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Results for "

Pseudomonas syringae

" in MedChemExpress (MCE) Product Catalog:

10

Inhibitors & Agonists

1

Peptides

5

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-N11420

    Bacterial Others
    Coronatine is a plant growth regulator produced by Pseudomonas syringae. Coronatine simulates bioactive jasmonic acid (HY-122464A) conjugates or octadecanoid signal molecules of higher plants to make plants appear pathogenic symptoms. Coronatine promotes the virulence of Pseudomonas syringae in plants by activating the signal cascade that inhibits the accumulation of Salicylic acid (HY-B0167) .
    Coronatine
  • HY-130323

    Bacterial Infection
    13-HPOT, a linolenic fatty acid hydroperoxide, is an antibacterial agent. 13-HPOT has a strong dose response effect on three plant pathogen gram negative bacteria: Pectobacterium carotovorum, Pseudomonas syringae and Xanthomonas translucens. 13-HPOT can interact with the lipid representative of the inner bacterial plasma membrane .
    13-HPOT
  • HY-119609

    Bacterial Cholinesterase (ChE) Infection
    Ilicicolin C exhibits antibacterial activity against Pseudomonas syringae with IC50 of 28.5 µg/mL. Ilicicolin C exhibits weak inhibitory activities against acetylcholinesterase (AChE) and β-glucuronidase with IC50 of 30-43 µg/mL. Ilicicolin C exhibits weak cytoxicity in human lung fibroblasts with IC50 of 64-120 µg/mL. Ilicicolin C affects seed germination and root tip growth of lettuce .
    Ilicicolin C
  • HY-155662

    Reactive Oxygen Species Infection
    ROS inducer 3 (Compound I6) is a ROS inducer. ROS inducer 3 has excellent in vitro bioactivity with an EC50 of 2.86 μg/mL. ROS inducer 3 has significant protective activity for preventing Pseudomonas syringae pv. actinidiae. ROS inducer 2, as a bactericidal agent, can be used for the research of intractable plant bacterial diseases .
    ROS inducer 3
  • HY-149169

    Others Inflammation/Immunology
    Phevamine A is a small molecule bacterial phytotoxin that can be isolated from Pseudomonas syringae. Phevamine promotes bacterial growth by suppressing plant immune responses .
    Phevamine A
  • HY-N10280

    Bacterial Endogenous Metabolite Infection
    Asperglaucin A represents an unusual phthalide-like derivative. Asperglaucin A exhibits potent antibacterial activities against two plant pathogens Pseudomonas syringae pv actinidae (Psa) and Bacillus cereus, with an MIC value of 6.25 μM .
    Asperglaucin A
  • HY-N10281

    Bacterial Infection
    Asperglaucin B is an alkylated salicylaldehyde derivative from the fungus Aspergillus chevalieri SQ-8, with antibacterial activities. Asperglaucin B displays potent antibacterial activities against two plant pathogens Pseudomonas syringae pv actinidae (Psa) and Bacillus cereus, with an MIC value of 6.25 μM .
    Asperglaucin B
  • HY-P2717

    Caspase Infection
    Ac-YVAD-AMC is an inhibitor for caspase. Ac-YVAD-AMC inhibits bacteria-induced cell death of hypersensitive response (HR) cells .
    Ac-YVAD-AMC
  • HY-155644

    Bacterial Reactive Oxygen Species Infection
    ROS inducer 1 (compound I29) is a fungicide, with EC50 against Xanthomonas axonopodis pv. citri (Xac), Xanthomonas oryzae pv. oryzae (Xoo), and Pseudomonas syringae pv. actinidiae (Psa) of 5.73, 6.62 and 9.05 μg/mL. ROS inducer 1 can effectively induce the production of ROS in Xanthomonas cells and inhibit rice bacterial blight. ROS inducer 1 has the potential to study bacterial infection in crops .
    ROS inducer 1
  • HY-125048

    229-B; Streptothricin D

    Bacterial Infection
    Racemomycin B (229-B; Streptothricin D), the main component from Streptomyces lavendulae OP-2, is a streptothricin antibiotic containing three β-lysine groups. RM-B exhibits antimicrobial activity against plant pathogenic microorganisms and effectively inhibits the growth of Brassica rapa L. roots at 50 ppm. RM-B showed a minimum inhibitory concentration (MIC) of 0.4 μg/ml against Pseudomonas syringae pv. tabaci IFO-3508 and a MIC range of 0.1-2.0 μg/ml against six strains of Fusarium oxysporum, showing stronger antimicrobial activity than RM-A and RM-C. The biological activity of racemomycin compounds increases with the increase in the number of β-lysine groups.
    Racemomycin B

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