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多个编码信息素和一个信息素受体的基因决定了裂褶菌中的Bβ1交配型特异性。

Multiple genes encoding pheromones and a pheromone receptor define the B beta 1 mating-type specificity in Schizophyllum commune.

作者信息

Vaillancourt L J, Raudaskoski M, Specht C A, Raper C A

机构信息

Department of Microbiology and Molecular Genetics, L. P. Markey Center for Molecular Genetics, University of Vermont, Burlington 05405, USA.

出版信息

Genetics. 1997 Jun;146(2):541-51. doi: 10.1093/genetics/146.2.541.

Abstract

The genes defining multiple B mating types in the wood-rotting mushroom Schizophyllum commune are predicted to encode multiple pheromones and pheromone receptors. These genes are clustered in each of two recombinable and independently functioning loci, B alpha and B beta. A difference in specificity at either locus between a mated pair of individuals initiates an identical series of events in sexual morphogenesis. The B alpha 1 locus was recently found to contain genes predicted to encode three lipopeptide pheromones and a pheromone receptor with a seven-transmembrane domain. These gene products interact in hetero-specific pairs, the pheromone of one B alpha specificity with the receptor of any one of the other eight B alpha specificities, and are likely to activate a signaling cascade similar to that known for mating in Saccharomyces cerevisiae. We report here that the B beta 1 locus also contains at least three pheromone genes and one pheromone receptor gene, which function similarly to the genes in the B alpha 1 locus, but only within the series of B beta specificities. A comparison of the DNA sequences of the B alpha 1 and B beta 1 loci suggests that each arose from a common ancestral sequence, allowing us to speculate about the evolution of this unique series of regulatory genes.

摘要

据预测,木腐菌裂褶菌中定义多种B交配型的基因可编码多种信息素和信息素受体。这些基因聚集在两个可重组且独立发挥功能的位点Bα和Bβ中。交配的一对个体在任一位点上的特异性差异会引发性形态发生中一系列相同的事件。最近发现,Bα1位点包含一些基因,据预测这些基因可编码三种脂肽信息素和一种具有七个跨膜结构域的信息素受体。这些基因产物以异源特异性对的形式相互作用,一种Bα特异性的信息素与其他八种Bα特异性中任何一种的受体相互作用,并且可能激活类似于酿酒酵母交配中已知的信号级联反应。我们在此报告,Bβ1位点也至少包含三个信息素基因和一个信息素受体基因,其功能与Bα1位点中的基因类似,但仅在Bβ特异性系列内起作用。对Bα1和Bβ1位点的DNA序列进行比较表明,每个位点都起源于一个共同的祖先序列,这使我们能够推测这一独特的调控基因系列的进化情况。

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