水果杏(Prunus armeniaca L.)的自交亲和性与花粉部分突变有关。

Sexual Plant Reproduction Pub Date : 2011-03-01 Epub Date: 2010-07-24 DOI:10.1007/s00497-010-0148-6
Jun Wu, Chao Gu, Yu-Hu Du, Hua-Qing Wu, Wei-Sheng Liu, Ning Liu, Juan Lu, Shao-Ling Zhang
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引用次数: 21

摘要

中国杏(Prunus armeniaca L.)品种表现出典型的s - rase配子体自交不亲和。“凯蒂”是一种天然自交亲和品种,属于欧洲生态型群,通过与中国本土品种杂交,可作为选育自交亲和频率高的新品种的有用材料。在这项工作中,“水果”的花粉S基因(S-单倍型特异性F-box基因,或SFB基因)首次被鉴定为SFB₁和SFB (8), S基因型被确定为S₁S₈。对“水果”控制授粉后代的遗传分析表明,花柱S₁-RNase和S₈-RNase对具有相同S单倍型的野生型花粉具有正常的拒绝功能,而携带SFB₁或SFB₈基因的花粉粒都能够克服不亲和障碍。然而,在假设花粉部分突变与s位点相关的情况下,观察到的s基因型分离率不符合预期的比率。此外,没有检测到SFB₁和SFB₈基因的变化和花粉- s重复。这些结果表明,“水果”的SI分解发生在花粉中,而其他与s位点无关的因素导致了花粉s活性的丧失。这些发现支持了一个假设,即在杏的GSI中需要s位点以外的修饰因子。
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Self-compatibility of 'Katy' apricot (Prunus armeniaca L.) is associated with pollen-part mutations.

Apricot (Prunus armeniaca L.) cultivars originated in China display a typical S-RNase-based gametophytic self-incompatibility (GSI). 'Katy', a natural self-compatible cultivar belonging to the European ecotype group, was used as a useful material for breeding new cultivars with high frequency of self-compatibility by hybridizing with Chinese native cultivars. In this work, the pollen-S genes (S-haplotype-specific F-box gene, or SFB gene) of 'Katy' were first identified as SFB₁ and SFB (8), and the S-genotype was determined as S₁ S₈. Genetic analysis of 'Katy' progenies under controlled pollination revealed that the stylar S₁-RNase and S₈-RNase have a normal function in rejecting wild-type pollen with the same S-haplotype, while the pollen grains carrying either the SFB₁ or the SFB₈ gene are both able to overcome the incompatibility barrier. However, the observed segregation ratios of the S-genotype did not fit the expected ratios under the assumption that the pollen-part mutations are linked to the S-locus. Moreover, alterations in the SFB₁ and SFB₈ genes and pollen-S duplications were not detected. These results indicated that the breakdown of SI in 'Katy' occurred in pollen, and other factors not linked to the S-locus, which caused a loss of pollen S-activity. These findings support a hypothesis that modifying factors other than the S-locus are required for GSI in apricot.

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来源期刊
Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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