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沿白 Lupin 丛生根发育的根原基的解剖学和激素描述。

Anatomical and hormonal description of rootlet primordium development along white lupin cluster root.

机构信息

BPMP, University of Montpellier, CNRS, INRA, SupAgro, Montpellier, France.

出版信息

Physiol Plant. 2019 Jan;165(1):4-16. doi: 10.1111/ppl.12714. Epub 2018 Jul 26.

Abstract

Cluster root (CR) is one of the most spectacular plant developmental adaptations to hostile environment. It can be found in a few species from a dozen botanical families, including white lupin (Lupinus albus) in the Fabaceae family. These amazing structures are produced in phosphate-deprived conditions and are made of hundreds of short roots also known as rootlets. White lupin is the only crop bearing CRs and is considered as the model species for CR studies. However, little information is available on CRs atypical development, including the molecular events that trigger their formation. To provide insights on CR formation, we performed an anatomical and cellular description of rootlet development in white lupin. Starting with a classic histological approach, we described rootlet primordium development and defined eight developmental stages from rootlet initiation to their emergence. Due to the major role of hormones in the developmental program of root system, we next focussed on auxin-related mechanisms. We observed the establishment of an auxin maximum through rootlet development in transgenic roots expressing the DR5:GUS auxin reporter. Expression analysis of the main auxin-related genes [TIR, Auxin Response Factor (ARF) and AUX/IAA] during a detailed time course revealed specific expression associated with the formation of the rootlet primordium. We showed that L. albus TRANSPORT INHIBITOR RESPONSE 1b is expressed during rootlet primordium formation and that L. albus AUXIN RESPONSE FACTOR 5 is expressed in the vasculature but absent in the primordium itself. Altogether, our results describe the very early cellular events leading to CR formation and reveal some of the auxin-related mechanisms.

摘要

丛生根(CR)是植物适应恶劣环境的最显著的发育适应之一。它可以在十几个植物科的少数物种中发现,包括豆科的白 Lupinus albus。这些令人惊叹的结构是在缺磷的条件下产生的,由数百个短根组成,也称为根毛。白 Lupinus 是唯一具有 CR 的作物,被认为是 CR 研究的模式物种。然而,关于 CR 的非典型发育的信息很少,包括触发其形成的分子事件。为了深入了解 CR 的形成,我们对白 Lupinus 根毛发育进行了解剖学和细胞学描述。首先采用经典的组织学方法,我们描述了根毛原基的发育,并从根毛起始到出现定义了八个发育阶段。由于激素在根系发育程序中起着重要作用,我们接下来重点研究了与生长素相关的机制。我们观察到,在表达 DR5:GUS 生长素报告基因的转基因根中,通过根毛发育建立了生长素最大值。在详细的时间过程中对主要生长素相关基因(TIR、Auxin Response Factor (ARF) 和 AUX/IAA)的表达分析表明,与根毛原基形成相关的特定表达。我们表明,L. albus TRANSPORT INHIBITOR RESPONSE 1b 在根毛原基形成过程中表达,而 L. albus AUXIN RESPONSE FACTOR 5 在脉管系统中表达,但在原基本身中不存在。总之,我们的结果描述了导致 CR 形成的早期细胞事件,并揭示了一些与生长素相关的机制。

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