4.7 Article

Genetic and Molecular Characterization of a Self-Compatible Brassica rapa Line Possessing a New Class II S Haplotype

期刊

PLANTS-BASEL
卷 10, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/plants10122815

关键词

Brassica rapa; self-incompatibility; self-compatibility; S haplotype; S locus receptor kinase (SRK); S locus cysteine-rich protein (SCR); amino acid variations

资金

  1. National Science Foundation of China Youth Fund [31801860]
  2. Key Research and Development project of Hubei Province [2021BBA097, 2020BBB083]

向作者/读者索取更多资源

Most flowering plants have developed a self-incompatibility system to maintain genetic diversity, with Brassica species having sporophytic self-incompatibility. The discovery of a new self-compatible chromosome BrS-325 in a pak choi line '325' shows potential practical breeding applications in B. rapa. The study also reveals high sequence polymorphism and amino acid variations in the S locus, which may affect the interaction between ligands and receptors in SI systems.
Most flowering plants have evolved a self-incompatibility (SI) system to maintain genetic diversity by preventing self-pollination. The Brassica species possesses sporophytic self-incompatibility (SSI), which is controlled by the pollen- and stigma-determinant factors SP11/SCR and SRK. However, the mysterious molecular mechanism of SI remains largely unknown. Here, a new class II S haplotype, named BrS-325, was identified in a pak choi line '325', which was responsible for the completely self-compatible phenotype. To obtain the entire S locus sequences, a complete pak choi genome was gained through Nanopore sequencing and de novo assembly, which provided a good reference genome for breeding and molecular research in B. rapa. S locus comparative analysis showed that the closest relatives to BrS-325 was BrS-60, and high sequence polymorphism existed in the S locus. Meanwhile, two duplicated SRKs (BrSRK-325a and BrSRK-325b) were distributed in the BrS-325 locus with opposite transcription directions. BrSRK-325b and BrSCR-325 were expressed normally at the transcriptional level. The multiple sequence alignment of SCRs and SRKs in class II S haplotypes showed that a number of amino acid variations were present in the contact regions (CR II and CR III) of BrSCR-325 and the hypervariable regions (HV I and HV II) of BrSRK-325s, which may influence the binding and interaction between the ligand and the receptor. Thus, these results suggested that amino acid variations in contact sites may lead to the SI destruction of a new class II S haplotype BrS-325 in B. rapa. The complete SC phenotype of '325' showed the potential for practical breeding application value in B. rapa.

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