Department of Plant Sciences, University of Cambridge, Cambridge, CB2 3EA, UK.
New Phytol. 2024 Dec;244(6):2143-2149. doi: 10.1111/nph.20149. Epub 2024 Sep 27.
Centromeres are specific regions of the chromosomes that play a pivotal role in the segregation of chromosomes, by facilitating the loading of the kinetochore, which forms the link between the chromosomes to the spindle fibres during cell division. In plants and animals, these regions often form megabase-scale loci of tandemly repeated DNA sequences, which have presented a challenge to genomic studies even in model species. The functional designation of centromeres is determined epigenetically by the incorporation of a centromere-specific variant of histone H3. Recent developments in long-read sequencing technology have allowed the assembly of these regions for the first time and have prompted a reassessment of fidelity of centromere function and the evolutionary dynamics of these regions.
着丝粒是染色体的特定区域,在染色体的分离中起着关键作用,通过促进动粒的加载,在细胞分裂过程中,动粒形成染色体与纺锤体纤维之间的连接。在植物和动物中,这些区域通常形成串联重复 DNA 序列的兆碱基规模的基因座,即使在模式物种中,这也给基因组研究带来了挑战。着丝粒的功能是通过组蛋白 H3 的一个着丝粒特异性变体的掺入来表观遗传决定的。长读测序技术的最新进展首次允许对这些区域进行组装,并促使人们重新评估着丝粒功能的保真度和这些区域的进化动态。