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Star Product Recommendation | Agrisera Photosynthesis Antibodies (Global Antibodies)

Plant photosynthesis comprises steps such as light energy absorption, energy conversion, electron transport, ATP synthesis, and CO? fixation. This process is mainly completed on the thylakoid membranes of plant chloroplasts.

Four critical protein complexes are present on the thylakoid membrane: Photosystem II (PS II)Cytochrome b6/f complex (Cytb6/f complex)Photosystem I (PS I), and ATP synthase. These four complexes act synergistically to collectively accomplish the light-dependent reactions.

Photosystem II is equipped with an antenna system composed of Light-Harvesting Complexes (LHC), which can capture light energy. In contrast, Photosystem I utilizes the captured energy to carry out primary photochemical reactions. The Cytb6/f complex plays a vital role in the process of electron transport, while ATP synthase is responsible for synthesizing ATP, which provides energy for plant cells.


Product Name

Item Number

Lab Type

ATP synthase

 

 

AtpA | Alpha subunit of ATP synthase, chloroplastic

AS08 304

IP,WB

AtpB | Beta subunit of ATP synthase, chloroplastic + mitoch (rabbit)

AS05 085

BN-PAGE,IF,WB

AtpC | Gamma subunit of ATP synthase, chloroplastic

AS08 312

WB

Electron transfer

 

 

Cyt b6/PetB | Thylakoid membrane cytochrome b6 protein, N terminal

AS18 4169

BN-PAGE,WB

Fd | Ferredoxin 1 (chloroplastic)

AS11 1757

WB

PetC | Rieske iron-sulfur protein of Cyt b6/f complex

AS08 330

WB

LHC

 

 

Lhca1 | PSI type I chlorophyll a/b-binding protein

AS01 005

WB

Lhcb2 | LHCII type II chlorophyll a/b-binding protein

AS01 003

IP,WB

Lhcb3 | LHCII type III chlorophyll a/b-binding protein

AS01 002

WB

PSI (Photosystem I)

 

 

PsaA | PSI-A core protein of photosystem I

AS06 172

IG,WB

PsaB | PSI-B core subunit of photosystem I

AS10 695

WB

PsaC | PSI-C core subunit of photosystem I

AS10 939

WB

PSII (Photosystem II)

 

 

PsbA | D1 protein of PSII, C-terminal

AS05 084

WB

PsbB | CP47 protein of PSII

AS04 038

WB

PsbC | CP43 protein of PSII

AS11 1787

WB

Click to View More Antibodies



Application Cases


應用案例
western blot using anti-Lhcb1 antibody

AS09 522應用示例

 



western blot using anti-PsaA antibodies

AS06 172應用示例

 

Reference

Sulli et al. (2023). Generation and physiological characterization of genome?edited Nicotiana benthamiana plants containing zeaxanthin as the only leaf xanthophyll. Planta . 2023 Oct 5;258(5):93. doi: 10.1007/s00425-023-04248-3.

Ye et al. (2023). The light-harvesting chlorophyll a/b-binding proteins of photosystem II family members are responsible for temperature sensitivity and leaf color phenotype in albino tea plant. J Adv Res . 2023 Dec 25:S2090-1232(23)00404-6.doi: 10.1016/j.jare.2023.12.017.

Penzler et al. (2024). A pgr5 suppressor screen uncovers two distinct suppression mechanisms and links cytochrome b6f complex stability to PGR5. Plant Cell. 2024 Mar 27:koae098. doi: 10.1093/plcell/koae098.

Mu et al. (2024). Plastid HSP90C C-terminal extension region plays a regulatory role in chaperone activity and client binding.Plant J. 2024 Jul 5.doi: 10.1111/tpj.16917.

Rubisco


CO? fixation is the process of synthesizing organic compounds using ATP and NADPH produced by the light-dependent reactions, and this process is known as the Calvin cycle.

Ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) is the key rate-limiting enzyme in CO? fixation. It catalyzes the carboxylation of CO? and RuBP (ribulose-1,5-bisphosphate), which is then cleaved to form two molecules of PGA (3-phosphoglycerate).

