Evolutionary trajectory of organelle-derived nuclear DNAs in the Triticum/Aegilops complex species

Author:

Zhang Zhibin1ORCID,Zhao Jing1,Li Juzuo1ORCID,Yao Jinyang1ORCID,Wang Bin1ORCID,Ma Yiqiao2ORCID,Li Ning1ORCID,Wang Hongyan3ORCID,Wang Tianya1ORCID,Liu Bao1ORCID,Gong Lei1ORCID

Affiliation:

1. Key Laboratory of Molecular Epigenetics of the Ministry of Education (MOE), Northeast Normal University , Changchun 130024 , China

2. Jilin Academy of Vegetable and Flower Science , Changchun 130033 , China

3. Laboratory of Plant Epigenetics and Evolution, School of Life Science, Liaoning University , Shenyang 110036 , China

Abstract

Abstract Organelle-derived nuclear DNAs, nuclear plastid DNAs (NUPTs), and nuclear mitochondrial DNAs (NUMTs) have been identified in plants. Most, if not all, genes residing in NUPTs/NUMTs (NUPGs/NUMGs) are known to be inactivated and pseudogenized. However, the role of epigenetic control in silencing NUPGs/NUMGs and the dynamic evolution of NUPTs/NUMTs with respect to organismal phylogeny remain barely explored. Based on the available nuclear and organellar genomic resources of wheat (genus Triticum) and goat grass (genus Aegilops) within Triticum/Aegilops complex species, we investigated the evolutionary fates of NUPTs/NUMTs in terms of their epigenetic silencing and their dynamic occurrence rates in the nuclear diploid genomes and allopolyploid subgenomes. NUPTs and NUMTs possessed similar genomic atlas, including (i) predominantly located in intergenic regions and preferential integration to gene regulation regions and (ii) generating sequence variations in the nuclear genome. Unlike nuclear indigenous genes, the alien NUPGs/NUMGs were associated with repressive epigenetic signals, namely high levels of DNA methylation and low levels of active histone modifications. Phylogenomic analyses suggested that the species-specific and gradual accumulation of NUPTs/NUMTs accompanied the speciation processes. Moreover, based on further pan-genomic analyses, we found significant subgenomic asymmetry in the NUPT/NUMT occurrence, which accumulated during allopolyploid wheat evolution. Our findings provide insight into the dynamic evolutionary fates of organelle-derived nuclear DNA in plants.

Funder

International Cooperation and Exchange Program of the National Natural Science Foundation of China

China Postdoctoral Special Funding

China Postdoctoral Science Foundation

Young Scientific and Technological Talents Supporting Project of Jilin Province

Fundamental Research Fund for Central Universities and CAS Youth Interdisciplinary Team

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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