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Structure and Distribution of Centromeric Retrotransposons at Diploid and Allotetraploid Coffea Centromeric and Pericentromeric Regions

机译:二倍体和异源四倍体 Coffea 着丝粒和长着胶粒区域的着丝粒逆转座子的结构和分布

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Centromeric regions of plants are generally composed of large array of satellites from a specific lineage of Gypsy LTR-retrotransposons, called Centromeric Retrotransposons. Repeated sequences interact with a specific H3 histone, playing a crucial function on kinetochore formation. To study the structure and composition of centromeric regions in the genus Coffea , we annotated and classified Centromeric Retrotransposons sequences from the allotetraploid C. arabica genome and its two diploid ancestors: Coffea canephora and C. eugenioides . Ten distinct CRC (Centromeric Retrotransposons in Coffea ) families were found. The sequence mapping and FISH experiments of CRC Reverse Transcriptase domains in C. canephora, C. eugenioides , and C. arabica clearly indicate a strong and specific targeting mainly onto proximal chromosome regions, which can be associated also with heterochromatin. PacBio genome sequence analyses of putative centromeric regions on C. arabica and C. canephora chromosomes showed an exceptional density of one family of CRC elements, and the complete absence of satellite arrays, contrasting with usual structure of plant centromeres. Altogether, our data suggest a specific centromere organization in Coffea , contrasting with other plant genomes.
机译:植物的着丝粒区域通常由来自吉普赛LTR逆转座子特定谱系的大型卫星组成,称为着丝粒逆转座子。重复的序列与特定的H3组蛋白相互作用,在动线粒体形成中起关键作用。为了研究咖啡属中着丝粒区域的结构和组成,我们注释和分类了来自异源四倍体阿拉伯拟南芥基因组及其两个二倍体祖先的Centromeric逆转座子序列:canffea canephora和C.eugenioides。发现了十个不同的CRC(咖啡中的中性粒逆转录转座子)家族。 C. canephora,C。eugenioides和C. arabica中CRC逆转录酶结构域的序列作图和FISH实验清楚地表明了主要针对近端染色体区域的强大且特异性的靶向,这也可能与异染色质相关。 PacBio基因组序列分析假定的阿拉伯糖衣藻和C. canephora染色体上的着丝粒区域显示出一个家族CRC元件的异常密度,并且完全没有卫星阵列,这与通常的植物着丝粒结构相反。总的来说,我们的数据表明与其他植物基因组形成对比的是,咖啡中的特定着丝粒组织。

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