Picault Nathalie, Chaparro Christian, Piegu Benoit, Stenger Willfried, Formey Damien, Llauro Cristel, Descombin Julie, Sabot Francois, Lasserre Eric, Meynard Donaldo, Guiderdoni Emmanuel, Panaud Olivier
Laboratoire Génome et Développement des Plantes, UMR CNRS/IRD/UPVD, Université de Perpignan Via Domitia, Perpignan cedex, France.
Plant J. 2009 Jun;58(5):754-65. doi: 10.1111/j.1365-313X.2009.03813.x. Epub 2009 Feb 2.
Transposable elements are ubiquitous components of plant genomes. When active, these mobile elements can induce changes in the genome at both the structural and functional levels. Availability of the complete genome sequence for several model plant species provides the opportunity to study TEs in plants at an unprecedented scale. In the case of rice, annotation of the genomic sequence of the variety Nipponbare has revealed that TE-related sequences form more than 25% of its genome. However, most of the elements found are inactive, either because of structural alterations or because they are the target of various silencing pathways. In this paper, we propose a new post-genomic strategy aimed at identifying active TEs. Our approach relies on transcript profiling of TE-related sequences using a tiling microarray. We applied it to a particular class of TEs, the LTR retrotransposons. A transcript profiling assay of rice calli led to identification of a new transpositionally active family, named Lullaby. We provide a complete structural description of this element. We also show that it has recently been active in planta in rice, and discuss its phylogenetic relationships with Tos17, the only other active LTR retrotransposon described so far in the species.
转座元件是植物基因组中普遍存在的组成部分。当这些转座元件处于活跃状态时,它们能够在结构和功能层面上引发基因组的变化。几种模式植物物种完整基因组序列的可得性,为以前所未有的规模研究植物中的转座元件提供了契机。就水稻而言,日本晴品种基因组序列的注释表明,与转座元件相关的序列占其基因组的比例超过25%。然而,所发现的大多数元件是不活跃的,这要么是由于结构改变,要么是因为它们是各种沉默途径的作用靶点。在本文中,我们提出了一种旨在鉴定活跃转座元件的新的后基因组策略。我们的方法依赖于使用平铺式微阵列对与转座元件相关的序列进行转录谱分析。我们将其应用于一类特定的转座元件,即长末端重复序列反转录转座子。对水稻愈伤组织进行的转录谱分析鉴定出了一个新的具有转座活性的家族,命名为摇篮曲。我们提供了该元件完整的结构描述。我们还表明它最近在水稻植株中是活跃的,并讨论了它与Tos17的系统发育关系,Tos17是该物种迄今为止描述的唯一另一个活跃的长末端重复序列反转录转座子。