首页> 外文OA文献 >Conjugation of Indole-3-Acetic Acid (IAA) in Wild-Type and IAA-Overprodcing Transgenic Tobacco Plants, and Identification of the Main Conjugates by Frit-Fast Atom Bombardment Liquid Chromatography-Mass Spectrometry.
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Conjugation of Indole-3-Acetic Acid (IAA) in Wild-Type and IAA-Overprodcing Transgenic Tobacco Plants, and Identification of the Main Conjugates by Frit-Fast Atom Bombardment Liquid Chromatography-Mass Spectrometry.

机译:野生型和IAA生产过剩的转基因烟草植物中吲哚-3-乙酸(IAA)的缀合,以及通过熔体-快速原子轰击液相色谱-质谱法鉴定主要缀合物。

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摘要

Transgenic plants overproducing indole-3-acetic acid (IAA) from expression of the Agrobacterium tumefaciens T-DNA IAA biosynthesis genes were used to study the conjugation of IAA. At the 11-node stage, free IAA, as well as ester- and amide-conjugated IAA, was analyzed in wild-type tobacco SR1 and in transgenic plants denoted 35S-iaaM/iaaH (line C) and 35S-iaaM x 35S-iaaH (line X). The transgenic plants contained increased levels of both free and conjugated IAA, and the main increase in IAA conjugates occurred in amide conjugates. Two amide conjugates were identified by fritfast atom bombardment liquid chromatography-mass spectrometry as indole-3-acetylaspartic acid (IAAsp) and indole-3-acetylglutamic acid (IAGlu), and one ester conjugate was identified as indole-3-acetylglucose. IAAsp and IAGlu were also identified as endogenous substances in wild-type plants. In wild-type plants, the percent of total IAA in the free form was significantly higher in young leaves (73 [plus or minus] 7%, SD) than in old leaves (36 [plus or minus] 8%), whereas there was no difference between young (73 [plus or minus] 8%) and old internodes (70 [plus or minus] 9%). In IAA-overproducing transformants, both free and conjugated IAA levels were increased, but the percent free IAA was maintained constant (57 [plus or minus] 10%) for both leaves and internodes, independent of the total IAA level or tissue age. These results suggest that synthesis or transport of IAA conjugates is regulated in the vegetative wild-type plant, and that different organs possess a unique balance between free and conjugated IAA. The IAA-overproducing plant, however, acquires a lower proportion of free IAA in the stem and younger leaves, presumably determined by a higher conjugation in those tissues compared with wild type.
机译:从根癌土壤杆菌T-DNA IAA生物合成基因的表达过量生产吲哚-3-乙酸(IAA)的转基因植物用于研究IAA的缀合。在11个节点的阶段,对野生型烟草SR1和表示为35S-iaaM / iaaH(系C)和35S-iaaM x 35S-的转基因植物中的游离IAA以及酯和酰胺共轭的IAA进行了分析。 iaaH(X行)。转基因植物中游离和结合IAA的含量均增加,IAA结合物的主要增加发生在酰胺结合物中。通过玻璃原子轰击液相色谱-质谱法鉴定了两种酰胺偶联物,分别为吲哚-3-乙酰基天冬氨酸(IAAsp)和吲哚-3-乙酰基谷氨酸(IAGlu),一种酯偶联物为吲哚-3-乙酰基葡萄糖。 IAAsp和IAGlu也被确定为野生型植物中的内源性物质。在野生型植物中,幼叶中游离态总IAA的百分比显着高于幼叶(73 [正负] 7%,SD),而老叶(36 [正负] 8%)显着更高。在年轻的(73个正负8%)和老的节间(70个正负9%)之间没有差异。在过量生产IAA的转化子中,游离IAA和结合IAA的水平都增加了,但是叶和节间的游离IAA的百分比均保持恒定(57 [正负10%]),而与总IAA水平或组织年龄无关。这些结果表明,在营养性野生型植物中IAA缀合物的合成或运输受到调节,并且不同的器官在游离和缀合的IAA之间具有独特的平衡。但是,过量生产IAA的植物在茎和幼叶中获得的游离IAA比例较低,这大概是由于与野生型相比,这些组织中的结合较高。

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