Multiomics analyses provide insights into the genomic basis of differentiation among four sweet osmanthus groups

Author:

Li Yong123ORCID,Zhao Heng34ORCID,Xia He-Xiao34ORCID,Huang Jinling56ORCID,Ma Nan7ORCID,Guo Peng13ORCID,Liu Yan-Pei13ORCID,Liu Hong-Li34ORCID,Wang Yi-Han13ORCID,Lin Nan13ORCID,Shang Fu-De134ORCID

Affiliation:

1. Department of Botany, College of Life Science, Henan Agricultural University , Zhengzhou 450002 , China

2. Department of Biochemistry and Molecular Biology, College of Life Science and Technology, Inner Mongolia Normal University , Huhehaote 010020 , China

3. Henan Engineering Research Center for Osmanthus Germplasm Innovation and Resource Utilization, Henan Agricultural University , Zhengzhou 450002 , China

4. Department of Landscape Botany, College of Landscape and Art, Henan Agricultural University , Zhengzhou 450002 , China

5. Department of Biology, East Carolina University , Greenville, NC 27858 , USA

6. State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Science, Henan University , Kaifeng 475004 , China

7. Department of Ornamental Horticulture, State Key Laboratory of Agrobiotechnology, Beijing Key Laboratory of Development and Quality Control of Ornamental Crops, China Agricultural University , Beijing 100193 , China

Abstract

Abstract Sweet osmanthus (Osmanthus fragrans) is famous in China for its flowers and contains four groups: Albus, Luteus, Aurantiacus, and Asiaticus. Understanding the relationships among these groups and the genetic mechanisms of flower color and aroma biosynthesis are of tremendous interest. In this study, we sequenced representative varieties from two of the four sweet osmanthus groups. Multiomics and phylogenetic analyses of varieties from each of the four groups showed that Asiaticus split first within the species, followed by Aurantiacus and the sister groups Albus and Luteus. We show that the difference in flower color between Aurantiacus and the other three groups was caused by a 4-bp deletion in the promoter region of carotenoid cleavage dioxygenase 4 (OfCCD4) that leads to expression decrease. In addition, we identified 44 gene pairs exhibiting significant structural differences between the multiseasonal flowering variety “Rixianggui” in the Asiaticus group and other autumn-flowering varieties. Through correlation analysis between intermediate products of aromatic components and gene expression, we identified eight genes associated with the linalool and α- and β-ionone biosynthesis pathways. Overall, our study offers valuable genetic resources for sweet osmanthus, while also providing genetic clues for improving the flower color and multiseasonal flowering of osmanthus and other flowers.

Funder

Henan Province Major Research Fund of Public Welfare

China National Key R&D Program during the 14th Five-year Plan Period

National Natural Science Foundation of China

Basic Research Project of Key Scientific Research Program of higher education institutions in Henan Province

Postgraduate Education Reform and Quality Improvement Project of Henan Province

Publisher

Oxford University Press (OUP)

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