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Compositional compartmentalization and compositional patterns in the nuclear genomes of plants.

机译:植物核基因组中的组成区室化和组成模式。

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摘要

We report here results which indicate (i) that the nuclear genomes of angiosperms is characterized by a compositional compartmentalization and an isochore structure; and (ii) that the nuclear genomes of some Gramineae exhibit strikingly different compositional patterns compared to those of many dicots. Indeed, the compositional distribution of nuclear DNA molecules (in the 50-100 Kb size range) from three dicots (pea, sunflower and tobacco) and three monocots (maize, rice and wheat) were found to be centered around lower (41%) and higher (45% for rice, 48% for maize and wheat) GC levels, respectively (and to trail towards even higher GC values in maize and wheat). Experiments on gene localization in density gradient fractions showed a remarkable compositional homogeneity in vast (greater than 100-200 Kb) regions surrounding the genes. On the other hand, the compositional distribution of coding sequences (GenBank and literature data) from dicots (several orders) was found to be narrow, symmetrical and centered around 46% GC, that from monocots (essentially barley, maize and wheat) to be broad, asymmetrical and characterized by an upward trend towards high GC values, with the majority of sequences between 60 and 70% GC. Introns exhibited a similar compositional distribution, but lower GC levels, compared to exons from the same genes.
机译:我们在这里报告的结果表明(i)被子植物的核基因组的特征是组成区室化和等时线结构; (ii)与许多双子叶植物相比,某些禾本科的核基因组表现出明显不同的组成模式。实际上,发现三个双子叶植物(豌豆,向日葵和烟草)和三个单子叶植物(玉米,大米和小麦)的核DNA分子(在50-100 Kb范围内)的组成分布集中在较低的位置(41%)和更高(大米分别为45%,玉米和小麦为48%)的GC水平(并且玉米和小麦的GC值甚至更高)。基因在密度梯度级分中定位的实验表明,在基因周围的广阔区域(大于100-200 Kb)具有明显的成分同质性。另一方面,发现双子叶植物(几个数量级)的编码序列(GenBank和文献数据)的组成分布狭窄,对称且以46%GC为中心,而单子叶植物(主要是大麦,玉米和小麦)的宽广,不对称且特征在于高GC值呈上升趋势,大多数序列在60%至70%GC之间。与来自相同基因的外显子相比,内含子表现出相似的组成分布,但GC水平较低。

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