Hybrid lethality caused by two complementary dominant genes in cabbage (Brassica oleracea L.) View Full Text


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Article Info

DATE

2016-06-02

AUTHORS

Yang Hu, Yu-qian Xue, Ji-sheng Liu, Zhi-yuan Fang, Li-mei Yang, Yang-yong Zhang, Hong-hao Lv, Yu-mei Liu, Zhan-sheng Li, Mu Zhuang

ABSTRACT

Hybrid lethality, a type of postzygotic reproductive barrier, is important for species. Discovering novel hybrid lethality cases and analyzing corresponding causal genes may provide new insights into the establishment and maintenance of reproductive isolation. In this study, we observed the hybrid lethality phenomena in a cross between two cabbage inbred lines, 09-211 and 09-222. Genetic analysis revealed that the hybrid lethality was controlled by two complementary dominant genes, BolC.HL1.a and BolC.HL2.a, from 09-211 and 09-222, respectively. Further analysis indicated that the two genes conform to the Bateson-Dobzhansky-Muller model. Fine mapping of hybrid lethal genes revealed that BolC.HL1.a was located on the C01 chromosome by Indels HL132 and HL134, with a genetic distance of 0.2 and 0.1 cM, respectively. The interval distance between the two markers was 101 kb. BolC.HL2.a was fine-mapped on the C04 chromosome by HL235 and HL234 at a distance of 0.3 and 0.3 cM, respectively. The physical distance was 70 kb. These findings lay the foundation for cloning the hybrid lethality genes in the future and contribute to our understanding of the molecular and evolutionary mechanisms of hybrid lethality in Brassica oleracea. More... »

PAGES

73

References to SciGraph publications

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    23 schema:description Hybrid lethality, a type of postzygotic reproductive barrier, is important for species. Discovering novel hybrid lethality cases and analyzing corresponding causal genes may provide new insights into the establishment and maintenance of reproductive isolation. In this study, we observed the hybrid lethality phenomena in a cross between two cabbage inbred lines, 09-211 and 09-222. Genetic analysis revealed that the hybrid lethality was controlled by two complementary dominant genes, BolC.HL1.a and BolC.HL2.a, from 09-211 and 09-222, respectively. Further analysis indicated that the two genes conform to the Bateson-Dobzhansky-Muller model. Fine mapping of hybrid lethal genes revealed that BolC.HL1.a was located on the C01 chromosome by Indels HL132 and HL134, with a genetic distance of 0.2 and 0.1 cM, respectively. The interval distance between the two markers was 101 kb. BolC.HL2.a was fine-mapped on the C04 chromosome by HL235 and HL234 at a distance of 0.3 and 0.3 cM, respectively. The physical distance was 70 kb. These findings lay the foundation for cloning the hybrid lethality genes in the future and contribute to our understanding of the molecular and evolutionary mechanisms of hybrid lethality in Brassica oleracea.
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    32 Brassica oleracea
    33 C01 chromosome
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    35 CM
    36 Further analysis
    37 HL132
    38 HL134
    39 HL235
    40 Indels HL132
    41 Muller model
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    43 barriers
    44 cabbage
    45 cases
    46 causal genes
    47 chromosomes
    48 complementary dominant genes
    49 cross
    50 distance
    51 dominant gene
    52 establishment
    53 evolutionary mechanisms
    54 findings
    55 fine mapping
    56 foundation
    57 future
    58 genes
    59 genetic analysis
    60 genetic distance
    61 hybrid lethal genes
    62 hybrid lethality
    63 hybrid lethality cases
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    69 kb
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    75 lines
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    77 mapping
    78 markers
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    81 new insights
    82 novel hybrid lethality cases
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