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蛇类进化过程中肢体增强子功能的渐进性丧失

Progressive Loss of Function in a Limb Enhancer during Snake Evolution.

作者信息

Kvon Evgeny Z, Kamneva Olga K, Melo Uirá S, Barozzi Iros, Osterwalder Marco, Mannion Brandon J, Tissières Virginie, Pickle Catherine S, Plajzer-Frick Ingrid, Lee Elizabeth A, Kato Momoe, Garvin Tyler H, Akiyama Jennifer A, Afzal Veena, Lopez-Rios Javier, Rubin Edward M, Dickel Diane E, Pennacchio Len A, Visel Axel

机构信息

MS 84-171, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.

Department of Biology, Stanford University, Stanford, CA 94305, USA.

出版信息

Cell. 2016 Oct 20;167(3):633-642.e11. doi: 10.1016/j.cell.2016.09.028.

Abstract

The evolution of body shape is thought to be tightly coupled to changes in regulatory sequences, but specific molecular events associated with major morphological transitions in vertebrates have remained elusive. We identified snake-specific sequence changes within an otherwise highly conserved long-range limb enhancer of Sonic hedgehog (Shh). Transgenic mouse reporter assays revealed that the in vivo activity pattern of the enhancer is conserved across a wide range of vertebrates, including fish, but not in snakes. Genomic substitution of the mouse enhancer with its human or fish ortholog results in normal limb development. In contrast, replacement with snake orthologs caused severe limb reduction. Synthetic restoration of a single transcription factor binding site lost in the snake lineage reinstated full in vivo function to the snake enhancer. Our results demonstrate changes in a regulatory sequence associated with a major body plan transition and highlight the role of enhancers in morphological evolution. PAPERCLIP.

摘要

身体形态的进化被认为与调控序列的变化紧密相关,但与脊椎动物主要形态转变相关的具体分子事件仍不清楚。我们在 Sonic hedgehog(Shh)一个高度保守的长程肢体增强子中鉴定出了蛇特有的序列变化。转基因小鼠报告基因检测显示,该增强子在包括鱼类在内的多种脊椎动物中的体内活性模式是保守的,但在蛇中并非如此。用人类或鱼类直系同源物对小鼠增强子进行基因组替换会导致正常的肢体发育。相反,用蛇的直系同源物替换则会导致严重的肢体缩减。对蛇谱系中丢失的单个转录因子结合位点进行合成恢复,可使蛇增强子恢复完整的体内功能。我们的结果证明了与主要身体结构转变相关的调控序列变化,并突出了增强子在形态进化中的作用。回形针。

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