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拟南芥AtbZIP34是拟南芥花粉壁模式形成以及发育中花粉的几种代谢途径调控所必需的。

AtbZIP34 is required for Arabidopsis pollen wall patterning and the control of several metabolic pathways in developing pollen.

作者信息

Gibalová Antónia, Renák David, Matczuk Katarzyna, Dupl'áková Nikoleta, Cháb David, Twell David, Honys David

机构信息

Laboratory of Pollen Biology, Institute of Experimental Botany ASCR, Rozvojová 263, Prague 6, Czech Republic.

出版信息

Plant Mol Biol. 2009 Jul;70(5):581-601. doi: 10.1007/s11103-009-9493-y. Epub 2009 May 18.

Abstract

Sexual plant reproduction depends on the production and differentiation of functional gametes by the haploid gametophyte generation. Currently, we have a limited understanding of the regulatory mechanisms that have evolved to specify the gametophytic developmental programs. To unravel such mechanisms, it is necessary to identify transcription factors (TF) that are part of such haploid regulatory networks. Here we focus on bZIP TFs that have critical roles in plants, animals and other kingdoms. We report the functional characterization of Arabidopsis thaliana AtbZIP34 that is expressed in both gametophytic and surrounding sporophytic tissues during flower development. T-DNA insertion mutants in AtbZIP34 show pollen morphological defects that result in reduced pollen germination efficiency and slower pollen tube growth both in vitro and in vivo. Light and fluorescence microscopy revealed misshapen and misplaced nuclei with large lipid inclusions in the cytoplasm of atbzip34 pollen. Scanning and transmission electron microscopy revealed defects in exine shape and micropatterning and a reduced endomembrane system. Several lines of evidence, including the AtbZIP34 expression pattern and the phenotypic defects observed, suggest a complex role in male reproductive development that involves a sporophytic role in exine patterning, and a sporophytic and/or gametophytic mode of action of AtbZIP34 in several metabolic pathways, namely regulation of lipid metabolism and/or cellular transport.

摘要

有性植物繁殖依赖于单倍体配子体世代产生功能性配子并进行分化。目前,我们对进化出的用于指定配子体发育程序的调控机制了解有限。为了阐明这些机制,有必要鉴定作为此类单倍体调控网络一部分的转录因子(TF)。在这里,我们聚焦于在植物、动物和其他生物界中发挥关键作用的bZIP转录因子。我们报告了拟南芥AtbZIP34的功能特性,该基因在花发育过程中在配子体和周围的孢子体组织中均有表达。AtbZIP34的T-DNA插入突变体表现出花粉形态缺陷,导致体外和体内花粉萌发效率降低以及花粉管生长减慢。光学显微镜和荧光显微镜观察发现,atbzip34花粉细胞质中的细胞核畸形且位置异常,伴有大量脂质内含物。扫描电子显微镜和透射电子显微镜观察揭示了花粉外壁形状和微图案的缺陷以及内膜系统的减少。包括AtbZIP34表达模式和所观察到的表型缺陷在内的多条证据表明,AtbZIP34在雄性生殖发育中具有复杂作用,包括在花粉外壁图案形成中发挥孢子体作用,以及在脂质代谢和/或细胞运输等多种代谢途径中以孢子体和/或配子体作用模式发挥作用。

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