首页> 美国卫生研究院文献>Plant Physiology >The TRAF Mediated Gametogenesis Progression (TRAMGaP) Gene Is Required for Megaspore Mother Cell Specification and Gametophyte Development
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The TRAF Mediated Gametogenesis Progression (TRAMGaP) Gene Is Required for Megaspore Mother Cell Specification and Gametophyte Development

机译:大孢子母细胞规格和配子体发育需要TRAF介导的配子发生进展(TRAMGaP)基因。

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摘要

In plants, the role of TRAF-like proteins with meprin and the TRAF homology (MATH) domain is far from clear. In animals, these proteins serve as adapter molecules to mediate signal transduction from Tumor Necrosis Factor Receptor to downstream effector molecules. A seed-sterile mutant with a disrupted TRAF-like gene (At5g26290) exhibiting aberrant gametogenesis led us to investigate the developmental role of this gene in Arabidopsis (Arabidopsis thaliana). The mutation was semidominant and resulted in pleiotropic phenotypes with such features as short siliques with fewer ovules, pollen and seed sterility, altered Megaspore Mother Cell (MMC) specification, and delayed programmed cell death in megaspores and the tapetum, features that overlapped those in other well-characterized mutants. Seed sterility and reduced transmission frequency of the mutant alleles pointed to a dual role, sporophytic and gametophytic, for the gene on the male side. The mutant also showed altered expression of various genes involved in such cellular and developmental pathways as regulation of transcription, biosynthesis and transport of lipids, hormone-mediated signaling, and gametophyte development. The diverse phenotypes of the mutant and the altered expression of key genes related to gametophyte and seed development could be explained based on the functional similarly between At5g26290 and MATH-BTB domain proteins that modulate gene expression through the ubiquitin-mediated proteasome system. These results show a novel link between a TRAF-like gene and reproductive development in plants.
机译:在植物中,类似TRAF的蛋白与甲铁蛋白和TRAF同源性(MATH)域的作用尚不清楚。在动物中,这些蛋白质充当衔接分子,以介导从肿瘤坏死因子受体到下游效应分子的信号转导。具有破坏性TRAF样基因(At5g26290)的种子不育突变体表现出异常的配子发生,导致我们研究了该基因在拟南芥(Arabidopsis thaliana)中的发育作用。突变是半显性的,并导致多效性表型,具有以下特征:短角果,胚珠少,花粉和种子不育,改变了大孢子母细胞(MMC)的规格,并延迟了大孢子和绒毡层中程序性细胞死亡,这些特征与其他特征重叠充分表征的突变体。种子不育和突变等位基因的减少的传播频率表明,雄性侧基因具有双重作用,即孢子体和配子体。该突变体还显示出涉及诸如转录调节,脂质的生物合成和运输,激素介导的信号传导以及配子体发育等细胞和发育途径的各种基因的表达发生了改变。可以基于At5g26290和MATH-BTB结构域蛋白之间的功能相似(通过泛素介导的蛋白酶体系统调节基因表达)来解释突变体的不同表型以及与配子体和种子发育相关的关键基因表达的改变。这些结果表明类TRAF基因与植物生殖发育之间的新型联系。

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