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首页> 外文期刊>Plant Molecular Biology >Self-compatible peach (Prunus persica) has mutant versions of the S haplotypes found in self-incompatible Prunus species
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Self-compatible peach (Prunus persica) has mutant versions of the S haplotypes found in self-incompatible Prunus species

机译:自相容桃(Prunus persica)具有自相容桃属中发现的S单倍型突变体

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摘要

This study demonstrates that self-compatible (SC) peach has mutant versions of S haplotypes that are present in self-incompatible (SI) Prunus species. All three peach S haplotypes, S 1 , S 2 , and S 2m , found in this study encode mutated pollen determinants, SFB, while only S 2m has a mutation that affects the function of the pistil determinant S-RNase. A cysteine residue in the C5 domain of the S 2m -RNase is substituted by a tyrosine residue, thereby reducing RNase stability. The peach SFB mutations are similar to the SFB mutations found in SC haplotypes of sweet cherry (P. avium) and Japanese apricot (P. mume). SFB 1 of the S 1 haplotype, a mutant version of almond (P. dulcis) S k haplotype, encodes truncated SFB due to a 155 bp insertion. SFB 2 of the S 2 and S 2m haplotypes, both of which are mutant versions of the S a haplotype in Japanese plum (P. salicina), encodes a truncated SFB due to a 5 bp insertion. Thus, regardless of the functionality of the pistil determinant, all three peach S haplotypes are SC haplotypes. Our finding that peach has mutant versions of S haplotypes that function in almond and Japanese plum, which are phylogenetically close and remote species, respectively, to peach in the subfamily Prunoideae of the Roasaceae, provides insight into the SC/SI evolution in Prunus. We discuss the significance of SC pollen part mutation in peach with special reference to possible differences in the SI mechanisms between Prunus and Solanaceae.
机译:这项研究表明自相容(SC)桃具有S单倍型的突变版本,存在于自相容(SI)李属物种中。在这项研究中发现的所有三个桃S单倍型S 1 ,S 2 和S 2m 编码突变的花粉决定簇SFB,而只有S 2m 具有突变会影响雌蕊决定簇S-RNase的功能。 S 2m RNase的C5域中的半胱氨酸残基被酪氨酸残基取代,从而降低了RNase的稳定性。桃的SFB突变与在甜樱桃(P. avium)和日本杏(P. mume)的SC单倍型中发现的SFB突变相似。 S 1 单倍型的SFB 1 是杏仁(P. dulcis)S k 单倍型的突变版本,由于插入155 bp而编码截短的SFB。 S 2 和S 2m 单倍型的SFB 2 都是日本李(P. salicina)的S a 单倍型的突变版本。 SFB由于插入了5 bp。因此,不管雌蕊决定簇的功能如何,所有三个桃S单倍型都是SC单倍型。我们的发现桃具有在杏仁和日本李中起作用的S型单倍型突变体,它们在系统发育上与蔷薇科亚科Prunoideae的桃分别接近和相距较远,从而提供了对Prunus中SC / SI进化的了解。我们讨论了桃中SC花粉部分突变的重要性,并特别提到了李子和茄科的SI机制可能存在的差异。

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