对小染色体serratum (Cyperid)的分析证明了区分单心性和全新心性的可靠方法的重要性。

IF 2.5 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Chromosoma Pub Date : 2020-12-01 Epub Date: 2020-11-09 DOI:10.1007/s00412-020-00745-6
M Baez, Y T Kuo, Y Dias, T Souza, A Boudichevskaia, J Fuchs, V Schubert, A L L Vanzela, A Pedrosa-Harand, A Houben
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引用次数: 4

摘要

长期以来,苏柏科(thurnicae - juncaceae - cyperaceae)被认为是一组完全具有全新中心体的物种。锯齿Prionium serratum(拇指)的基础系统发育位置该物种是了解该分支中着丝粒进化的重要标本。与预期相反,着丝粒特异性组蛋白H3 (CENH3), α -微管蛋白和不同着丝粒相关的翻译后组蛋白修饰(H3S10ph, H3S28ph和H2AT120ph)的染色体分布表明了P. serratum染色体的单中心组织。对高拷贝重复序列组成的分析导致鉴定出两个着丝粒定位的卫星重复序列。因此,单心性是结科-苏柏科-雨云科苏柏科分支的祖先条件,并且该分支在三科分化后至少两次独立出现了全新心性,一次在结科,一次在苏柏科。在此背景下,讨论了适用于全新整体粒的鉴定方法。
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Analysis of the small chromosomal Prionium serratum (Cyperid) demonstrates the importance of reliable methods to differentiate between mono- and holocentricity.

For a long time, the Cyperid clade (Thurniceae-Juncaceae-Cyperaceae) was considered a group of species possessing holocentromeres exclusively. The basal phylogenetic position of Prionium serratum (Thunb.) Drège (Thurniceae) within Cyperids makes this species an important specimen to understand the centromere evolution within this clade. In contrast to the expectation, the chromosomal distribution of the centromere-specific histone H3 (CENH3), alpha-tubulin and different centromere-associated post-translational histone modifications (H3S10ph, H3S28ph and H2AT120ph) demonstrate a monocentromeric organisation of P. serratum chromosomes. Analysis of the high-copy repeat composition resulted in the identification of two centromere-localised satellite repeats. Hence, monocentricity was the ancestral condition for the Juncaceae-Cyperaceae-Thurniaceae Cyperid clade, and holocentricity in this clade has independently arisen at least twice after differentiation of the three families, once in Juncaceae and the other one in Cyperaceae. In this context, methods suitable for the identification of holocentromeres are discussed.

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来源期刊
Chromosoma
Chromosoma 生物-生化与分子生物学
CiteScore
3.30
自引率
6.20%
发文量
17
审稿时长
1 months
期刊介绍: Chromosoma publishes research and review articles on the functional organization of the eukaryotic cell nucleus, with a particular emphasis on the structure and dynamics of chromatin and chromosomes; the expression and replication of genomes; genome organization and evolution; the segregation of genomes during meiosis and mitosis; the function and dynamics of subnuclear compartments; the nuclear envelope and nucleocytoplasmic interactions, and more. The scope of Chromosoma encompasses genetic, biophysical, molecular and cell biological studies. Average time from receipt of contributions to first decision: 22 days Publishes research and review articles on the functional organization of the eukaryotic cell nucleus Topics include structure and dynamics of chromatin and chromosomes; the expression and replication of genomes; genome organization and evolution; the segregation of genomes during meiosis and mitosis and more Encompasses genetic, biophysical, molecular and cell biological studies.
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