Su Zhixi, Gu Xun
Institutes of Biomedical Sciences, Fudan University, Shanghai 200032, China.
J Mol Evol. 2008 Dec;67(6):705-9. doi: 10.1007/s00239-008-9170-9.
In the yeast or nematode, the proportion of essential genes in duplicates is lower than in singletons (single-copy genes), due to the functional redundancy. One may expect that it should be the same in the mouse genome. However, based on the publicly available mouse knockout data, it was observed that the proportion of essential genes in duplicates is similar to that in singletons. The most straightforward interpretation, as claimed in a recent study, is that duplicate genes may have a negligible role in the mouse genetic robustness. Here we show that in the current mouse knockout dataset, recently duplicated genes have been highly underrepresented, leading to an overestimation of the proportion of essential genes in duplicates. After estimating the duplication time of mouse duplication events, we have developed a simple bias-correcting procedure and shown that the bias-corrected proportion of essential genes in mouse duplicates is significantly lower than that in singletons.
在酵母或线虫中,由于功能冗余,重复基因中必需基因的比例低于单拷贝基因(单拷贝基因)。人们可能会认为在小鼠基因组中情况也会相同。然而,基于公开可用的小鼠基因敲除数据,观察到重复基因中必需基因的比例与单拷贝基因中的比例相似。正如最近一项研究所声称的,最直接的解释是重复基因在小鼠遗传稳健性中可能作用微不足道。在这里我们表明,在当前的小鼠基因敲除数据集中,近期重复的基因严重缺失,导致对重复基因中必需基因比例的高估。在估计小鼠重复事件的复制时间后,我们开发了一种简单的偏差校正程序,并表明经偏差校正后,小鼠重复基因中必需基因的比例显著低于单拷贝基因中的比例。