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Compartmentalization of S-RNase and HT-B degradation in self-incompatible Nicotiana.

机译:自我不相容的烟草中S-RNase和HT-B降解的区室化。

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Pollen-pistil interactions are crucial for controlling plant mating. For example, S-RNase-based self-incompatibility prevents inbreeding in diverse angiosperm species. S-RNases are thought to function as specific cytotoxins that inhibit pollen that has an S-haplotype that matches one of those in the pistil. Thus, pollen and pistil factors interact to prevent mating between closely related individuals. Other pistil factors, such as HT-B, 4936-factor and the 120 kDa glycoprotein, are also required for pollen rejection but do not contribute to S-haplotype-specificity per se. Here we show that S-RNase is taken up and sorted to a vacuolar compartment in the pollen tubes. Antibodies to the 120 kDa glycoprotein label the compartment membrane. When the pistil does not express HT-B or 4936-factor, S-RNase remains sequestered, unable to cause rejection. Similarly, in wild-type pistils, compatible pollen tubes degrade HT-B and sequester S-RNase. We suggest that S-RNase trafficking and the stability of HT-B are central to S-specific pollen rejection.
机译:花粉-雌蕊相互作用对于控制植物交配至关重要。例如,基于S-RNase的自交不亲和性可防止多种被子植物近交。 S-RNase被认为是一种特定的细胞毒素,可抑制具有与雌蕊中之一匹配的S-单倍型的花粉。因此,花粉和雌蕊因子相互作用以防止紧密相关的个体之间的交配。其他雌蕊因子,例如HT-B,4936因子和120 kDa糖蛋白,也是花粉排斥所必需的,但本身并没有促进S-单倍型特异性。在这里,我们显示S-RNase被吸收并分类到花粉管中的液泡室中。 120 kDa糖蛋白的抗体标记了间隔膜。当雌蕊不表达HT-B或4936因子时,S-RNase仍被隔离,无法引起排斥。同样,在野生型雌蕊中,相容的花粉管会降解HT-B和螯合S-RNase。我们建议S-RNase贩运和HT-B的稳定性是S特异性花粉排斥的关键。

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