Characterization of self-incompatibility genes in the intergeneric hybrid xBrassicoraphanus

被引:0
作者
Hee-Jeong Jung
Jong-In Park
Nasar Uddin Ahmed
Mi-Young Chung
Hye-Ran Kim
Yong-Gu Cho
Soo-Seong Lee
Ill-Sup Nou
机构
[1] Sunchon National University,Department of Horticulture
[2] Sunchon National University,Department of Agricultural Education
[3] KRIBB-Plant Systems Engineering Center,Department of Crop Science
[4] Chungbuk National University,Humantechno Business Incubator Center, BioBreeding Institute
[5] Chung-Ang University,undefined
来源
Plant Systematics and Evolution | 2014年 / 300卷
关键词
Intergeneric hybrid; Self-incompatibility; Self-compatibility; Epigenetic; x;
D O I
暂无
中图分类号
学科分类号
摘要
Brassica rapa and Raphanus sativus are strictly self-incompatible (SI) plants; however, xBrassicoraphanus (baemoochae) is an intergeneric hybrid synthesized following hybridization of B. rapa and R. sativus that is self-compatible (SC). Self-incompatibility in Brassicaceae is controlled by multiple alleles of the S-locus. Two S-locus genes, SRK (S-locus receptor kinase) and SP11/SCR (S-locus protein 11 or S-locus cysteine-rich), have been reported to date, both of which are classified into class I and II. In this study, we investigate if there is an alteration in the structure or the expression in SRK or SP11 genes behind the alteration of SI to SC in baemoochae. Class I and II SRK were identified by PCR of the genomic DNA of baemoochae using SRK-specific universal primers. Cloning and sequencing of both classes of SRK was conducted and compared with SRK genes of parental species. Comparison analysis showed no genomic alterations and both of them showed expression in the stigma. Similarly, SP11 genes also showed no genomic alterations and normally are expressed in the anther. Other SI-related genes (MLPK, ARC1, THL) also showed normal expression in the stigma and anther. Taken together, these results revealed that no structural/gene expression change in these genes was responsible for the breakdown of SI in baemoochae. Rather, the transformation from SI parents to SC descendants could be responding to epigenetic mechanisms.
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页码:1903 / 1911
页数:8
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