Cellular and Molecular Biotechnology Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba 305-8568, Japan.
Department of Biosciences, School of Science, Kitasato University, Sagamihara 252-0373, Japan.
Genes (Basel). 2023 Jan 18;14(2):257. doi: 10.3390/genes14020257.
Genetic sex-determination features male (XX/XY) or female heterogamety (ZZ/ZW). To identify similarities and differences in the molecular evolution of sex-linked genes between these systems, we directly compared the sex chromosome systems existing in the frog . The heteromorphic X/Y and Z/W sex chromosomes were derived from chromosomes 7 (2n = 26). RNA-Seq, de novo assembly, and BLASTP analyses identified 766 sex-linked genes. These genes were classified into three different clusters (XW/YZ, XY/ZW, and XZ/YW) based on sequence identities between the chromosomes, probably reflecting each step of the sex chromosome evolutionary history. The nucleotide substitution per site was significantly higher in the Y- and Z-genes than in the X- and W- genes, indicating male-driven mutation. The ratio of nonsynonymous to synonymous nucleotide substitution rates was higher in the X- and W-genes than in the Y- and Z-genes, with a female bias. Allelic expression in gonad, brain, and muscle was significantly higher in the Y- and W-genes than in the X- and Z-genes, favoring heterogametic sex. The same set of sex-linked genes showed parallel evolution across the two distinct systems. In contrast, the unique genomic region of the sex chromosomes demonstrated a difference between the two systems, with even and extremely high expression ratios of W/Z and Y/X, respectively.
遗传性别决定特征为雄性(XX/XY)或雌性异型性(ZZ/ZW)。为了鉴定这些系统中性别连锁基因分子进化的相似性和差异性,我们直接比较了青蛙中的性染色体系统。异型的 X/Y 和 Z/W 性染色体来自于第 7 号染色体(2n = 26)。RNA-Seq、从头组装和 BLASTP 分析鉴定出了 766 个性别连锁基因。这些基因根据染色体之间的序列同一性分为三个不同的簇(XW/YZ、XY/ZW 和 XZ/YW),可能反映了性染色体进化历史的每一步。每个座位的核苷酸取代率在 Y 和 Z 基因中明显高于 X 和 W 基因,表明雄性驱动的突变。X 和 W 基因中的非同义核苷酸取代率与同义核苷酸取代率的比值高于 Y 和 Z 基因,具有雌性偏倚。在性腺、脑和肌肉中,Y 和 W 基因的等位基因表达明显高于 X 和 Z 基因,有利于异型性。这组相同的性别连锁基因在两个不同的系统中表现出了平行进化。相比之下,性染色体的独特基因组区域在两个系统之间表现出了差异,W/Z 和 Y/X 的表达比例分别均匀且极高。