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Developmental Regulation of Indole-3-Acetic Acid Turnover in Scots Pine Seedlings

机译:吲哚3-乙酸的周转规律。 苏格兰松树苗

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摘要

Indole-3-acetic acid (IAA) homeostasis was investigated during seed germination and early seedling growth in Scots pine (Pinus sylvestris). IAA-ester conjugates were initially hydrolyzed in the seed to yield a peak of free IAA prior to initiation of root elongation. Developmental regulation of IAA synthesis was observed, with tryptophan-dependent synthesis being initiated around 4 d and tryptophan-independent synthesis occurring around 7 d after imbibition. Induction of catabolism to yield 2-oxindole-3-acetic acid and irreversible conjugation to indole-3-acetyl-N-aspartic acid was noticed at the same time as de novo synthesis was first detected. As a part of the homeostatic regulation IAA was further metabolized to two new conjugates: glucopyranosyl-1-N-indole-3-acetyl-N-aspartic acid and glucopyranosyl-1-N-indole-3-acetic acid. The initial supply of IAA thus originates from stored pools of IAA-ester conjugates, mainly localized in the embryo itself rather than in the general nutrient storage tissue, the megagametophyte. We have found that de novo synthesis is first induced when the stored pool of conjugated IAA is used up and additional hormone is needed for elongation growth. It is interesting that when de novo synthesis is induced, a distinct induction of catabolic events occurs, indicating that the seedling needs mechanisms to balance synthesis rates for the homeostatic regulation of the IAA pool.
机译:研究了樟子松(Pinus sylvestris)种子萌发和幼苗早期生长过程中的吲哚-3-乙酸(IAA)稳态。首先在种子中水解IAA-酯共轭物,以产生游离IAA峰,然后再开始根伸长。观察到IAA合成的发育调节,在吸收后约4 d开始色氨酸依赖性合成,在吸收后约7 d发生色氨酸非依赖性合成。在首次检测到从头合成的同时,注意到诱导分解代谢产生2-氧吲哚-3-乙酸和不可逆地与吲哚-3-乙酰基-N-天冬氨酸结合。作为稳态调节的一部分,IAA被进一步代谢为两种新的结合物:吡喃葡萄糖基-1-N-吲哚-3-乙酰基-N-天门冬氨酸和吡喃葡萄糖基-1-N-吲哚-3-乙酸。因此,IAA的初始供应源于IAA-酯共轭物的储存库,该库主要位于胚胎本身而不是胚胎中。 一般的营养储存组织,大型配子体。我们发现 从头开始合成时, 结合的IAA已用完,还需要其他激素 伸长率增长。有趣的是,当从头合成是 诱导,发生分解代谢事件的明显诱导,表明 幼苗需要机制来平衡 IAA库的稳态调节。

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