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解析大麻下胚轴中单宁衍生产物生物合成的分子调控。

Insights into the molecular regulation of monolignol-derived product biosynthesis in the growing hemp hypocotyl.

机构信息

Environmental Research and Innovation Department (ERIN), Luxembourg Institute of Science and Technology (LIST), L-4362, Esch/Alzette, Luxembourg.

Groupe de Recherche en Physiologie Végétale (GRPV), Earth and Life Institute - Agronomy (ELI-A), Université catholique de Louvain (UcL), 1348, Louvain-la-Neuve, Belgium.

出版信息

BMC Plant Biol. 2018 Jan 2;18(1):1. doi: 10.1186/s12870-017-1213-1.

Abstract

BACKGROUND

Lignin and lignans are both derived from the monolignol pathway. Despite the similarity of their building blocks, they fulfil different functions in planta. Lignin strengthens the tissues of the plant, while lignans are involved in plant defence and growth regulation. Their biosyntheses are tuned both spatially and temporally to suit the development of the plant (water conduction, reaction to stresses). We propose to study the general molecular events related to monolignol-derived product biosynthesis, especially lignin. It was previously shown that the growing hemp hypocotyl (between 6 and 20 days after sowing) is a valid system to study secondary growth and the molecular events accompanying lignification. The present work confirms the validity of this system, by using it to study the regulation of lignin and lignan biosynthesis. Microscopic observations, lignin analysis, proteomics, together with in situ laccase and peroxidase activity assays were carried out to understand the dynamics of lignin synthesis during the development of the hemp hypocotyl.

RESULTS

Based on phylogenetic analysis and targeted gene expression, we suggest a role for the hemp dirigent and dirigent-like proteins in lignan biosynthesis. The transdisciplinary approach adopted resulted in the gene- and protein-level quantification of the main enzymes involved in the biosynthesis of monolignols and their oxidative coupling (laccases and class III peroxidases), in lignin deposition (dirigent-like proteins) and in the determination of the stereoconformation of lignans (dirigent proteins).

CONCLUSIONS

Our work sheds light on how, in the growing hemp hypocotyl, the provision of the precursors needed to synthesize the aromatic biomolecules lignin and lignans is regulated at the transcriptional and proteomic level.

摘要

背景

木质素和木脂素均来源于苯丙素途径。尽管它们的结构单元相似,但在植物中它们发挥着不同的功能。木质素增强植物组织的强度,而木脂素参与植物防御和生长调节。它们的生物合成在空间和时间上都进行了调整,以适应植物的发育(水分传导、应激反应)。我们拟研究与苯丙素衍生产物生物合成相关的一般分子事件,特别是木质素。先前的研究表明,生长中的大麻下胚轴(播种后 6 至 20 天)是研究次生生长和木质化伴随的分子事件的有效系统。本研究通过使用该系统研究木质素和木脂素生物合成的调控,证实了该系统的有效性。通过进行微观观察、木质素分析、蛋白质组学研究,以及原位漆酶和过氧化物酶活性测定,以了解大麻下胚轴发育过程中木质素合成的动态变化。

结果

基于系统发育分析和靶向基因表达,我们提出大麻引导蛋白和引导蛋白样蛋白在木脂素生物合成中的作用。采用跨学科方法,对涉及苯丙素生物合成及其氧化偶联(漆酶和 III 类过氧化物酶)、木质素沉积(引导蛋白样蛋白)以及木脂素立体构型确定(引导蛋白)的主要酶的基因和蛋白水平进行了定量。

结论

我们的工作阐明了在生长中的大麻下胚轴中,如何在转录和蛋白质组水平上调节合成芳香族生物分子木质素和木脂素所需的前体物质的供应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cda/5749015/5b17f7effe0f/12870_2017_1213_Fig1_HTML.jpg

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