Bioinformatics Center, College of Life Science, Northwest A&F University, Xianyang, Shaanxi, China.
PLoS One. 2010 Oct 11;5(10):e13303. doi: 10.1371/journal.pone.0013303.
The isochore, a large DNA sequence with relatively small GC variance, is one of the most important structures in eukaryotic genomes. Although the isochore has been widely studied in humans and other species, little is known about its distribution in pigs.
In this paper, we construct a map of long homogeneous genome regions (LHGRs), i.e., isochores and isochore-like regions, in pigs to provide an intuitive version of GC heterogeneity in each chromosome. The LHGR pattern study not only quantifies heterogeneities, but also reveals some primary characteristics of the chromatin organization, including the followings: (1) the majority of LHGRs belong to GC-poor families and are in long length; (2) a high gene density tends to occur with the appearance of GC-rich LHGRs; and (3) the density of LINE repeats decreases with an increase in the GC content of LHGRs. Furthermore, a portion of LHGRs with particular GC ranges (50%-51% and 54%-55%) tend to have abnormally high gene densities, suggesting that biased gene conversion (BGC), as well as time- and energy-saving principles, could be of importance to the formation of genome organization.
This study significantly improves our knowledge of chromatin organization in the pig genome. Correlations between the different biological features (e.g., gene density and repeat density) and GC content of LHGRs provide a unique glimpse of in silico gene and repeats prediction.
同调区是真核生物基因组中最重要的结构之一,它是一段具有相对较小 GC 变化的大 DNA 序列。尽管同调区在人类和其他物种中得到了广泛的研究,但关于其在猪中的分布却知之甚少。
在本文中,我们构建了猪的长均一基因组区域(LHGR)图谱,即同调区和类同调区,以直观展示每条染色体上 GC 异质性。LHGR 模式研究不仅量化了异质性,还揭示了染色质组织的一些主要特征,包括:(1)大多数 LHGR 属于 GC 贫乏家族,且长度较长;(2)高基因密度往往与 GC 丰富的 LHGR 出现相关;(3)随着 LHGR 中 GC 含量的增加,LINE 重复序列的密度降低。此外,一部分具有特定 GC 范围(50%-51%和 54%-55%)的 LHGR 倾向于具有异常高的基因密度,这表明偏向基因转换(BGC)以及节省时间和能量的原则可能对基因组组织的形成很重要。
本研究显著提高了我们对猪基因组中染色质组织的认识。LHGR 的不同生物学特征(如基因密度和重复密度)与 GC 含量之间的相关性为基因和重复序列的计算机预测提供了独特的视角。