All photosynthetic organisms possess Type I Rubisco, which consists of 8 large subunits (RbcL) and 8 small subunits (RbcS). Notably, the folding of RbcL into its native state depends on the action of CPN60—a molecular chaperone localized in chloroplasts.

 

Product Name

Item Nubmer

Lab Type

CAH3 | Carbonic anhydrase

AS05 073

IF, IG, WB

CPN60A1 | Chaperonin 60 subunit alpha 1, chloroplastic

AS12 2613

WB

CsoS1A/B/C | Major carboxysome shell protein 1A, AB, 1C

AS14 2760

WB

EPSP synthase | 3-phosphoshikimate 1-carboxyvinyltransferase

AS14 2782

WB

EPYC1 | Essential Pyrenoid Component 1

AS19 4312

WB

Lci5 | Low carbon dioxide induced protein number 5

AS05 090

IHC, WB

NADP-ME | NADP-malic enzyme, chloroplastic (dicots/monocots)

AS21 4580

WB

PEPC | Phosphoenolpyruvate carboxylase

AS09 458

IL, WB

PEPCK | PEP carboxykinase

AS07 241

WB

PRK ribulose-5-P-kinase | Phosphoribulokinase

AS07 257

WB

RA | Rubisco activase

AS10 700

WB

RAF2 | Rubisco accumulation factor 2

AS13 2729

WB

RbcL | Rubisco large subunit, form I (rabbit)

AS03 037

IF, IG, TP, WB

RbcL II | Rubisco large subunit, form II

AS15 2955

IF, WB

RbcS | Rubisco small subunit (SSU)

AS07 259

WB

RbcS | Rubisco small subunit (Algal)

AS22 4825

WB

Rubisco | 557 kDa hexadecamer

AS07 218

IL, WB

Rubisco ELISA quantitation kit

AS15 2994

WB

SBPase | Sedoheptulose-1,7-bis phosphatase

AS15 2873

WB

TKL1 | Transketolase (chloroplastic)

AS15 2903

IP, WB

Trxf1/2 | Thioredoxin F1/F2 (chloroplastic)

AS14 2808

WB

TrxM1/M2 | Thioredoxin M1/M2 (chloroplastic)

AS14 2809

WB

Click to View More Antibodies

Application Cases



AS21 4580應用示例



fluorescent western blot detection of Rubisco

AS03 037應用示例


Partial Reference

Phukan et al. (2024). Externally supplied ascorbic acid moderates detrimental effects of UV-C exposure in cyanobacteria. Photochem Photobiol Sci. 2024 Jul 12. doi: 10.1007/s43630-024-00612-8.

Zhao et al. (2024). Psb28 protein is indispensable for stable accumulation of PSII core complexes in Arabidopsis.Plant J. 2024 May 26. doi: 10.1111/tpj.16844. 

Ciesielska et al. (2024). S2P2-the chloroplast-located intramembrane protease and its impact on the stoichiometry and functioning of the photosynthetic apparatus of A. thaliana. Front Plant Sci. 2024 Mar 15:15:1372318. doi: 10.3389/fpls.2024.1372318.

 

 


Agrisera (Sweden) Distributed by Ximeijie

Founded in 1980, Agrisera AB (Sweden), distributed by Ximeijie, has long been dedicated to developing high-quality plant monoclonal and polyclonal antibodies. Leveraging its outstanding R&D capabilities and production technology, the company holds a leading position in the global plant antibody field.

 

Its product line covers a wide range of species. Agrisera’s product catalog includes antibodies targeting numerous model plants and major crops—such as Arabidopsis thaliana, rice, wheat, maize, and tomato—spanning over 30 plant species. This forms an extensive antibody library that meets the diverse needs of various plant science research projects.

 

Moreover, the company’s products are supported by a large number of published literatures, which ensures the accuracy and reliability of research results.


Beijing XMJ Technology Co., Ltd.

Beijing XMJ Technology Co., Ltd. is the authorized distributor of the Agrisera brand in China, dedicated to providing high-quality immunological products and services to a wide range of scientific researchers across the country. If you are interested in the aforementioned products, you are welcome to call XMJ's national customer service hotline at 400-050-4006 or visit the official website at www.gp82.cn for more information.

 

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