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两型种子:二型蒴果模式种阿拉伯遏蓝菜(十字花科)种皮分化的发育模式和机制。

A tale of two morphs: developmental patterns and mechanisms of seed coat differentiation in the dimorphic diaspore model Aethionema arabicum (Brassicaceae).

机构信息

Department of Biological Sciences, Royal Holloway University of London, Egham, TW20 0EX, UK.

Matthias Schleiden Institute/Genetics, Friedrich Schiller University Jena, Jena, D-07743, Germany.

出版信息

Plant J. 2021 Jul;107(1):166-181. doi: 10.1111/tpj.15283. Epub 2021 May 18.

DOI:10.1111/tpj.15283
PMID:33945185
Abstract

The developmental transition from a fertilized ovule to a dispersed diaspore (seed or fruit) involves complex differentiation processes of the ovule's integuments leading to the diversity in mature seed coat structures in angiosperms. In this study, comparative imaging and transcriptome analysis were combined to investigate the morph-specific developmental differences during outer seed coat differentiation and mucilage production in Aethionema arabicum, the Brassicaceae model for diaspore dimorphism. One of the intriguing adaptations of this species is the production and dispersal of morphologically distinct, mucilaginous and non-mucilaginous diaspores from the same plant (dimorphism). The dehiscent fruit morph programme producing multiple mucilaginous seed diaspores was used as the default trait combination, similar to Arabidopsis thaliana, and was compared with the indehiscent fruit morph programme leading to non-mucilaginous diaspores. Synchrotron-based radiation X-ray tomographic microscopy revealed a co-ordinated framework of morph-specific early changes in internal anatomy of developing A. arabicum gynoecia including seed abortion in the indehiscent programme and mucilage production by the mucilaginous seed coat. The associated comparative analysis of the gene expression patterns revealed that the unique seed coat dimorphism of Ae. arabicum provides an excellent model system for comparative study of the control of epidermal cell differentiation and mucilage biosynthesis by the mucilage transcription factor cascade and their downstream cell wall and mucilage remodelling genes. Elucidating the underlying molecular framework of the dimorphic diaspore syndrome is key to understanding differential regulation of bet-hedging survival strategies in challenging environments, timely in the face of global climatic change.

摘要

从受精卵到分散的孢子(种子或果实)的发育转变,涉及胚珠的表皮的复杂分化过程,导致被子植物成熟种皮结构的多样性。在这项研究中,比较成像和转录组分析相结合,研究了在 Aethionema arabicum 中外种皮分化和粘液产生过程中的形态特异发育差异,Aethionema arabicum 是孢子二态性的拟南芥科模型。该物种的一个有趣的适应是从同一植物(二态性)产生形态上不同的粘液和非粘液孢子。开裂果实形态程序产生多个粘液种子孢子,被用作默认特征组合,类似于拟南芥,并与导致非粘液孢子的不开裂果实形态程序进行了比较。基于同步加速器的辐射 X 射线断层显微镜揭示了发育中的 A. arabicum 雌蕊内部解剖结构的形态特异早期变化的协调框架,包括不开裂程序中的种子败育和粘液种子皮的粘液产生。相关的基因表达模式比较分析表明,Ae. arabicum 的独特种皮二态性为比较研究粘液转录因子级联及其下游细胞壁和粘液重塑基因对表皮细胞分化和粘液生物合成的控制提供了一个极好的模型系统。阐明二态性孢子综合征的潜在分子框架是理解在具有挑战性的环境中差异调节贝叶斯生存策略的关键,而在全球气候变化的背景下,这一点尤为重要。

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