首页> 美国卫生研究院文献>Genetics >Rejection of S-heteroallelic pollen by a dual-specific s-RNase in Solanum chacoense predicts a multimeric SI pollen component.
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Rejection of S-heteroallelic pollen by a dual-specific s-RNase in Solanum chacoense predicts a multimeric SI pollen component.

机译:茄中双特异性s-RNase抑制S-异位基因花粉预测了多聚体SI花粉成分。

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摘要

S-heteroallelic pollen (HAP) grains are usually diploid and contain two different S-alleles. Curiously, HAP produced by tetraploids derived from self-incompatible diploids are typically self-compatible. The two different hypotheses previously advanced to explain the compatibility of HAP are the lack of pollen-S expression and the "competition effect" between two pollen-S gene products expressed in a single pollen grain. To distinguish between these two possibilities, we used a previously described dual-specific S(11/13)-RNase, termed HVapb-RNase, which can reject two phenotypically distinct pollen (P(11) and P(13)). Since the HVapb-RNase does not distinguish between the two pollen types (it recognizes both), P(11)P(13) HAP should be incompatible with the HVapb-RNase in spite of the competition effect. We show here that P(11)P(13) HAP is accepted by S(11)S(13) styles, but is rejected by the S(11/13)-RNase, which demonstrates that the pollen-S genes must be expressed in HAP. A model involving tetrameric pollen-S is proposed to explain both the compatibility of P(11)P(13) HAP on S(11)S(13)-containing styles and the incompatibility of P(11)P(13) HAP on styles containing the HVapb-RNase.
机译:S-等位基因花粉(HAP)粒通常是二倍体,包含两个不同的S-等位基因。奇怪的是,由自不相容的二倍体衍生的四倍体产生的HAP通常是自相容的。先前用来解释HAP兼容性的两个不同假设是:缺乏花粉S表达和在单个花粉粒中表达的两个花粉S基因产物之间的“竞争效应”。为了区分这两种可能性,我们使用了先前描述的称为HVapb-RNase的双特异性S(11/13)-RNase,它可以排斥两个表型不同的花粉(P(11)和P(13))。由于HVapb-RNase不能区分两种花粉类型(它可以识别两种花粉),因此尽管有竞争效应,P(11)P(13)HAP也应与HVapb-RNase不相容。我们在这里显示P(11)P(13)HAP被S(11)S(13)样式接受,但被S(11/13)-RNase拒绝,这表明花粉S基因必须是以HAP表示。提出了一个涉及四聚体花粉-S的模型来解释P(11)P(13)HAP在含S(11)S(13)样式上的相容性以及P(11)P(13)HAP在上样的相容性包含HVapb-RNase的样式。

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