Department of Plant Biology and Forest Genetics and Linnean Center for Plant Biology, Swedish University of Agricultural Sciences, Uppsala, Sweden.
Plant Mol Biol. 2013 Jul;82(4-5):417-26. doi: 10.1007/s11103-013-0072-x. Epub 2013 May 28.
The Physcomitrella patens genome has seven genes apparently coding for the isopentenyltransferase type of tRNA-modifying enzyme, while other organisms have one or two. The predicted sequences have parts that differ significantly from other isopentenyltransferases. Only one of the seven (PpIPT1) has earlier been shown to be expressed. We now report expression of two more, PpIPT4 and PpIPT5. The cloned genes were able to functionally complement a yeast mutant lacking tRNA isopentenyltransferase. Sequencing showed they are related to the earlier studied PpIPT1. The sequences of the three differ mainly from each other in a tRNA-binding area and the 5'-end subcellular targeting motif area. This indicates that, after arising through gene duplication, they have evolved to enable partly different functions.
泡叶藻(Physcomitrella patens)基因组中有七个基因显然编码异戊烯基转移酶类型的 tRNA 修饰酶,而其他生物只有一个或两个。预测序列中有与其他异戊烯基转移酶明显不同的部分。这七个基因中只有一个(PpIPT1)之前已被证明有表达。我们现在报告另外两个基因 PpIPT4 和 PpIPT5 的表达。克隆的基因能够在功能上补充缺乏 tRNA 异戊烯基转移酶的酵母突变体。测序表明,它们与之前研究的 PpIPT1 有关。这三个基因的序列主要在 tRNA 结合区域和 5'-端亚细胞靶向基序区域存在差异。这表明,在通过基因复制产生后,它们已经进化到能够实现部分不同的功能。