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KNOX基因的自发突变在金鱼草中产生了一种新的花结构。

Spontaneous mutations in KNOX genes give rise to a novel floral structure in Antirrhinum.

作者信息

Golz John F, Keck Emma J, Hudson Andrew

机构信息

Institute of Cell and Molecular Biology, University of Edinburgh, King's Buildings, Mayfield Road, EH9 3JR, Edinburgh, United Kingdom.

出版信息

Curr Biol. 2002 Apr 2;12(7):515-22. doi: 10.1016/s0960-9822(02)00721-2.

Abstract

BACKGROUND

Petal spurs-tubular outgrowths that collect nectar-are considered key innovations because of their ability to change pollinator specificity and so cause reproductive isolation and speciation. Spurs have arisen frequently and rapidly in many taxa. To test their potential origins, we isolated spontaneous dominant mutations at two loci, HIRZ and INA, that cause novel outgrowths from Antirrhinum petals, resembling the petal spurs of closely related genera.

RESULTS

HIRZ and INA were isolated and shown to encode similar KNOX homeodomain proteins that are normally expressed only in apical meristems and are likely to act redundantly. Both dominant mutations were caused by transposon insertions in noncoding regions that caused ectopic expression of functional transcripts, either in petals or in all lateral organs with more pleiotropic effects. Formation of a spur-like outgrowth, which resembled an ectopic petal tube, was dependent both on KNOX gene expression and dorsiventral asymmetry of the flower.

CONCLUSIONS

These mutations provide an example of how petal spurs might evolve rapidly due to changes in regulatory gene expression.

摘要

背景

花瓣距——收集花蜜的管状突出结构——被认为是关键创新特征,因为它们能够改变传粉者特异性,进而导致生殖隔离和物种形成。距在许多分类群中频繁且迅速地出现。为了测试它们可能的起源,我们在两个基因座HIRZ和INA处分离出了自发显性突变,这些突变导致金鱼草花瓣出现新的突出结构,类似于近缘属的花瓣距。

结果

HIRZ和INA被分离出来,并显示它们编码相似的KNOX同源异型域蛋白,这些蛋白通常仅在顶端分生组织中表达,并且可能发挥冗余作用。这两个显性突变都是由转座子插入非编码区引起的,导致功能性转录本在花瓣中或在所有侧生器官中异位表达,具有更多的多效性效应。类似距的突出结构的形成,类似于异位花瓣管,既依赖于KNOX基因表达,也依赖于花的背腹不对称性。

结论

这些突变提供了一个例子,说明花瓣距如何可能由于调控基因表达的变化而迅速进化。

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