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  • object(anvilstl\commercio\models\Category)#441 (15) { ["featured_image_urls"]=> array(0) { } ["featured_image"]=> array(0) { } ["banner_image_urls"]=> array(0) { } ["productCount"]=> NULL ["_attributes":"yii\db\BaseActiveRecord":private]=> array(23) { ["id"]=> int(91) ["root"]=> int(1) ["lft"]=> int(298) ["rgt"]=> int(299) ["level"]=> int(3) ["name"]=> string(28) "Plant Cell Growth Regulators" ["url_name"]=> string(28) "plant-cell-growth-regulators" ["title"]=> NULL ["short_description"]=> string(0) "" ["long_description"]=> string(825) "Plant hormones (or Phytohormones) are chemicals and signal molecules that affect the growth, formation, development or division of plant cells. All plants cells are capable of producing growth regulator chemicals, as opposed to animals in which specific glands exist in order to produce vital hormones. Plant hormones control seed growth, time of flowering, senescence of leaves and fruits, the direction of tissue growth (whether roots grow down or stems grow up) and many other characteristics. There are five accepted major classes of plant growth regulators: gibberellins (such as Gibberellic Acid 3), auxins (such as IAA, NAA or IBA), abscisic acid (ABA), cytokinins (such as Zeatin or Trans Zeatin Riboside), and ethylene, as well as a number of other regulators that do not fit cleanly into these specific classes.
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    Plant research and the study of how plant cells grow and function is an important field of study! Plant cell growth regulators, or phytohormones, affect the growth and differentiation of tissues, organs and plant cells. GoldBio carries regulators such as gibberellic acid, auxins (i.e. IAA or abscisic acid), and zeatin. GoldBio also carries bialaphos, a selective agent utilizing the pat and bar genes for transformation experiments. We also proudly carry Duchefa brand agars, the world leader in plant research reagents. Duchefa agar and agar substitutes are designed to be free of contaminants that would impede plant cell growth, ensuring a clean medium for your experiments. Our products deliver a stable and affordable way to grow and experiment with your plant cultures.

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  • Abscisic acid

    Product Description

    Abscisic Acid is a naturally occuring plant hormone involved in plant growth and stress response. It is produced partially via the mevalonic pathway in chloroplasts and other plastids. The production of ABA is accentuated by stress, including water loss or freezing temperatures. The activation of ABA can occur by one of two methods: 1) an ABA-glucose ester can form by attachment of glucose to ABA, or 2) the oxidation of ABA can occur to form phaseic acid and dihyhdrophaseic acid.

    The transport of ABA can occur in both xylem and phloem tissues, and it can also be translocated through paranchyma cells. Some functions of ABA include stimulating the closure of stomata, Inhibition of shoot growth, induction of seeds to synthesize storage proteins, inhibition of the effect of gibberellins and the induction of gene transcription in response to wounding (especially for proteinase inhibitors).

    Product Specifications:
    (+)-cis, trans-Abscisic acid (ABA, ABK)
    (+)-Abscisic Acid
    Dormin, Abscisin II
    (S)-5-(1-Hydroxy-2,6,6-trimethyl-4-oxocyclohex-2-en-1-yl)-3-methyl-[2Z,4E]-pentadienoic acid

    MOLECULAR BIOLOGY GRADE

    Formula: C15H20O4

    MW: 264.32 g/mol

    Storage/Handling: Store at -20°C. Protect from light.

    PubChem Chem ID: 5280896


    Abscisic Acid Stock Solution

    1. Weigh 1 g of Abscisic Acid.
    2. Add 10 ml of 95% EtOH (DMF or DMSO may also be used). Dissolve completely.
    3. Stock may be kept at -20°C for 1 year.

    Alternatively, Abscisic Acid is soluble in 0.1N NaOH at 20 mg/ml.

    Product Specifications

    Catalog ID A-050
    CAS # 21293-29-8
    MW 264.32 g/mol
    Grade MOLECULAR BIOLOGY GRADE
    Storage/Handling Store at -20°C. Protect from light.

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    On Sale:
    ${{ currentSelection.price }} ${{ currentSelection.sale_price }}
    Shipping:
    $9.99 Ground shipping (In continental US only.)

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