首页> 外文OA文献 >Metabolism and Synthesis of Indole-3-Acetic Acid (IAA) in Zea mays (Levels of IAA during Kernel Development and the Use of in Vitro Endosperm Systems for Studying IAA Biosynthesis).
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Metabolism and Synthesis of Indole-3-Acetic Acid (IAA) in Zea mays (Levels of IAA during Kernel Development and the Use of in Vitro Endosperm Systems for Studying IAA Biosynthesis).

机译:玉米中吲哚-3-乙酸(IAA)的代谢和合成(内核发育过程中的IAA水平以及体外胚乳系统用于研究IAA生物合成的用途)。

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摘要

Kernels of Zea mays on an intact plant accumulate indole-3-acetic acid (IAA) at the rate of 190 ng g-1 fresh weight h-1. Of the IAA synthesized, 97% is in the esterified form and less than 3% remains as the free acid. The site of biosynthesis of the IAA, whether synthesized in the leaf and transported to the kernel, or in the kernel and remaining in the kernel, has not been established. In an attempt to determine the locus of synthesis, we grew isolated kernels on agar media not containing tryptophan or other possible aromatic precursors of IAA and observed IAA synthesis of 99 ng g-1 fresh weight h-1, approximately 52% of the in situ rate. Thus, the kernel contains all of the enzymes required for de novo aromatic biosynthesis of IAA and its ester conjugates. Furthermore, endosperm cells in suspension culture, grown on hormone-free media and in the absence of aromatic precursors, are able to synthesize IAA at a rate of 9.2 ng g-1 fresh weight h-1, or 4.8% of the in situ rate. This finding establishes that all of the enzymes of IAA biosynthesis occur in the endosperm and that the endosperm is a site of IAA biosynthesis. Isolated endosperm, prepared from developing kernels, synthesized IAA from labeled anthranilate at a rate of 8.6 ng g-1 fresh weight h-1, or 4.5% of the in situ rate. Frozen endosperm preparations maintained the ability to synthesize labeled IAA from labeled anthranilate. The identity of the synthesized IAA was established by mass spectral analysis. We suggest that endosperm preparations of Z. mays are suitable for study of the mechanism(s) of IAA biosynthesis because they (a) have high rates of synthesis; (b) show stability to freezing, enabling enzyme storage; (c) provide a system with a known rate of in situ synthesis; and (d) are available in large amounts for use as an enzyme source.
机译:完整植物上玉米Ze的仁以190 ng g-1鲜重h-1的速率积累吲哚-3-乙酸(IAA)。合成的IAA中,有97%为酯化形式,而剩余的少于3%为游离酸。尚未确定IAA的生物合成位点,无论其是在叶片中合成并运输到果仁,还是在果仁中并保留在果仁中。为了确定合成的位置,我们在不含色氨酸或其他可能的IAA芳香族前体的琼脂培养基上生长了分离的谷粒,并观察到IAA合成了99 ng g-1鲜重h-1,约占原位的52%率。因此,仁包含IAA及其酯缀合物从头进行芳族生物合成所需的所有酶。此外,悬浮培养的胚乳细胞在无激素的培养基上生长,并且在没有芳香族前体的情况下,能够以9.2 ng g-1鲜重h-1的速率或原位速率的4.8%合成IAA。 。该发现证实IAA生物合成的所有酶均在胚乳中发生,并且胚乳是IAA生物合成的位点。由发育中的籽粒制备的分离的胚乳,以标记的邻氨基苯甲酸酯合成IAA,速率为8.6 ng g-1鲜重h-1,或原位转化率的4.5%。冷冻的胚乳制品保持了从标记的邻氨基苯甲酸酯合成标记的IAA的能力。通过质谱分析确定了合成的IAA的身份。我们建议,玉米(Z. mays)的胚乳制剂适合研究IAA生物合成的机理,因为它们(a)具有很高的合成速率; (b)表现出对冷冻的稳定性,可以储存酶; (c)提供一种具有已知原位合成速率的系统; (d)可以大量用作酶源。

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