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假基因化与物种形成基因的复活

Pseudogenization and Resurrection of a Speciation Gene.

机构信息

Institute of Plant Sciences, University of Bern, Altenbergrain 21, 3013 Bern, Switzerland.

Department of Genetics, University Fed Rio Grande do Sul, POB 15053, Porto Alegre, 91501970 Rio Grande do Sul, Brazil.

出版信息

Curr Biol. 2018 Dec 3;28(23):3776-3786.e7. doi: 10.1016/j.cub.2018.10.019. Epub 2018 Nov 21.

Abstract

A persistent question in evolutionary biology is how complex phenotypes evolve and whether phenotypic transitions are reversible. Multiple losses of floral pigmentation have been documented in the angiosperms, but color re-gain has not yet been described, supporting that re-gain is unlikely. Pollinator-mediated selection in Petunia has resulted in several color shifts comprised of both losses and gains of color. The R2R3-MYB transcription factor AN2 has been identified as a major locus responsible for shifts in pollinator preference. Whereas the loss of visible color has previously been attributed to repeated pseudogenization of AN2, here, we describe the mechanism of an independent re-gain of floral color via AN2 evolution. In P. secreta, purple color is restored through the improbable resurrection of AN2 gene function from a non-functional AN2-ancestor by a single reading-frame-restoring mutation. Thus, floral color evolution in Petunia is mechanistically dependent on AN2 functionality, highlighting its role as a hotspot in color transitions and a speciation gene for the genus.

摘要

进化生物学中一个悬而未决的问题是复杂表型如何进化,以及表型转变是否可逆。被子植物中多次记录到花色素的丧失,但尚未描述颜色的重新获得,这支持了颜色的重新获得不太可能。烟粉虱介导的选择导致了几种颜色的转变,包括颜色的丧失和获得。R2R3-MYB 转录因子 AN2 已被确定为负责改变传粉者偏好的主要基因座。虽然先前已经将可见颜色的丧失归因于 AN2 的多次假基因化,但在这里,我们描述了通过 AN2 进化独立恢复花颜色的机制。在 P. secreta 中,紫色是通过将一个非功能的 AN2 祖先中的 AN2 基因功能从一个非功能的 AN2 祖先中通过单个读框恢复突变而不可思议地复活来恢复的。因此,烟粉虱的花颜色进化在机制上依赖于 AN2 的功能,突出了它在颜色转变中的热点作用和属的物种形成基因。

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