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石竹Cys2/His2锌指转录因子家族成员在雌雄异株花发育过程及一个新的雄蕊缺陷突变体ssf1中的分析

Analysis of members of the Silene latifolia Cys2/His2 zinc-finger transcription factor family during dioecious flower development and in a novel stamen-defective mutant ssf1.

作者信息

Jenkins Thomas H, Li Jinhong, Scutt Charles P, Gilmartin Philip M

机构信息

Centre for Plant Sciences, Faculty of Biological Sciences, The University of Leeds, Leeds, LS2 9JT, UK.

出版信息

Planta. 2005 Feb;220(4):559-71. doi: 10.1007/s00425-004-1365-8. Epub 2004 Sep 30.

Abstract

Sex determination in dioecious Silene latifolia Poir. is governed by the inheritance of heteromorphic sex chromosomes. In male plants the Y chromosome influences two aspects of male organogenesis, the continued differentiation of stamen primordia and male fertility, and one aspect of female organogenesis, the arrest of development of the pistil. S. latifolia is susceptible to infection by the parasitic smut fungus Ustilago violacea, which induces stamen development in genetically female plants. Here we describe the identification and characterisation of a novel male mutant, short stamen filaments 1 (ssf1), defective in stamen differentiation. Although several independent studies have identified genes expressed during sex-determination in S. latifolia, analyses suggest that none of these encode regulatory proteins involved in the control of sex determination. We therefore isolated six S. latifolia cDNAs encoding members of a family of transcriptional regulators, the ZPT-type Cys2/His2 zinc-finger proteins that had previously shown to be co-ordinately regulated during stamen development in Petunia x hybrida hort. Vilm.-Andr. We have analysed the genomic organisation of these genes in male and female plants and their expression dynamics in male and female plants, in smut-infected female plants and in the ssf1 mutant. Our studies reveal expression patterns during development of the androecium that suggest a possible role for SlZPT2-1 in filament elongation and SlZPT4-1 in aspects of male fertility during stamen differentiation.

摘要

雌雄异株的宽叶蝇子草(Silene latifolia Poir.)的性别决定受异形性染色体遗传的控制。在雄性植株中,Y染色体影响雄性器官发生的两个方面,即雄蕊原基的持续分化和雄性育性,以及雌性器官发生的一个方面,即雌蕊发育的停滞。宽叶蝇子草易受寄生黑粉菌(Ustilago violacea)感染,该真菌可诱导遗传上为雌性的植株发育出雄蕊。在此,我们描述了一个新的雄性突变体——短雄蕊丝1(ssf1)的鉴定和特征,该突变体在雄蕊分化方面存在缺陷。尽管有几项独立研究已鉴定出宽叶蝇子草性别决定过程中表达的基因,但分析表明这些基因均不编码参与性别决定控制的调控蛋白。因此,我们分离出了六个宽叶蝇子草cDNA,它们编码一个转录调节因子家族的成员,即ZPT型Cys2/His2锌指蛋白,此前已证明这些蛋白在矮牵牛(Petunia x hybrida hort. Vilm.-Andr.)雄蕊发育过程中受到协同调控。我们分析了这些基因在雄性和雌性植株中的基因组结构,以及它们在雄性和雌性植株、受黑粉菌感染的雌性植株和ssf1突变体中的表达动态。我们的研究揭示了雄蕊发育过程中的表达模式,这表明SlZPT2 - 1可能在花丝伸长中发挥作用,而SlZPT4 - 1可能在雄蕊分化过程中的雄性育性方面发挥作用。

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