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Structural features of the rice chromosome 4 centromere

机译:水稻第4染色体着丝粒的结构特征

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A complete sequence of a chromosome centromere is necessary for fully understanding centromere function. We reported the sequence structures of the first complete rice chromosome centromere through sequencing a large insert bacterial artificial chromosome clone-based contig, which covered the rice chromosome 4 centromere. Complete sequencing of the 124-kb rice chromosome 4 centromere revealed that it consisted of 18 tracts of 379 tandemly arrayed repeats known as CentO and a total of 19 centromeric retroelements (CRs) but no unique sequences were detected. Four tracts, composed of 65 CentO repeats, were located in the opposite orientation, and 18 CentO tracts were flanked by 19 retroelements. The CRs were classified into four types, and the type I retroelements appeared to be more specific to rice centromeres. The preferential insert of the CRs among CentO repeats indicated that the centromere-specific retroelements may contribute to centromere expansion during evolution. The presence of three intact retrotransposons in the centromere suggests that they may be responsible for functional centromere initiation through a transcription-mediated mechanism.
机译:染色体着丝粒的完整序列对于充分了解着丝粒的功能是必需的。我们通过对一个基于大插入细菌人工染色体克隆的重叠群进行测序,报道了第一个完整的水稻染色体着丝粒的序列结构,该序列覆盖了水稻第4个染色体着丝粒。 124 kb水稻第4号染色体着丝粒的完全测序表明,它由18条379个串联排列的重复序列(称为CentO)组成,共有19个着丝粒反转录元件(CR),但未检测到独特序列。由65个CentO重复序列组成的四个区域位于相反的方向,而18个CentO区域的两侧是19个后置元素。 CRs分为四种类型,I型逆转录元素似乎对水稻着丝粒更具特异性。 CentO重复序列中CR的优先插入表明,着丝粒特异性逆转录元件可能在进化过程中促进着丝粒扩展。着丝粒中三个完整的逆转座子的存在表明它们可能通过转录介导的机制负责功能着丝粒的启动。

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