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葡萄属植物着丝粒重复序列的进化和形成分析。

The evolution and formation of centromeric repeats analysis in Vitis vinifera.

机构信息

Key Laboratory of Genetics and Fruit Development, College of Horticulture, Nanjing Agricultural University, Nanjing, China.

College of Life Sciences, Zaozhuang University, Zaozhuang, 277000, China.

出版信息

Planta. 2024 Mar 24;259(5):99. doi: 10.1007/s00425-024-04374-6.

Abstract

Six grape centromere-specific markers for cytogenetics were mined by combining genetic and immunological assays, and the possible evolution mechanism of centromeric repeats was analyzed. Centromeric histone proteins are functionally conserved; however, centromeric repetitive DNA sequences may represent considerable diversity in related species. Therefore, studying the characteristics and structure of grape centromere repeat sequences contributes to a deeper understanding of the evolutionary process of grape plants, including their origin and mechanisms of polyploidization. Plant centromeric regions are mainly composed of repetitive sequences, including SatDNA and transposable elements (TE). In this research, the characterization of centromere sequences in the whole genome of grapevine (Vitis vinifera L.) has been conducted. Five centromeric tandem repeat sequences (Vv1, Vv2, Vv5, Vv6, and Vv8) and one long terminal repeat (LTR) sequence Vv24 were isolated. These sequences had different centromeric distributions, which indicates that grape centromeric sequences may undergo rapid evolution. The existence of extrachromosomal circular DNA (eccDNA) and gene expression in CenH3 subdomain region may provide various potential mechanisms for the generation of new centromeric regions.

摘要

通过结合遗传和免疫测定法,挖掘了 6 个葡萄着丝粒特异性标记物,分析了着丝粒重复序列的可能进化机制。着丝粒组蛋白在功能上是保守的;然而,着丝粒重复 DNA 序列在相关物种中可能代表相当大的多样性。因此,研究葡萄着丝粒重复序列的特征和结构有助于更深入地了解葡萄植物的进化过程,包括其起源和多倍体化机制。植物着丝粒区域主要由重复序列组成,包括 SatDNA 和转座元件(TE)。在这项研究中,对葡萄(Vitis vinifera L.)全基因组中的着丝粒序列进行了特征描述。分离出了 5 个着丝粒串联重复序列(Vv1、Vv2、Vv5、Vv6 和 Vv8)和 1 个长末端重复(LTR)序列 Vv24。这些序列具有不同的着丝粒分布,这表明葡萄着丝粒序列可能经历了快速进化。额外染色体环状 DNA(eccDNA)和 CenH3 亚结构域区域基因表达的存在,可能为新着丝粒区域的产生提供了各种潜在的机制。

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