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与小麦着丝粒反转录转座子相关的直接重复序列。

A direct repeat sequence associated with the centromeric retrotransposons in wheat.

作者信息

Ito Hidetaka, Nasuda Shuhei, Endo Takashi R

机构信息

Laboratory of Plant Genetics, Graduate School of Agriculture, Kyoto University, Kitashirakawaoiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

Genome. 2004 Aug;47(4):747-56. doi: 10.1139/g04-034.

Abstract

A high-density BAC filter of Triticum monococcum was screened for the presence of a centromeric retrotransposon using the integrase region as a probe. Southern hybridization to the BAC digests using total genomic DNA probes of Triticum monococcum, Triticum aestivum, and Hordeum vulgare detected differentially hybridizing restriction fragments between wheat and barley. The fragments that hybridized to genomic DNA of wheat but not to that of barley were subcloned. Fluorescence in situ hybridization (FISH) analysis indicated that the clone pHind258 hybridized strongly to centromeric regions in wheat and rye and weakly to those in barley. The sequence of pHind258 was homologous to integrase and long terminal repeats of centromeric Ty3-gypsy retrotransposons of cereal species. Additionally, pHind258 has a pair of 192-bp direct repeats. FISH analysis indicated that the 192-bp repeat probe hybridized to centromeres of wheat and rye but not to those of barley. We found differential FISH signal intensities among wheat chromosomes using the 192-bp probe. In general, the A-genome chromosomes possess strong FISH signals, the B-genome chromosomes possess moderate signals, and the D-genome chromosomes possess weak signals. This was consistent with the estimated copy numbers of the 192-bp repeats in the ancestral species of hexaploid wheat.

摘要

以整合酶区域为探针,筛选一粒小麦的高密度BAC文库,以检测着丝粒反转录转座子的存在。用一粒小麦、普通小麦和大麦的全基因组DNA探针与BAC酶切片段进行Southern杂交,检测到小麦和大麦之间存在差异杂交的限制性片段。将与小麦基因组DNA杂交但不与大麦基因组DNA杂交的片段进行亚克隆。荧光原位杂交(FISH)分析表明,克隆pHind258与小麦和黑麦的着丝粒区域强烈杂交,与大麦的着丝粒区域弱杂交。pHind258的序列与禾本科物种着丝粒Ty3-gypsy反转录转座子的整合酶和长末端重复序列同源。此外,pHind258有一对192bp的直接重复序列。FISH分析表明,192bp重复序列探针与小麦和黑麦的着丝粒杂交,但不与大麦的着丝粒杂交。我们使用192bp探针发现小麦染色体间FISH信号强度存在差异。一般来说,A基因组染色体具有较强的FISH信号,B基因组染色体具有中等信号,D基因组染色体具有较弱信号。这与六倍体小麦祖先物种中192bp重复序列的估计拷贝数一致。

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