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首页> 外文期刊>Journal of Experimental Botany >A new dual-specific incompatibility allele revealed by absence of glycosylation in the conserved C2 site of a Solanum chacoense S-RNase.
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A new dual-specific incompatibility allele revealed by absence of glycosylation in the conserved C2 site of a Solanum chacoense S-RNase.

机译:一种新的双特异性不相容性等位基因,其通过在茄子S-RNase的保守C2位点没有糖基化而揭示。

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摘要

The stylar determinant of gametophytic self-incompatibility (GSI) in Solanaceae, Rosaceae, and Plantaginaceae is an S-RNase encoded by a multiallelic S-locus. The primary structure of S-RNases shows five conserved (C) and two hypervariable (HV) regions, the latter forming a domain implicated in S-haplotype-specific recognition of the pollen determinant to SI. All S-RNases are glycosylated at a conserved site in the C2 region, although previous studies have shown that N-linked glycans at this position are not required for S-haplotype-specific recognition and pollen rejection. Here the incompatibility phenotype of three constructs derived from an originally monoglycosylated S11-RNase of Solanum chacoense, that were designed to explore the role of the HV domain in determining pollen recognition and the role of the N-linked glycan in the C2 region, is reported. In one series of experiments, a second glycosylation site was introduced in the HVa region to test for inhibition of pollen-specific recognition. This modification does not impede pollen rejection, although analysis shows incomplete glycosylation at the new site in the HVa region. A second construct, designed to permit complete glycosylation at the HVa site by suppression of the conserved site in the C2 region, did increase the degree of site occupancy, but, again, glycosylation was incomplete. Plants expressing this construct rejected S11 pollen and, surprisingly, also rejected S13 pollen, thus displaying an unusual dual specificity phenotype. This construct differs from the first by the absence of the conserved C2 glycosylation site, and thus the dual specificity is observed only in the absence of the C2 glycan. A third construct, completely lacking glycosylation sites, conferred an ability to reject only S11 pollen, disproving the hypothesis that lack of a conserved glycan would confer a universal pollen rejection phenotype to the plant.
机译:茄科,蔷薇科和车前草科的配子体自我不相容性(GSI)的决定性决定因素是由多等位基因S-基因座编码的S-RNase。 S-RNase的一级结构显示五个保守(C)和两个高变(HV)区,后者形成一个域,与S型花粉决定簇对SI的单倍型特异性识别有关。所有S-RNase在C2区域的保守位点都被糖基化,尽管先前的研究表明S-单倍型特异性识别和花粉排斥不需要该位置的N-连接聚糖。在这里,三个结构的不相容性表型源自茄属最初的单糖基化的S 11 -RNase单糖基化的S 11 -RNase,旨在探索HV结构域在确定花粉识别中的作用和N-连接的作用报道了C2区域的聚糖。在一系列实验中,在HVa区域引入了第二个糖基化位点,以测试对花粉特异性识别的抑制作用。尽管分析显示在HVa区域的新位点糖基化不完全,但这种修饰不会阻止花粉排斥。设计用于通过抑制C2区域中的保守位点而允许在HVa位点完全糖基化的第二种构建物确实增加了位点占用的程度,但是糖基化仍然不完全。表达该构建体的植物拒绝了S 11 花粉,而且令人惊讶地,它也拒绝了S 13 花粉,因此表现出不同寻常的双重特异性表型。该构建体与第一个构建体的区别在于不存在保守的C2糖基化位点,因此仅在不存在C2聚糖的情况下才能观察到双重特异性。完全缺乏糖基化位点的第三个构建体赋予了仅排斥S 11 花粉的能力,从而证明了缺乏保守聚糖会赋予植物普遍花粉排斥表型的假设。

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