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Two Novel Self-compatible S Haplotypes in Peach (Prunus persica)

机译:桃中的两种新的自相容S单倍型

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摘要

Peach (Prunus persica) as a species is self-compatible (SC), although most other Prunus fruit tree species are partially or fully self-incompatible. We previously identified 3 mutated S haplotypes, S1, S2, and S2m, that confer self-compatibility on commercial peach cultivars for fruit production. In this report, we identified 2 novel SC S haplotypes, S3 and S4, among 130 peach cultivars and strains consisting mainly of ornamental cultivars and wild strains. The S3 haplotype was found only in ornamental cultivars, while the S4 haplotype was found mainly in wild strains. S-RNases in the S3 and S4 haplotypes appeared to have no defects in their primary structures. S haplotype-specific F-box (SFB) sequences were also present in the S locus downstream of the S3- and S4-RNases. These SFB sequences were in a reverse transcriptional orientation as has been reported in most other functional Prunus S haplotypes; however, both SFB3 and SFB4 appeared to be mutated. DNA sequencing of the entire downstream region of SFB3, extending about 12 kbp to the stop codon of S-RNase, revealed the presence of a premature stop codon 975 bp downstream from the SFB3 start codon. No sequence homologous to SFB downstream of the stop codon was found. There was a 4946 bp insertion in the middle of SFB4. The original SFB4 sequence, obtained by removing the inserted sequence, encodes a typical SFB. Based on the 3 previously identified peach S haplotypes, we supposed that the S3 and S4 haplotypes were also SC pollen part mutant (PPM) S haplotypes. Here, we also discuss possible reasons for all peach S haplotypes identified so far having the PPM SC S haplotype
机译:桃(Prunus persica)作为一个物种是自相容的(SC),尽管大多数其他的Prunus果树物种都是部分或完全不相容的。我们之前确定了3个突变的S单倍型S1,S2和S2m,它们赋予商品桃品种用于果实生产的自相容性。在本报告中,我们在130个桃品种和主要由观赏品种和野生菌株组成的菌株中鉴定出2个新颖的SC S单倍型S3和S4。 S3单倍型仅在观赏品种中发现,而S4单倍型主要在野生株中发现。 S3和S4单倍型中的S-RNase似乎在其一级结构中没有缺陷。 S单倍型特异性F-box(SFB)序列也存在于S3-和S4-RNase下游的S基因座中。正如大多数其他功能性李子单倍型中所报道的那样,这些SFB序列处于逆转录方向。但是,SFB3和SFB4似乎都发生了突变。 SFB3整个下游区域的DNA测序(延伸至S-RNase的终止密码子约12 kbp)揭示了在SFB3起始密码子下游存在975 bp的过早终止密码子。没有发现与终止密码子下游的SFB同源的序列。 SFB4的中间插入了4946 bp。通过删除插入的序列获得的原始SFB4序列编码一个典型的SFB。基于先前确定的3种桃S单倍型,我们认为S3和S4单倍型也是SC花粉部分突变(PPM)S单倍型。在这里,我们还讨论了到目前为止确定的所有具有PPM SC S单倍型的桃S单倍型的可能原因。

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