Kishii M, Nagaki K, Tsujimoto H
Kihara Institute for Biological Research and Graduate School of Integrated Science, Yokohama City University, Yokohama, Japan.
Chromosome Res. 2001;9(5):417-28. doi: 10.1023/a:1016739719421.
Although Tail-family sequences are present in the subtelomeric region of Leymus racemosus, it became apparent in the present study that such sequences are also present in the centromeric region of common wheat (Triticum aestivum). These sequences hybridized to all chromosomes with various degrees of signal strength. FISH using Tail and Ty3/gypsy, a conservative sequence in cereal centromeres, revealed a complicated arrangement of both sequences in all wheat chromosomes at once. Unlike the Arabidopsis centromeres characterized by massive tandem arrays of 180-bp family with flanking paracentromeric retrotransposons in all chromosomes, wheat chromosomes showed various arrangement patterns of Tail and Ty3/gypsy sequences depending on the chromosome; Tail-family sequences were scattered in many wheat centromeres as isolated colonies instead of forming uninterrupted solid tandem arrays. This pattern may have resulted from retrotransposon insertion within pre-existing Tail-tandem arrays or a two-step amplification mechanism of the Tail family where each Tail colony was amplified to form arrays independently after the insertion of Tail-family sequences along the entire centromere. Although sequence analysis of centromeric Tail repeats in wheat and subtelomeric Tail repeats in L. racemosus showed variable and conservative regions between the two repeats, they did not show a distinctive difference phylogenically. The widespread presence of tandem repetitive sequences in the eucaryotic centromere suggests a significant role for them in centromeric formation.
虽然在总状羊茅的亚端粒区域存在Tail家族序列,但在本研究中很明显,这些序列也存在于普通小麦(Triticum aestivum)的着丝粒区域。这些序列以不同程度的信号强度与所有染色体杂交。使用Tail和Ty3/gypsy(一种谷物着丝粒中的保守序列)进行荧光原位杂交,结果显示这两种序列在所有小麦染色体中同时呈现出复杂的排列方式。与拟南芥着丝粒不同,拟南芥着丝粒的特征是所有染色体中都有大量由180-bp家族串联排列并伴有侧翼近着丝粒反转录转座子,而小麦染色体根据染色体不同呈现出Tail和Ty3/gypsy序列的各种排列模式;Tail家族序列在许多小麦着丝粒中以孤立菌落的形式分散存在,而不是形成不间断的连续串联阵列。这种模式可能是由于反转录转座子插入到预先存在的Tail串联阵列中,或者是Tail家族的两步扩增机制导致的,即沿着整个着丝粒插入Tail家族序列后,每个Tail菌落独立扩增形成阵列。虽然对小麦着丝粒Tail重复序列和总状羊茅亚端粒Tail重复序列的序列分析显示这两种重复序列之间存在可变区和保守区,但它们在系统发育上并没有明显差异。真核生物着丝粒中串联重复序列的广泛存在表明它们在着丝粒形成中具有重要作用。