首页> 外文期刊>Journal of Plant Physiology >Biosynthesis pathway of indole-3-acetyl-myo-inositol during development of maize (Zea mays L.) seeds
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Biosynthesis pathway of indole-3-acetyl-myo-inositol during development of maize (Zea mays L.) seeds

机译:玉米(Zea Mays L.)种子发育过程中吲哚-3-乙酰基 - 肌醇的生物合成途径

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Indole-3-acetic acid (IAA) conjugation is one of the mechanisms responsible for auxin homeostasis. IAA ester conjugates biosynthesis has been studied during development of maize seeds where IAA-inositol (IAInos) and its glycosidic forms make up about 50 % of its ester conjugates pool. 1-O-indole-3-acetyl-beta-D-glucose (IAGlc) synthase and indole-3-acetyl transferase (IAInos synthase) are key enzymes in a two-step pathway of IAInos synthesis. In the first reaction, IAA is glucosylated to a high energy acetal, 1-O-indole-3-acetyl-beta-D-glucose by IAGlc synthase, whereas in the second step, IAInos synthase transfers IAA moiety to myo-inositol forming a stable auxin ester, indole-3-acetyl-myo-inositol (IAInos). It should be mentioned that IAGlc synthase catalyzes a reversible reaction with unfavourable equilibrium that delivers IAGlc for favourable transacylation to IAInos. This is the first study where IAGlc synthase and IAInos synthase are simultaneously analyzed by enzymatic activity assay and quantitative RT-PCR in maize seeds at four stages of development (13, 26, 39 and 52 Days After Flowering). Activity of IAGlc/IAInos synthases as well as their expression profiles during seed development were different. While both enzymatic activities and ZmIAIn expression were the highest in seeds at 26 DAF, the highest expression of ZmIAGlc was observed at 13 DAF. Protein gel blot analysis showed that IAInos synthase exists as a mixture of several isoforms at a similar protein level at particular stages of seed development. Neither of other ester conjugates of IAA (IAA-mannose) nor IAA-amino acids were detected at the stages studied. Catalytic activity of c-tryptophan aminotransferase involved in IAA biosynthesis as well as UDPG pyrophosphorylase, synthesizing UDPG as a substrate for IAGlc synthase, were also analyzed. L-tryptophan aminotransferase activity was the highest at 26 DAF. Changes in enzyme activity of UDPG pyrophosphorylase are difficult to interpret. Expression levels of ZmIPS and ZmIPP encoding two enzymes of myo-inositol biosynthesis pathway: inositol-x-phosphate synthase (IPS) and inositol-x-phosphate phosphatase (IPP), respectively, were analyzed. 26 DAF seeds displayed the highest expression level of ZmIPS, whereas transcription of ZmIPP was the highest at 13 DAF.
机译:吲哚-3-乙酸(IAA)缀合是负责养肝稳态的机制之一。在玉米种子的开发期间研究了IAA酯缀合物生物合成,其中IAA-IAINOSOL(IAINOS)及其糖苷形式构成其酯缀合物池的约50%。 1-O-吲哚-3-乙酰β-d-葡萄糖(IAGLC)合成酶和吲哚-3-乙酰转移酶(IAINOS合酶)是IAINOS合成的两步途径中的关键酶。在第一反应中,IAA通过IAGLC合成酶对高能缩醛,1-O-吲哚-3-乙酰β-d-葡萄糖葡萄糖苷化,而在第二步中,IAINOS合成酶将IAA部分转移到形成a的肌醇至肌醇。稳定的制氮酯,吲哚-3-乙酰基 - 肌醇(IAINOS)。应该提到IAGLC合成酶催化与不利平衡的可逆反应,以赋予IAINOS的IAGLC。这是通过酶活性测定和玉米种子的四个阶段在开发的四个阶段(开花后13,26,39和52天的玉米种子中的定量RT-PCR同时分析IAGLC Synthase和Iainos合酶的第一研究。 IAGLC / IAINOS合成酶的活性以及种子发育过程中的表达谱不同。虽然酶活性和Zmiain表达在26个DAF的种子中最高,但在13个DAF中观察到ZmiaGLC的最高表达。蛋白质凝胶印迹分析表明,Iainos合成酶作为几种同种型在种子发育的特定阶段的多种同种型的混合物存在。在所研究的阶段检测到IAA(IAA-MANNES)和IAA-氨基酸的其他酯缀合物。还分析了参与IAA生物合成的C-色氨酸氨基转移酶的催化活性,以及​​UDPG焦磷酸化酶,作为IAGLC合成酶的基材合成UDPG。 L-色氨酸氨基转移酶活性在26间DAF中最高。 UDPG焦磷酸化酶的酶活性的变化难以解释。分析了ZmIPS和ZMIPP的表达水平分别分析了肌醇肌醇生物合成途径的两种酶:分别分别进行肌醇-X-磷酸合酶(IPS)和肌醇-X-磷酸磷酸酶(IPP)。 26 DAF种子显示出ZMIP的最高表达水平,而Zmipp的转录是13个DAF的最高。

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