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Phytohormone

Phytohormone

Phytohormones, also known as plant endogenous hormones or plant natural hormones, are a class of organic compounds synthesized by specific tissues within plants that regulate plant physiological activities in minute quantities. These hormones modulate various physiological processes in plants by either promoting or inhibiting them, thereby controlling plant growth, development, environmental adaptation, and different stages of the plant lifecycle. The major classes of known phytohormones include six categories: auxins, gibberellins, cytokinins, abscisic acid, and ethylene. Although these phytohormones are generally small, structurally simple molecules, their physiological effects are highly complex and diverse, influencing basic processes such as cell division, elongation, and differentiation. They also play a broad role in regulating important physiological phenomena such as germination, root formation, flowering, fruiting, sex determination, dormancy, and abscission[1].

Cat. No. Product Name Effect Purity Chemical Structure
  • HY-128455
    Plant growth regulator 1
    Plant growth regulator 1 (Compound 2) is a Brassinolide (HY-N0273) antagonist. Plant growth regulator 1 can significantly inhibit the rice leaf tilting response induced by Brassinolide. Plant growth regulator 1 can be used for the research of plant growth regulator.
    Plant growth regulator 1
  • HY-N7844R
    N6-Benzyladenosine (Standard)
    N6-Benzyladenosine (Standard) (Benzyladenosine (Standard)) is the analytical standard of N6-Benzyladenosine (HY-N7844). This product is intended for research and analytical applications. N6-Benzyladenosine is an adenosine receptor agonist, has a cytoactive activity. N6-Benzyladenosine arrests cell cycle at G0/G1 phase and induces cell apoptosis. N6-Benzyladenosine also exerts inhibitory effect on T. gondii adenosine kinase and glioma-.
    N6-Benzyladenosine (Standard)
  • HY-N15411
    Helminthosporol
    Helminthosporol is a natural plant growth-regulator that can promote the growth of rice and lettuce seedlings. Helminthosporol can also inhibit the activity of acyl-CoA: cholesterol acyltransferase (ACAT) in rat liver microsomes and the synthesis of cholesterol esters in macrophages.
    Helminthosporol
  • HY-W436777
    (±)-p-Menthane-3,8-trans-diol
    (±)-p-Menthane-3,8-trans-diol is a chemosensory compound with inhibitory activity against germination and growth of lettuce (Lactuca satiua L.). (±)-p-Menthane-3,8-trans-diol can be isolated from lemon eucalyptus trees (E. citriodora).
    (±)-p-Menthane-3,8-trans-diol
  • HY-158986
    (E,E)-2,4-Undecadien-8,10-diynoic acid isobutylamide
    (E,E)-2,4-Undecadien-8,10-diynoic acid isobutylamide is a natural compound found in Acmella oleracea and is a plant growth inhibitor. (E,E)-2,4-Undecadien-8,10-diynoic acid isobutylamide inhibits the growth of cress roots and shoots and barnyard grass roots.
    (E,E)-2,4-Undecadien-8,10-diynoic acid isobutylamide
  • HY-179025
    GA3ox-IN-1
    Inhibitor
    GA3ox-IN-1 (Compound 10e) is a GA3β-hydroxylase (GA3ox) inhibitor. GA3ox-IN-1 inhibits Arabidopsis root growth with an IC50 of 90 μM. GA3ox-IN-1 also suppresses the elongation of rice second leaf sheath. GA3ox-IN-1 can alleviate oxidative damage to Arabidopsis seedlings under NaCl salt stress and reduce the accumulation of superoxide anion.
    GA3ox-IN-1
  • HY-W753416
    14-Hydroxylated brassinosteroid
    14-Hydroxylated brassinosteroid is a plant growth regulator. 14-Hydroxylated brassinosteroid enhances winter wheat resistance to heat stress, delays heat-induced leaf senescence, maintains leaf water content, promotes grain filling, and mitigates yield loss. 14-Hydroxylated brassinosteroid shows antioxidant activity. 14-Hydroxylated brassinosteroid can be used for the research of plant growth.
    14-Hydroxylated brassinosteroid
  • HY-N8628
    3,4,5-Triiodobenzoic acid
    Inhibitor
    3,4,5-Triiodobenzoic acid is an auxin transport inhibitor. 3,4,5-Triiodobenzoic acid stimulates specific [3H]verapamil binding to zucchini microsomes. 3,4,5-Triiodobenzoic acid also increases specific [3H]verapamil binding to rabbit skeletal muscle membranes. 3,4,5-Triiodobenzoic acid can be used in the research of smooth muscle contraction.
    3,4,5-Triiodobenzoic acid
  • HY-N15244
    (+)-Strigone
    (+)-Strigone is a phytohormone that can be isolated from Houttuynia cordata. (+)-Strigoneis is the germination stimulant for plants, which induces seed germination of root parasites.
    (+)-Strigone
  • HY-N7659
    Glucobrassicin
    Glucobrassicin is an indole-based anticancer agent and plant growth-regulating hormone. Glucobrassicin exerts its biological activity by disrupting the integrity of microtubule networks in both plant and mammalian cells. At high concentrations, Glucobrassicin inhibits seed germination and root growth; it can also specifically induce apoptosis in mammalian cancer cells and interfere with the intercellular transmission of viruses that rely on microtubules. In plants, Glucobrassicin can be catalyzed by myrosinase to release growth-regulating substances, exhibiting a concentration-dependent growth-regulating effect.
    Glucobrassicin
  • HY-179028
    DHGA5
    Inhibitor
    DHGA5 (exo-16,17-Dihydro-gibberellin A5-13-acetate) is a GA3β-hydroxylase (OsGA3ox2) inhibitor. DHGA5 inhibits Arabidopsis root growth with an IC50 of 97 μM. DHGA5 also suppresses the elongation of rice second leaf sheath. DHGA5 can alleviate oxidative damage to Arabidopsis seedlings under NaCl salt stress and reduce the accumulation of superoxide anion.
    DHGA5

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