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Interhaplotypic heterogeneity and heterochromatic features may contribute to recombination suppression at the S locus in apple (Malus×domestica)

机译:轮候间的异质性和异色特征可能有助于抑制苹果(Malus×domestica)S基因座的重组

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摘要

Gametophytic self-incompatibility (GSI) is controlled by a complex S locus containing the pistil determinant S-RNase and pollen determinant SFB/SLF. Tight linkage of the pistil and pollen determinants is necessary to guarantee the self-incompatibility (SI) function. However, multiple probable pollen determinants of apple and Japanese pear, SFBBs (S locus F-box brothers), exist in each S haplotype, and how these multiple genes maintain the SI function remains unclear. It is shown here by high-resolution fluorescence in situ hybridization (FISH) that SFBB genes of the apple S 9 haplotype are physically linked to the S 9 -RNase gene, and the S locus is located in the subtelomeric region. FISH analyses also determined the relative order of SFBB genes and S-RNase in the S 9 haplotype, and showed that gene order differs between the S 9 and S 3 haplotypes. Furthermore, it is shown that the apple S locus is located in a knob-like large heterochromatin block where DNA is highly methylated. It is proposed that interhaplotypic heterogeneity and the heterochromatic nature of the S locus help to suppress recombination at the S locus in apple.
机译:配子体自我不相容性(GSI)由包含雌蕊决定簇S-RNase和花粉决定簇SFB / SLF的复杂S基因座控制。雌蕊和花粉决定簇之间的紧密连接对于确保自我不相容(SI)功能是必要的。但是,在每个S单倍型中存在苹果和日本梨的多个可能的花粉决定因子SFBB(S基因座F-box兄弟),这些基因如何维持SI功能尚不清楚。通过高分辨率荧光原位杂交(FISH)显示,苹果S 9 单倍型的SFBB基因与S 9 -RNase基因物理连接,并且S基因座位于亚端粒区域。 FISH分析还确定了 S 9 单倍型中SFBB基因和S-RNase的相对顺序,并表明< em> S 9 S 3 单倍型。此外,表明苹果的 S 基因座位于一个纽扣状的大异染色质块中,DNA高度甲基化。提出了苹果的 S 基因座的异位性和异质性有助于抑制苹果中 S 基因座的重组。

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