Paz Rosalía Cristina, Kozaczek Melisa Eliana, Rosli Hernán Guillermo, Andino Natalia Pilar, Sanchez-Puerta Maria Virginia
CIGEOBIO (FCEFyN, UNSJ/CONICET), Av. Ignacio de la Roza 590 (Oeste), J5402DCS, Rivadavia, San Juan, Argentina.
Facultad de Ciencias Exactas, Químicas y Naturales, Universidad Nacional de Misiones, Posadas, Misiones, Argentina.
Genetica. 2017 Oct;145(4-5):417-430. doi: 10.1007/s10709-017-9977-7. Epub 2017 Aug 3.
Transposable elements are the most abundant components of plant genomes and can dramatically induce genetic changes and impact genome evolution. In the recently sequenced genome of tomato (Solanum lycopersicum), the estimated fraction of elements corresponding to retrotransposons is nearly 62%. Given that tomato is one of the most important vegetable crop cultivated and consumed worldwide, understanding retrotransposon dynamics can provide insight into its evolution and domestication processes. In this study, we performed a genome-wide in silico search of full-length LTR retroelements in the tomato nuclear genome and annotated 736 full-length Gypsy and Copia retroelements. The dispersion level across the 12 chromosomes, the diversity and tissue-specific expression of those elements were estimated. Phylogenetic analysis based on the retrotranscriptase region revealed the presence of 12 major lineages of LTR retroelements in the tomato genome. We identified 97 families, of which 77 and 20 belong to the superfamilies Copia and Gypsy, respectively. Each retroelement family was characterized according to their element size, relative frequencies and insertion time. These analyses represent a valuable resource for comparative genomics within the Solanaceae, transposon-tagging and for the design of cultivar-specific molecular markers in tomato.
转座元件是植物基因组中最丰富的组成部分,可显著诱导基因变化并影响基因组进化。在最近测序的番茄(Solanum lycopersicum)基因组中,对应于反转录转座子的元件估计比例接近62%。鉴于番茄是全球种植和消费的最重要蔬菜作物之一,了解反转录转座子的动态变化有助于深入了解其进化和驯化过程。在本研究中,我们对番茄核基因组中的全长LTR反转录元件进行了全基因组的电子搜索,并注释了736个全长Gypsy和Copia反转录元件。估计了这些元件在12条染色体上的分散水平、多样性和组织特异性表达。基于反转录酶区域的系统发育分析揭示了番茄基因组中存在12个主要的LTR反转录元件谱系。我们鉴定出97个家族,其中77个和20个分别属于Copia和Gypsy超家族。每个反转录元件家族根据其元件大小、相对频率和插入时间进行了特征描述。这些分析为茄科内的比较基因组学、转座子标签以及番茄品种特异性分子标记的设计提供了宝贵资源。