Holligan Dawn, Zhang Xiaoyu, Jiang Ning, Pritham Ellen J, Wessler Susan R
Department of Plant Biology, University of Georgia, Athens 30602, USA.
Genetics. 2006 Dec;174(4):2215-28. doi: 10.1534/genetics.106.062752. Epub 2006 Oct 8.
The largest component of plant and animal genomes characterized to date is transposable elements (TEs). The availability of a significant amount of Lotus japonicus genome sequence has permitted for the first time a comprehensive study of the TE landscape in a legume species. Here we report the results of a combined computer-assisted and experimental analysis of the TEs in the 32.4 Mb of finished TAC clones. While computer-assisted analysis facilitated a determination of TE abundance and diversity, the availability of complete TAC sequences permitted identification of full-length TEs, which facilitated the design of tools for genomewide experimental analysis. In addition to containing all TE types found in previously characterized plant genomes, the TE component of L. japonicus contained several surprises. First, it is the second species (after Oryza sativa) found to be rich in Pack-MULEs, with >1000 elements that have captured and amplified gene fragments. In addition, we have identified what appears to be a legume-specific MULE family that was previously identified only in fungal species. Finally, the L. japonicus genome contains many hundreds, perhaps thousands of Sireviruses: Ty1/copia-like elements with an extra ORF. Significantly, several of the L. japonicus Sireviruses have recently amplified and may still be actively transposing.
植物和动物基因组中迄今已鉴定出的最大组成部分是转座元件(TEs)。大量日本百脉根基因组序列的可得性首次使得对豆科植物物种中转座元件情况进行全面研究成为可能。在此,我们报告对32.4 Mb已完成TAC克隆中的转座元件进行计算机辅助与实验分析相结合的结果。计算机辅助分析有助于确定转座元件的丰度和多样性,而完整TAC序列的可得性则使得全长转座元件得以鉴定,这有助于设计全基因组实验分析工具。除了包含先前已鉴定的植物基因组中发现的所有转座元件类型外,日本百脉根的转座元件组成还有一些惊人之处。首先,它是第二个(继水稻之后)被发现富含Pack-MULEs的物种,有超过1000个捕获并扩增了基因片段的元件。此外,我们鉴定出了一个似乎是豆科植物特有的MULE家族,该家族此前仅在真菌物种中被鉴定出。最后,日本百脉根基因组包含数百个,也许数千个Sireviruses:带有额外开放阅读框的Ty1/copia样元件。值得注意的是,日本百脉根的几种Sireviruses最近已经扩增,并且可能仍在活跃转座。