quinone oxidoreduction. Complex I represents the main entrance site for electrons into the respiratory electron transfer chain. In Arabidopsis, Complex I have at least 49 subunits and AT1G67350 may be one of the subunit.