Gao Li-Zhi, Innan Hideki
Human Genetics Center, School of Public Health, University of Texas Health Science Center, 1200 Hermann Pressler, Houston, TX 77030, USA.
Science. 2004 Nov 19;306(5700):1367-70. doi: 10.1126/science.1102033.
The gene duplication rate in the yeast genome is estimated without assuming the molecular clock model to be approximately 0.01 to 0.06 per gene per billion years; this rate is two orders of magnitude lower than a previous estimate based on the molecular clock model. This difference is explained by extensive concerted evolution via gene conversion between duplicated genes, which violates the assumption of the molecular clock in the analyses of duplicated genes. The average length of the period of concerted evolution and the gene conversion rate are estimated to be approximately 25 million years and approximately 28 times the mutation rate, respectively.
在不假设分子钟模型的情况下,酵母基因组中的基因重复率估计约为每基因每十亿年0.01至0.06;该速率比之前基于分子钟模型的估计低两个数量级。这种差异是由重复基因之间通过基因转换进行的广泛协同进化所解释的,这在重复基因分析中违反了分子钟的假设。协同进化周期的平均长度和基因转换率估计分别约为2500万年和约为突变率的28倍。