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The Heterogeneity in the Landscape of Gene Dominance in Maize is Accompanied by Unique Chromatin Environments

机译:玉米基因显性景观的异质性伴随着独特的染色质环境

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摘要

Subgenome dominance after whole-genome duplication (WGD) has been observed in many plant species. However, the degree to which the chromatin environment affects this bias has not been explored. Here, we compared the dominant subgenome (maize1) and the recessive subgenome (maize2) with respect to patterns of sequence substitutions, genes expression, transposable element accumulation, small interfering RNAs, DNA methylation, histone modifications, and accessible chromatin regions (ACRs). Our data show that the degree of bias between subgenomes for all the measured variables does not vary significantly when both of the WGD genes are located in pericentromeric regions. Our data further indicate that the location of maize1 genes in chromosomal arms is pivotal for maize1 to maintain its dominance, but location has a less effect on maize2 homoeologs. In addition to homoeologous genes, we compared ACRs, which often harbor cis-regulatory elements, between the two subgenomes and demonstrate that maize1 ACRs have a higher level of chromatin accessibility, a lower level of sequence substitution, and are enriched in chromosomal arms. Furthermore, we find that a loss of maize1 ACRs near their nearby genes is associated with a reduction in purifying selection and expression of maize1 genes relative to their maize2 homoeologs. Taken together, our data suggest that chromatin environment and cis-regulatory elements are important determinants shaping the divergence and evolution of duplicated genes.
机译:在许多植物物种中观察到全基因组复制 (WGD) 后的亚基因组优势。然而,染色质环境对这种偏倚的影响程度尚未得到探索。在这里,我们比较了显性亚基因组 (maize1) 和隐性亚基因组 (maize2) 在序列替换模式、基因表达、转座因子积累、小干扰 RNA、DNA 甲基化、组蛋白修饰和可接近染色质区域 (ACR) 方面的模式。我们的数据表明,当两个 WGD 基因都位于着丝粒周围区域时,所有测量变量的亚基因组之间的偏倚程度没有显着变化。我们的数据进一步表明,玉米 1 基因在染色体臂中的位置对于玉米 1 保持其优势至关重要,但位置对玉米 2 同源物的影响较小。除了同源基因外,我们还比较了两个亚基因组之间的 ACR,ACRs 通常含有顺式调节元件,并证明玉米 1 ACR 具有更高水平的染色质可及性,较低水平的序列替换,并在染色体臂中富集。此外,我们发现玉米 1 ACR 在其附近基因附近的丢失与玉米 1 基因相对于其 maize2 同源物的纯化选择和表达的减少有关。综上所述,我们的数据表明,染色质环境和顺式调控元件是塑造重复基因分化和进化的重要决定因素。

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