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大麦(Hordeum vulgare L.)与球茎大麦(H. bulbosum (L.))杂交种中Rrn位点的分子变化。

Molecular changes at Rrn loci in barley (Hordeum vulgare L.) hybrids with H. bulbosum (L.).

作者信息

Subrahmanyam NC

机构信息

School of Life Sciences, University of Hyderabad, India.

出版信息

Genome. 1999 Dec;42(6):1127-33. doi: 10.1139/g99-053.

Abstract

Southern blots of restriction fragments of genomic DNAs from Hordeum vulgare (L.), H. bulbosum (L.), and interspecific hybrids and their derivatives were hybridized with rDNA probe to identify locus-specific modifications at Rrn loci. H. bulbosum rDNA revealed a single EcoRV site per repeat compared with two sites in H. vulgare rDNA repeats. H. bulbosum accessions possessed at least two rDNA repeat lengths, indicating heterozygosity at the Rrn locus. Hybrids possessed both H. vulgare and H. bulbosum rDNA repeats. Two of the hybrid derivatives possessed bulbosum-specific Sau3AI and HaeIII rDNA fragments, while amphiploid and doubled haploid derivatives lacked H. bulbosum rDNA repeat units and (or) fragments. Two hybrid derivatives, one amphiploid and a doubled haploid derived from the same parental combination, lacked the vulgare Rrn2-specific 9.0-kb rDNA repeat. This is the first conclusive evidence for the elimination of vulgare genetic material in vulgare-bulbosum hybrids. The ratios of 9.0- to 9.9-kb vulgare repeats and H. vulgare to H. bulbosum rDNA repeats indicate partial loss of the vulgare-specific 9.0-kb rDNA repeat among the hybrids. Differences in MboI and Sau3AI fragments and the ratios of 9.0 to 9.9 kb vulgare rDNA repeats revealed differential methylation at Rrn1 and Rrn2 loci. Hybrids and derivatives showed differential distribution of methylation of EcoRI, BglII, and SacI sites at the Rrn1 locus. Two of the hybrid derivatives exhibited extensive CpG-biased methylation. Data presented here are indicative of the differences in the onset of events triggered by the interaction of the component genomes and enabled detection of differential methylation among Rrn loci, loss of H. vulgare genetic material, and development of doubled haploids with the Rrn1 locus.

摘要

对来自大麦(Hordeum vulgare (L.))、球茎大麦(H. bulbosum (L.))、种间杂种及其衍生物的基因组DNA限制性片段进行Southern杂交,用核糖体DNA(rDNA)探针来鉴定核糖体RNA(Rrn)基因座上的位点特异性修饰。与大麦rDNA重复序列中的两个位点相比,球茎大麦rDNA每个重复序列显示一个EcoRV位点。球茎大麦种质至少拥有两种rDNA重复长度,表明Rrn基因座存在杂合性。杂种同时拥有大麦和球茎大麦的rDNA重复序列。两个杂种衍生物拥有球茎大麦特异的Sau3AI和HaeIII rDNA片段,而双二倍体和双单倍体衍生物缺乏球茎大麦rDNA重复单元和(或)片段。两个杂种衍生物、一个双二倍体和一个源自相同亲本组合的双单倍体缺乏大麦Rrn2特异的9.0-kb rDNA重复序列。这是大麦-球茎大麦杂种中消除大麦遗传物质的首个确凿证据。9.0-kb与9.9-kb大麦重复序列的比例以及大麦与球茎大麦rDNA重复序列的比例表明杂种中大麦特异的9.0-kb rDNA重复序列部分丢失。MboI和Sau3AI片段的差异以及9.0至9.9 kb大麦rDNA重复序列的比例揭示了Rrn1和Rrn2基因座的差异甲基化。杂种和衍生物在Rrn1基因座上显示出EcoRI、BglII和SacI位点甲基化的差异分布。两个杂种衍生物表现出广泛的CpG偏向性甲基化。此处呈现的数据表明了由组成基因组相互作用引发的事件起始存在差异,并能够检测Rrn基因座之间的差异甲基化、大麦遗传物质的丢失以及具有Rrn1基因座的双单倍体的发育情况。

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