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染色质压缩改变和组蛋白甲基化驱动拟南芥种间杂种中的非加性基因表达。

Altered chromatin compaction and histone methylation drive non-additive gene expression in an interspecific Arabidopsis hybrid.

作者信息

Zhu Wangsheng, Hu Bo, Becker Claude, Doğan Ezgi Süheyla, Berendzen Kenneth Wayne, Weigel Detlef, Liu Chang

机构信息

Department of Molecular Biology, Max Planck Institute for Developmental Biology, Tübingen, 72076, Germany.

Center for Plant Molecular Biology (ZMBP), University of Tübingen, Auf der Morgenstelle 32, Tübingen, 72076, Germany.

出版信息

Genome Biol. 2017 Aug 22;18(1):157. doi: 10.1186/s13059-017-1281-4.

Abstract

BACKGROUND

The merging of two diverged genomes can result in hybrid offspring that phenotypically differ greatly from both parents. In plants, interspecific hybridization plays important roles in evolution and speciation. In addition, many agricultural and horticultural species are derived from interspecific hybridization. However, the detailed mechanisms responsible for non-additive phenotypic novelty in hybrids remain elusive.

RESULTS

In an interspecific hybrid between Arabidopsis thaliana and A. lyrata, the vast majority of genes that become upregulated or downregulated relative to the parents originate from A. thaliana. Among all differentially expressed A. thaliana genes, the majority is downregulated in the hybrid. To understand why parental origin affects gene expression in this system, we compare chromatin packing patterns and epigenomic landscapes in the hybrid and parents. We find that the chromatin of A. thaliana, but not that of A. lyrata, becomes more compact in the hybrid. Parental patterns of DNA methylation and H3K27me3 deposition are mostly unaltered in the hybrid, with the exception of higher CHH DNA methylation in transposon-rich regions. However, A. thaliana genes enriched for the H3K27me3 mark are particularly likely to differ in expression between the hybrid and parent.

CONCLUSIONS

It has long been suspected that genome-scale properties cause the differential responses of genes from one or the other parent to hybridization. Our work links global chromatin compactness and H3K27me3 histone modification to global differences in gene expression in an interspecific Arabidopsis hybrid.

摘要

背景

两个分化的基因组融合可产生表型与双亲差异极大的杂交后代。在植物中,种间杂交在进化和物种形成中发挥着重要作用。此外,许多农业和园艺物种都源自种间杂交。然而,杂种中非加性表型新奇性的具体机制仍不清楚。

结果

在拟南芥和琴叶拟南芥的种间杂种中,相对于亲本上调或下调的绝大多数基因源自拟南芥。在所有差异表达的拟南芥基因中,大多数在杂种中下调。为了解为何亲本来源会影响该系统中的基因表达,我们比较了杂种及其亲本的染色质包装模式和表观基因组景观。我们发现,在杂种中,拟南芥的染色质变得更加致密,而琴叶拟南芥的染色质则不然。除了富含转座子区域的CHH DNA甲基化水平较高外,杂种中DNA甲基化和H3K27me3沉积的亲本模式大多未改变。然而,富含H3K27me3标记的拟南芥基因在杂种和亲本之间的表达差异尤为明显。

结论

长期以来,人们一直怀疑基因组规模的特性会导致来自一方或另一方亲本的基因对杂交产生不同反应。我们的研究将整体染色质致密性和H3K27me3组蛋白修饰与拟南芥种间杂种中基因表达的整体差异联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32af/5568265/9e85c25a8598/13059_2017_1281_Fig1_HTML.jpg

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