State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics, and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China.
J Genet Genomics. 2013 Aug 20;40(8):413-20. doi: 10.1016/j.jgg.2013.05.005. Epub 2013 Jun 10.
Wheat-rye addition and substitution lines and their self progenies revealed variations in telomeric heterochromatin and centromeres. Furthermore, a mitotically unstable dicentric chromosome and stable multicentric chromosomes were observed in the progeny of a Chinese Spring-Imperial rye 3R addition line. An unstable multicentric chromosome was found in the progeny of a 6R/6D substitution line. Drastic variation of terminal heterochromatin including movement and disappearance of terminal heterochromatin occurred in the progeny of wheat-rye addition line 3R, and the 5RS ditelosomic addition line. Highly stable minichromosomes were observed in the progeny of a monosomic 4R addition line, a ditelosomic 5RS addition line and a 6R/6D substitution line. Minichromosomes, with and without the FISH signals for telomeric DNA (TTTAGGG)n, derived from a monosomic 4R addition line are stable and transmissible to the next generation. The results indicated that centromeres and terminal heterochromatin can be profoundly altered in wheat-rye hybrid derivatives.
小麦-黑麦添加系和替代系及其自交后代揭示了端粒异染色质和着丝粒的变化。此外,在中国春-帝国黑麦 3R 添加系的后代中观察到了不稳定的双着丝粒染色体和稳定的多着丝粒染色体。在 6R/6D 替代系的后代中发现了不稳定的多着丝粒染色体。小麦-黑麦添加系 3R 和 5RS 单端体添加系后代的端异染色质发生了剧烈的变化,包括端异染色质的移动和消失。在单体 4R 添加系、5RS 单端体添加系和 6R/6D 替代系的后代中观察到了高度稳定的小染色体。来自单体 4R 添加系的具有和不具有端粒 DNA(TTTAGGG)n FISH 信号的小染色体是稳定的,可以传递到下一代。结果表明,小麦-黑麦杂种衍生系中的着丝粒和端异染色质可以发生深刻的改变。