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首页> 外文期刊>Genome >Genome size in natural and synthetic autopolyploids and in a natural segmental allopolyploid of several Triticeae species
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Genome size in natural and synthetic autopolyploids and in a natural segmental allopolyploid of several Triticeae species

机译:天然和合成自身多倍体以及几种小麦的自然节段同素多倍体的基因组大小

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摘要

Nuclear DNA amount (1C) was determined by flow cytometry in the autotetraploid cytotype of Hordeum bulbosum, in the cytologically diploidized autotetraploid cytotypes of Elymus elongatus, Hordeum murinum subsp. murinum and Hordeum murinum subsp. leporinum, in Hordeum marinum subsp. gussoneanum, in their progenitor diploid cytotypes, and in a newly synthesized autotetraploid line of E. elongatus. Several lines collected from different regions of the distribution area of every taxon, each represented by a number of plants, were analyzed in each taxon. The intracytotype variation in nuclear DNA amount of every diploid and autotetraploid cytotype was very small, indicating that no significant changes have occurred in DNA amount either after speciation or after autopolyploid formation. The autotetraploid cytotypes of H. bulbosum and the cytologically,diploidized H. marinum subsp. gussoneanum had the expected additive amount of their diploid cytotypes. On the other hand, the cytologically diploidized autotetraploid cytotypes of E. elongatus and H. murinum subsp. murinum and H. murinum subsp. leporinum had considerably less nuclear DNA (10%-23%) than the expected additive value. Also, the newly synthesized autotetraploid line of E. elongatus showed similar reduction in DNA as its natural counterpart, indicating that the reduction in genome size occurred in the natural cytotype during autopolyploidization. It is suggested that the diploid-like meiotic behavior of these cytologically dipolidized autotetraploids is caused by the instantaneous elimination of a large number of DNA sequences, different sequences from different homologous pairs, leading to differentiation of the constituent genomes. The eliminated sequences are likely to include those that participate in homologous recognition and initiation of meiotic pairing. A gene system determining exclusive bivalent pairing by utilizing the differentiation between the two groups of homologues has been presumably superimposed on the DNA reduction process.
机译:通过流式细胞术测定球茎大麦的四倍体细胞型,伸长的披碱草,大麦亚种的细胞学二倍体化四倍体细胞型中的核DNA量(1C)。沙和大麦沙亚种。 leporinum,在大麦海洋亚种中。 gussoneanum,其祖先二倍体细胞型,以及新合成的E. elongatus同源四倍体系。在每个分类单元中分析了从每个分类单元分布区域的不同区域收集的几条线,每条线都由许多植物代表。每个二倍体和同源四倍体细胞型的核DNA量的细胞内类型变化很小,这表明在物种形成或同源多倍体形成后,DNA量均未发生显着变化。球茎腐霉的四倍体细胞型和细胞学上二倍体的海藻分支杆菌亚种。 gussoneanum具有预期的二倍体细胞型加性。另一方面,E。longatus和H. murinum亚种的细胞学上二倍体同源四倍体细胞型。 uri和H氏亚种麻风菌的核DNA(10%-23%)明显少于预期的加和值。另外,新合成的长肠埃希氏菌的四倍体系显示出与其天然对应物相似的DNA减少,表明基因组大小的减少发生在多倍体化过程中的天然细胞类型中。提示这些细胞学上二聚化的同源四倍体的二倍体样减数分裂行为是由于瞬时消除大量DNA序列,来自不同同源对的不同序列而引起的,从而导致组成基因组的分化。消除的序列可能包括那些参与同源识别和减数分裂配对起始的序列。通过利用两组同源物之间的差异来确定排他性二价配对的基因系统可能已经叠加在DNA还原过程上。

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