Idnurm Alexander, Walton Felicia J, Floyd Anna, Heitman Joseph
Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, North Carolina 27710, USA.
Nature. 2008 Jan 10;451(7175):193-6. doi: 10.1038/nature06453.
Sex determination in fungi is controlled by a small, specialized region of the genome in contrast to the large sex-specific chromosomes of animals and some plants. Different gene combinations reside at these mating-type (MAT) loci and confer sexual identity; invariably they encode homeodomain, alpha-box, or high mobility group (HMG)-domain transcription factors. So far, MAT loci have been characterized from a single monophyletic clade of fungi, the Dikarya (the ascomycetes and basidiomycetes), and the ancestral state and evolutionary history of these loci have remained a mystery. Mating in the basal members of the kingdom has been less well studied, and even their precise taxonomic inter-relationships are still obscure. Here we apply bioinformatic and genetic mapping to identify the sex-determining (sex) region in Phycomyces blakesleeanus (Zygomycota), which represents an early branch within the fungi. Each sex allele contains a single gene that encodes an HMG-domain protein, implicating the HMG-domain proteins as an earlier form of fungal MAT loci. Additionally, one allele also contains a copy of a unique, chromosome-specific repetitive element, suggesting a generalized mechanism for the earliest steps in the evolution of sex determination and sex chromosome structure in eukaryotes.
与动物和一些植物中大型的性别特异性染色体不同,真菌中的性别决定由基因组中一个小的特定区域控制。不同的基因组合存在于这些交配型(MAT)位点,并赋予性别特征;它们无一例外地编码同源结构域、α-盒或高迁移率族(HMG)结构域转录因子。到目前为止,MAT位点仅在真菌的一个单系分支——双核菌亚门(子囊菌门和担子菌门)中得到了表征,这些位点的原始状态和进化历史仍然是个谜。真菌界基础成员中的交配情况研究较少,甚至它们确切的分类学相互关系仍不明确。在这里,我们应用生物信息学和遗传图谱分析来确定布氏梨形孢(接合菌门)中的性别决定(性)区域,它代表了真菌中的一个早期分支。每个性等位基因都包含一个编码HMG结构域蛋白的单一基因,这表明HMG结构域蛋白是真菌MAT位点的一种早期形式。此外,一个等位基因还包含一个独特的、染色体特异性重复元件的拷贝,这为真核生物性别决定和性染色体结构进化的最早步骤提供了一种普遍机制。