Gene Discovery Research Group, RIKEN Plant Science Center, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama, Kanagawa 230-0045, Japan.
Genome Biol Evol. 2009 Oct 29;1:409-14. doi: 10.1093/gbe/evp043.
Knocking out a gene from a genome often causes no phenotypic effect. This phenomenon has been explained in part by the existence of duplicate genes. However, it was found that in mouse knockout data duplicate genes are as essential as singleton genes. Here, we study whether it is also true for the knockout data in Arabidopsis. From the knockout data in Arabidopsis thaliana obtained in our study and in the literature, we find that duplicate genes show a significantly lower proportion of knockout effects than singleton genes. Because the persistence of duplicate genes in evolution tends to be dependent on their phenotypic effect, we compared the ages of duplicate genes whose knockout mutants showed less severe phenotypic effects with those with more severe effects. Interestingly, the latter group of genes tends to be more anciently duplicated than the former group of genes. Moreover, using multiple-gene knockout data, we find that functional compensation by duplicate genes for a more severe phenotypic effect tends to be preserved by natural selection for a longer time than that for a less severe effect. Taken together, we conclude that duplicate genes contribute to genetic robustness mainly by preserving compensation for severe phenotypic effects in A. thaliana.
敲除基因组中的一个基因通常不会引起表型效应。这种现象部分可以通过重复基因的存在来解释。然而,人们发现,在小鼠敲除数据中,重复基因与单基因一样重要。在这里,我们研究这种情况是否也适用于拟南芥的敲除数据。从我们的研究和文献中获得的拟南芥敲除数据中,我们发现重复基因的敲除效应比例明显低于单基因。由于重复基因在进化中的持续存在往往取决于其表型效应,我们比较了敲除突变体表现出较轻表型效应和较重表型效应的重复基因的年龄。有趣的是,后者组的基因往往比前者组的基因更古老。此外,使用多基因敲除数据,我们发现重复基因对更严重表型效应的功能补偿更容易被自然选择保存更长时间,而对较轻表型效应的补偿则更容易被自然选择保存更长时间。总之,我们得出结论,重复基因主要通过在拟南芥中保存对严重表型效应的补偿来提高遗传稳健性。