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在烟草营养生长期间,色氨酸依赖性和色氨酸非依赖性吲哚-3-乙酸生物合成的相对重要性。

The relative importance of tryptophan-dependent and tryptophan-independent biosynthesis of indole-3-acetic acid in tobacco during vegetative growth.

作者信息

Sitbon F, Astot C, Edlund A, Crozier A, Sandberg G

机构信息

Department of Forest Genetics and Plant Physiology, The Swedish University of Agricultural Sciences, Umeå.

出版信息

Planta. 2000 Oct;211(5):715-21. doi: 10.1007/s004250000338.

Abstract

A quantitative study of indole-3-acetic acid (IAA) turnover, and the contribution of tryptophan-dependent and tryptophan-independent IAA-biosynthesis pathways, was carried out using protoplast preparations and shoot apices obtained from wild-type and transgenic, IAA-overproducing tobacco (Nicotiana tabacum L.) plants, during a phase of growth when the level of endogenous IAA was stable. Based on the rate of disappearance of [13C6]IAA, the half-life of the IAA pool was calculated to be 1.1 h in wild-type protoplasts and 0.8 h in protoplasts from the IAA-overproducing line, corresponding to metabolic rates of 59 and 160 pg IAA (microg Chl)(-1) h(-1), respectively. The rate of conversion of tryptophan to IAA was 15 pg IAA (microg Chl)(-1) h(-1) in wild-type protoplasts and 101 pg IAA (microg Chl)(-1) h(-1) in protoplasts from IAA-overproducing plants. In both instances, IAA was metabolised more rapidly than it was synthesised from tryptophan. As the endogenous IAA pools were in a steady state, these findings indicate that IAA biosynthesis via the tryptophan-independent pathway was 44 pg IAA (microg Chl)(-1) h(-1) and 59 pg IAA (microg Chl)(-1) h(-1), respectively, in the wild-type and transformed protoplast preparations. In a parallel study with apical shoot tissue, the presumed site of IAA biosynthesis, the rate of tryptophan-dependent IAA biosynthesis exceeded the rate of metabolism of [13C6]IAA despite the steady state of the endogenous IAA pool. The most likely explanation for this anomaly is that, unlike the protoplast system, injection of substrates into the apical tissues did not result in uniform distribution of label, and that at least some of the [2H5]tryptophan was metabolised in compartments not normally active in IAA biosynthesis. This demonstrates the importance of using experimental systems where labelling of the precursor pool can be strictly controlled.

摘要

利用原生质体制备物和从野生型及转基因、过量产生吲哚 - 3 - 乙酸(IAA)的烟草(Nicotiana tabacum L.)植株获得的茎尖,在内源IAA水平稳定的生长阶段,对IAA周转以及色氨酸依赖性和色氨酸非依赖性IAA生物合成途径的贡献进行了定量研究。根据[13C6]IAA的消失速率,计算出野生型原生质体中IAA库的半衰期为1.1小时,过量产生IAA品系的原生质体中为0.8小时,分别对应代谢速率为59和160 pg IAA(μg Chl)(-1) h(-1)。野生型原生质体中色氨酸向IAA的转化速率为15 pg IAA(μg Chl)(-1) h(-1),过量产生IAA植株的原生质体中为101 pg IAA(μg Chl)(-1) h(-1)。在这两种情况下,IAA的代谢速度都比从色氨酸合成的速度快。由于内源IAA库处于稳定状态,这些发现表明,在野生型和转化的原生质体制备物中,通过色氨酸非依赖性途径的IAA生物合成分别为44 pg IAA(μg Chl)(-1) h(-1)和59 pg IAA(μg Chl)(-1) h(-1)。在与茎尖组织的平行研究中,IAA生物合成的假定部位,尽管内源IAA库处于稳定状态,但色氨酸依赖性IAA生物合成速率超过了[13C6]IAA的代谢速率。对此异常现象最可能的解释是,与原生质体系统不同,将底物注入茎尖组织并未导致标记均匀分布,并且至少一些[2H⁵]色氨酸在通常对IAA生物合成无活性的区室中被代谢。这证明了使用能够严格控制前体库标记的实验系统的重要性。

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