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首页> 外文期刊>Plant physiology >NaStEP: A proteinase inhibitor essential to self-incompatibility and a positive regulator of HT-B stability in Nicotiana alata pollen tubes
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NaStEP: A proteinase inhibitor essential to self-incompatibility and a positive regulator of HT-B stability in Nicotiana alata pollen tubes

机译:NaStEP:一种对烟草的自我不相容性至关重要的蛋白酶抑制剂和烟草中花粉管中HT-B稳定性的正调节剂

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摘要

In Solanaceae, the self-incompatibility S-RNase and S-locus F-box interactions define self-pollen recognition and rejection in an S-specific manner. This interaction triggers a cascade of events involving other gene products unlinked to the S-locus that are crucial to the self-incompatibility response. To date, two essential pistil-modifier genes, 120K and High Top-Band (HT-B), have been identified in Nicotiana species. However, biochemistry and genetics indicate that additional modifier genes are required. We recently reported a Kunitz-type proteinase inhibitor, named NaStEP (for Nicotiana alata Stigma-Expressed Protein), that is highly expressed in the stigmas of self-incompatible Nicotiana species. Here, we report the proteinase inhibitor activity of NaStEP. NaStEP is taken up by both compatible and incompatible pollen tubes, but its suppression in Nicotiana spp. transgenic plants disrupts S-specific pollen rejection; therefore, NaStEP is a novel pistil-modifier gene. Furthermore, HT-B levels within the pollen tubes are reduced when NaStEP-suppressed pistils are pollinated with either compatible or incompatible pollen. In wild-type self-incompatible N. alata, in contrast, HT-B degradation occurs preferentially in compatible pollinations. Taken together, these data show that the presence of NaStEP is required for the stability of HT-B inside pollen tubes during the rejection response, but the underlying mechanism is currently unknown.
机译:在茄科中,自交不亲和的S-RNase和S-基因座F-box相互作用以S特异性方式定义了自花粉的识别和排斥。这种相互作用触发了一连串的事件,涉及与S基因座不相关的其他基因产物,这些产物对自我不相容性反应至关重要。迄今为止,在烟草属物种中已经鉴定出两个基本的雌蕊修饰基因,即120K和高顶带(HT-B)。但是,生物化学和遗传学表明需要其他修饰基因。我们最近报道了一种名为NaStEP的Kunitz型蛋白酶抑制剂(对于alcot的柱头表达蛋白质),在自我不相容的Nicotiana物种的柱头上高表达。在这里,我们报道了NaStEP的蛋白酶抑制剂活性。 NaStEP被相容和不相容的花粉管吸收,但在烟草中却被抑制。转基因植物破坏了S特异的花粉排斥。因此,NaStEP是一个新颖的雌蕊修饰基因。此外,当用兼容或不兼容的花粉对NaStEP抑制的雌蕊进行授粉时,花粉管中的HT-B水平会降低。相反,在野生型自交不亲和的猪笼草中,HT-B降解优先发生在相容的授粉中。综上所述,这些数据表明在排斥反应过程中,NaStEP的存在是花粉管内HT-B稳定性所必需的,但目前尚不清楚其潜在机制。

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