LncRNA evolution and DNA methylation variation participate in photosynthesis pathways of distinct lineages of Populus.

Bio/technology (Nature Publishing Company) Pub Date : 2023-02-06 eCollection Date: 2023-01-01 DOI:10.48130/FR-2023-0003
Jiaxuan Zhou, Fangyuan Song, Yuling He, Wenke Zhang, Liang Xiao, Wenjie Lu, Peng Li, Mingyang Quan, Deqiang Zhang, Qingzhang Du
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Abstract

During the independent process of evolution in plants, photosynthesis appears to have been under convergent evolution to adapt to specific selection pressure in their geographical regions. However, it is unclear how lncRNA regulation and DNA methylation are involved in the phenotypic convergence in distinct lineages. Here, we present a large-scale comparative study of lncRNA transcription profile and whole-genome bisulfite sequencing (WGBS) data in two unrelated Populus species, selected from three relatively overlapping geographical regions. The results indicated that 39.75% lncRNAs of Populus tomentosa were shown to have homologous sequences in the 46.99% lncRNA of Populus simonii. Evolutionary analysis revealed that lncRNAs showed a rapid gain rate in the Populus lineage. Furthermore, co-expression networks in two Populus species identified eight lncRNAs that have the potential to simultaneously cis- or trans-regulate eight photosynthetic-related genes. These photosynthetic lncRNAs and genes were predominantly expressed in accessions from the southern region, indicating a conserved spatial expression in photosynthetic pathways in Populus. We also detected that most lncRNA targeted photosynthetic genes hypomethylated in promoter regions of Southern accessions compared with Northern accessions. Geographical DMRs correlated with genetic SNP variations in photosynthetic genes among Populus from the three geographic regions, indicating that DNA methylation coordinated with lncRNAs in convergent evolution of photosynthesis in Populus. Our results shed light on the evolutionary forces acting on patterns of lncRNA and DNA methylation, and provide a better understanding of the genetic and epigenetic mechanism in photosynthetic convergence evolution.

LncRNA进化和DNA甲基化变异参与了杨树不同品系的光合作用途径。
在植物的独立进化过程中,光合作用似乎经历了趋同进化,以适应其地理区域的特定选择压力。然而,目前尚不清楚lncRNA调控和DNA甲基化是如何参与不同品系的表型趋同的。在此,我们对选自三个相对重叠地理区域的两个无亲缘关系的杨树物种的lncRNA转录谱和全基因组亚硫酸氢盐测序(WGBS)数据进行了大规模比较研究。结果表明,39.75%的杨树 lncRNA 与 46.99% 的杨树 lncRNA 存在同源序列。进化分析表明,lncRNA在杨树系中的增殖速度很快。此外,在两个杨树物种的共表达网络中发现了八个lncRNA,它们有可能同时顺式或反式调节八个光合作用相关基因。这些光合 lncRNA 和基因主要在南部地区的品种中表达,表明杨树光合作用途径的空间表达是保守的。我们还发现,与北方品种相比,南方品种启动子区域的大多数 lncRNA 目标光合基因的甲基化水平较低。地理DMRs与三个地理区域杨树光合基因的遗传SNP变异相关,表明DNA甲基化与lncRNA在杨树光合作用的趋同进化中起着协调作用。我们的研究结果揭示了lncRNA和DNA甲基化模式的进化作用力,有助于更好地理解光合作用趋同进化中的遗传和表观遗传机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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