首页> 美国卫生研究院文献>Plant Physiology >Movement of Indole-3-acetic Acid and Tryptophan-derived Indole-3-acetic Acid from the Endosperm to the Shoot of Zea mays L.
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Movement of Indole-3-acetic Acid and Tryptophan-derived Indole-3-acetic Acid from the Endosperm to the Shoot of Zea mays L.

机译:吲哚-3-乙酸和色氨酸衍生的吲哚-3-乙酸从胚乳到玉米芽的运动

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摘要

The structures and the concentrations of all of the indolylic compounds that occur in the endosperm of the seeds of corn (Zea mays L.) are known. Thus, it should be possible to determine which, if any, of the indolylic compounds of the endosperm can be transported to the seedling in significant amounts and thus help identify the seed-auxin precursor of Cholodny (1935. Planta 23:289-312) and Skoog (1937. J. Gen. Physiol. 20:311-334). Of interest is the transport of tryptophan, indole-3-acetic acid (IAA), and the esters of IAA, which comprise 95% of the IAA compounds of the seed. We have shown that: (a) IAA can move from the endosperm to the shoot; (b) the rate of movement of IAA from endosperm to shoot is that of simple diffusion; (c) 98% of the transported IAA is converted into compounds other than IAA, or IAA esters, en route; (d) some of the IAA that has moved into the shoot has been esterified; (e) labeled tryptophan applied to the endosperm can be found as labeled IAA in the shoot; and (f) with certain assumptions concerning IAA turnover, the rate of movement of IAA and tryptophan-derived IAA from the endosperm to shoot is inadequate for shoot growth or to maintain IAA levels in the shoot.
机译:已知存在于玉米(Zea mays L.)种子的胚乳中的所有二烯丙基化合物的结构和浓度。因此,应该有可能确定哪些胚乳的二烯丙基化合物(如果有的话)可以大量运输到幼苗,从而帮助鉴定Cholodny的种子生长素前体(1935. Planta 23:289-312)。和Skoog(1937. J. Gen. Physiol。20:311-334)。令人关注的是色氨酸,吲哚-3-乙酸(IAA)和IAA的酯类的转运,其中IAA占种子中IAA化合物的95%。我们已经表明:(a)IAA可以从胚乳移到芽上; (b)IAA从胚乳到芽的移动速率是简单扩散的速率; (c)在运输途中,有98%的IAA转化为IAA或IAA酯以外的化合物; (d)已移入芽中的一些IAA已被酯化; (e)在芽中可以发现标记为色氨酸的色氨酸已被标记为IAA; (f)在有关IAA转换的某些假设下,IAA和色氨酸衍生的IAA从胚乳移动到芽的移动速率不足以维持芽的生长或维持芽中IAA的水平。

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