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蝾螈性信息素系统的起源和多样化。

Origin and diversification of a salamander sex pheromone system.

机构信息

Amphibian Evolution Lab, Biology Department, Vrije Universiteit Brussel (VUB), Brussels, Belgium.

Amphibian Evolution Lab, Biology Department, Vrije Universiteit Brussel (VUB), Brussels, Belgium

出版信息

Mol Biol Evol. 2015 Feb;32(2):472-80. doi: 10.1093/molbev/msu316. Epub 2014 Nov 20.

Abstract

Sex pheromones form an important facet of reproductive strategies in many organisms throughout the Animal Kingdom. One of the oldest known sex pheromones in vertebrates are proteins of the Sodefrin Precursor-like Factor (SPF) system, which already had a courtship function in early salamanders. The subsequent evolution of salamanders is characterized by a diversification in courtship and reproduction, but little is known on how the SPF pheromone system diversified in relation to changing courtship strategies. Here, we combined transcriptomic, genomic, and phylogenetic analyses to investigate the evolution of the SPF pheromone system in nine salamandrid species with distinct courtship displays. First, we show that SPF originated from vertebrate three-finger proteins and diversified through multiple gene duplications in salamanders, while remaining a single copy in frogs. Next, we demonstrate that tail-fanning newts have retained a high phylogenetic diversity of SPFs, whereas loss of tail-fanning has been associated with a reduced importance or loss of SPF expression in the cloacal region. Finally, we show that the attractant decapeptide sodefrin is cleaved from larger SPF precursors that originated by a 62 bp insertion and consequent frameshift in an ancestral Cynops lineage. This led to the birth of a new decapeptide that rapidly evolved a pheromone function independently from uncleaved proteins.

摘要

性信息素是动物王国中许多生物生殖策略的一个重要方面。脊椎动物中已知最早的性信息素之一是 Sodefrin 前体样因子 (SPF) 系统的蛋白质,它在早期蝾螈中已经具有求偶功能。随后蝾螈的进化以求偶和繁殖的多样化为特征,但对于 SPF 信息素系统如何与不断变化的求偶策略多样化知之甚少。在这里,我们结合转录组学、基因组学和系统发育分析来研究 9 种具有不同求偶表现的有尾两栖类物种中 SPF 信息素系统的进化。首先,我们表明 SPF 起源于脊椎动物的三指蛋白,并通过蝾螈的多次基因复制而多样化,而在青蛙中仍保持单拷贝。接下来,我们证明扇尾蝾螈保留了 SPF 的高度系统发育多样性,而失去扇尾与在泄殖腔区域表达 SPF 的重要性降低或丧失有关。最后,我们表明,十肽引诱剂 sodefrin 是从较大的 SPF 前体中切割而来的,这些前体通过在祖先 Cynops 谱系中插入 62bp 并产生移码而产生。这导致了一种新的十肽的诞生,它独立于未切割的蛋白质迅速进化出了信息素功能。

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