Literature DB >> 15457261

Pack-MULE transposable elements mediate gene evolution in plants.

Ning Jiang1, Zhirong Bao, Xiaoyu Zhang, Sean R Eddy, Susan R Wessler.   

Abstract

Mutator-like transposable elements (MULEs) are found in many eukaryotic genomes and are especially prevalent in higher plants. In maize, rice and Arabidopsis a few MULEs were shown to carry fragments of cellular genes. These chimaeric elements are called Pack-MULEs in this study. The abundance of MULEs in rice and the availability of most of the genome sequence permitted a systematic analysis of the prevalence and nature of Pack-MULEs in an entire genome. Here we report that there are over 3,000 Pack-MULEs in rice containing fragments derived from more than 1,000 cellular genes. Pack-MULEs frequently contain fragments from multiple chromosomal loci that are fused to form new open reading frames, some of which are expressed as chimaeric transcripts. About 5% of the Pack-MULEs are represented in collections of complementary DNA. Functional analysis of amino acid sequences and proteomic data indicate that some captured gene fragments might be functional. Comparison of the cellular genes and Pack-MULE counterparts indicates that fragments of genomic DNA have been captured, rearranged and amplified over millions of years. Given the abundance of Pack-MULEs in rice and the widespread occurrence of MULEs in all characterized plant genomes, gene fragment acquisition by Pack-MULEs might represent an important new mechanism for the evolution of genes in higher plants.

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Year:  2004        PMID: 15457261     DOI: 10.1038/nature02953

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  233 in total

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4.  Pack-MULEs: Recycling and reshaping genes through GC-biased acquisition.

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Journal:  Mob Genet Elements       Date:  2011-07-01

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Journal:  Genetics       Date:  2010-05-10       Impact factor: 4.562

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Review 8.  Contributions of domesticated plant studies to our understanding of plant evolution.

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10.  Evolutionary origin of the segmental duplication encompassing the wheat GLU-B1 locus encoding the overexpressed Bx7 (Bx7OE) high molecular weight glutenin subunit.

Authors:  Raja Ragupathy; Hamid A Naeem; Elsa Reimer; Odean M Lukow; Harry D Sapirstein; Sylvie Cloutier
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