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Biosynthetic Pathways of Brassinolide in Arabidopsis1

机译:油菜素内酯在拟南芥中的生物合成途径

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摘要

Our previous studies on the endogenous brassinosteroids (BRs) in Arabidopsis have provided suggestive evidence for the operation of the early C6-oxidation and the late C6-oxidation pathways, leading to brassinolide (BL) in Arabidopsis. However, to date the in vivo operation of these pathways has not been fully confirmed in this species. This paper describes metabolic studies using deuterium-labeled BRs in wild-type and BR-insensitive mutant (bri1) seedlings to establish the intermediates of the biosynthetic pathway of BL in Arabidopsis. The first evidence for the conversion of campestanol to 6-deoxocathasterone and the conversion of 6-deoxocathasterone to 6-deoxoteasterone is provided. The later biosynthetic steps (6-deoxoteasterone → 3-dehydro-6-deoxoteasterone → 6-deoxotyphasterol → 6-deoxocastasterone → 6α-hydroxycastasterone → castasterone → BL) were demonstrated by stepwise metabolic experiments. Therefore, these studies complete the documentation of the late C6-oxidation pathway. The biosynthetic sequence involved in the early C6-oxidation pathway (teasterone → 3-dehydroteasterone → typhasterol → castasterone → BL) was also demonstrated. These results show that both the early and late C6-oxidation pathways are functional in Arabidopsis. In addition we report two new observations: the presence of a new branch in the pathway, C6 oxidation of 6-deoxotyphasterol to typhasterol, and increased metabolic flow in BR-insensitive mutants.
机译:我们先前对拟南芥中内源油菜素类固醇(BRs)的研究为早期C6氧化和后期C6氧化途径的运作提供了暗示性证据,从而导致拟南芥中的油菜素内酯(BL)。然而,迄今为止,在该物种中尚未完全证实这些途径的体内操作。本文描述了使用氘标记的BR在野生型和BR不敏感的突变体(bri1)幼苗中建立BL拟南芥生物合成途径的中间体的代谢研究。提供了有关将樟脑甾醇转化为6-脱氧茶甾酮和将6-脱氧邻苯二酮转化为6-脱氧孕酮的第一个证据。通过逐步代谢实验证明了随后的生物合成步骤(6-脱氧孕甾酮→3-脱氢-6-脱氧孕甾酮→6-脱氧邻苯二酚→6-脱氧孕甾酮→6α-羟基castasterone→雌甾烷酮→BL)。因此,这些研究完成了晚期C6-氧化途径的文献记录。还证明了参与早期C6-氧化途径的生物合成序列(雌甾烷酮→3-脱氢雌甾酮→邻苯二酚→雌甾酮→BL)。这些结果表明,早期和晚期C6-氧化途径在拟南芥中均起作用。此外,我们报告了两个新观察结果:该途径中存在新的分支,6-脱氧邻苯二酚的C6氧化为邻苯二酚和BR不敏感的突变体中新陈代谢的增加。

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