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PMID: 25682396 已发表 · ppublish 英语

Recent advances in plant centromere biology.

Science China. Life sciences ·第 58 卷 ·第 3 期 ·2015-12-31

Feng Chao, Liu YaLin, Su HanDong, Wang HeFei, Birchler James, Han FangPu

摘要

The centromere, which is one of the essential parts of a chromosome, controls kinetochore formation and chromosome segregation during mitosis and meiosis. While centromere function is conserved in eukaryotes, the centromeric DNA sequences evolve rapidly and have few similarities among species. The histone H3 variant CENH3 (CENP-A in human), which mostly exists in centromeric nucleosomes, is a universal active centromere mark in eukaryotes and plays an essential role in centromere identity determination. The relationship between centromeric DNA sequences and centromere identity determination is one of the intriguing questions in studying centromere formation. Due to the discoveries in the past decades, including "neocentromeres" and "centromere inactivation", it is now believed that the centromere identity is determined by epigenetic mechanisms. This review will present recent progress in plant centromere biology.

文献信息
期刊
Science China. Life sciences
期刊简称
Sci China Life Sci
发表日期
2015-12-31
收录日期
2015-04-11
更新日期
2015-04-11
语言
英语
国家/地区
China
NLM ID
101529880
分析服务
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