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无肺螈科蝾螈的信息素基因多样化与求偶腺的进化

Pheromone Gene Diversification and the Evolution of Courtship Glands in Plethodontid Salamanders.

作者信息

Herrboldt Madison A, Steffen Michael A, McGouran Carissa N, Bonett Ronald M

机构信息

Department of Biological Science, University of Tulsa, Tulsa, OK, 74104, USA.

出版信息

J Mol Evol. 2021 Oct;89(8):576-587. doi: 10.1007/s00239-021-10026-0. Epub 2021 Aug 14.

Abstract

Proteinaceous pheromones that diversify through gene duplication can result in shifts in courtship cocktails that may serve as a mechanism for reproductive isolation. The molecular evolution of pheromones has been extensively studied in salamanders, but how these genes and associated novel courtship glands have codiversified has not been evaluated. In this study we used transcriptional analyses to examine the relationship between pheromone diversification and gland type in three divergent lineages of plethodontid salamanders. Our results revealed that plethodontid salamanders express up to eight divergent Sodefrin Precursor-like Factor genes (spf, representing both alpha and beta subfamilies) along with Plethodontid Modulating Factor (pmf) and Plethodontid Receptivity Factor (prf). Expression of pheromone genes is tissue specific with pmf, prf, and some spf genes restricted to the mental gland. In contrast, the caudal gland shows strong expression of the other spf genes. We found evidence for punctuated changes in pheromone cocktail composition related to the loss of metamorphosis, and subsequent extreme reduction of the mental gland, in a paedomorphic lineage. Our study provides insight into how pheromone diversification can be partitioned into unique glands, which may lead to cocktail specificity in behavioral modules during courtship.

摘要

通过基因复制实现多样化的蛋白质性信息素可导致求偶混合信息素发生变化,这可能是一种生殖隔离机制。信息素的分子进化在蝾螈中已得到广泛研究,但这些基因与相关新型求偶腺体如何共同多样化尚未得到评估。在本研究中,我们利用转录分析来研究无肺螈科蝾螈三个不同谱系中信息素多样化与腺体类型之间的关系。我们的结果显示,无肺螈科蝾螈表达多达八个不同的类速激肽释放肽前体因子基因(spf,代表α和β亚家族),以及无肺螈调节因子(pmf)和无肺螈感受性因子(prf)。信息素基因的表达具有组织特异性,pmf、prf和一些spf基因仅限于颏腺表达。相比之下,尾腺则强烈表达其他spf基因。我们发现,在一个幼态延续谱系中,与变态消失以及随后颏腺极度退化相关的求偶混合信息素组成存在间断性变化的证据。我们的研究为信息素多样化如何被分配到独特腺体提供了见解,这可能导致求偶过程中行为模块的混合信息素特异性。

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