Molecular dissection of the parental contribution in Paeonia Itoh hybrids

Author:

Hong Conghao12,Zhao Yingying12,Qiao Meiyu12,Huang Ziteng34,Wei Lan12,Zhou Qingqing12,Lu Wanqing12,Sun Guorun34,Huang Zhimin34,Gao Hongbo12ORCID

Affiliation:

1. National Engineering Research Center of Tree Breeding and Ecological Restoration, College of Biological Sciences and Technology, Beijing Forestry University , Beijing 100083 , China

2. State Key Laboratory of Efficient Production of Forest Resources, Beijing Forestry University , Beijing 100083 , China

3. National Peony Gene Bank , Luoyang, Henan Province 471002 , China

4. Luoyang Peony Industry Development Center , Luoyang, Henan Province 471002 , China

Abstract

Abstract Hybrid breeding between herbaceous peonies (the maternal parent) and tree peonies (the paternal parent) results in Paeonia Itoh hybrids (Itoh peonies), a triploid species that combines advantageous traits from both parental species, thus offering great economic value. However, the exact genetic contribution of the two parents is unclear. In this study, we introduce a straightforward approach utilizing heterozygous single-nucleotide polymorphisms (SNPs) and Sanger sequencing of targeted gene fragments to trace the original bases back to their parents in Itoh peonies. Our results indicate that in triploid Itoh peonies, only one set of genes is derived from herbaceous peonies, and two sets of genes are derived from the tree peonies. Notably, the presence of three distinct bases of heterozygous SNPs across multiple Itoh cultivars suggests that the gametes from the paternal parents carry two sets of heterozygous homologous chromosomes, which could be due to Meiosis I failure during gamete formation. To validate our method's effectiveness in parentage determination, we analyze two Itoh hybrids and their parents, confirming its practical utility. This research presents a method to reveal the parental genetic contribution in Itoh peonies, which could enhance the efficiency and precision of hybrid breeding programs of triploids in Paeonia and other plant species.

Funder

Peony Project of National Forest Germplasm Resource Bank

intramural fund of Beijing Forestry University

Publisher

Oxford University Press (OUP)

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