Laboratory of Molecular and Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences and National Center for Plant Gene Research, Beijing 100190, China.
Plant J. 2010 Apr 1;62(1):52-63. doi: 10.1111/j.1365-313X.2010.04123.x. Epub 2010 Jan 7.
The self-incompatibility (SI) response occurs widely in flowering plants as a means of preventing self-fertilization. In these self/non-self discrimination systems, plant pistils reject self or genetically related pollen. In the Solanaceae, Plantaginaceae and Rosaceae, pistil-secreted S-RNases enter the pollen tube and function as cytotoxins to specifically arrest self-pollen tube growth. Recent studies have revealed that the S-locus F-box (SLF) protein controls the pollen expression of SI in these families. However, the precise role of SLF remains largely unknown. Here we report that PhSSK1 (Petunia hybrida SLF-interacting Skp1-like1), an equivalent of AhSSK1 of Antirrhinum hispanicum, is expressed specifically in pollen and acts as an adaptor in an SCF(Skp1-Cullin1-F-box)(SLF) complex, indicating that this pollen-specific SSK1-SLF interaction occurs in both Petunia and Antirrhinum, two species from the Solanaceae and Plantaginaceae, respectively. Substantial reduction of PhSSK1 in pollen reduced cross-pollen compatibility (CPC) in the S-RNase-based SI response, suggesting that the pollen S determinant contributes to inhibiting rather than protecting the S-RNase activity, at least in solanaceous plants. Furthermore, our results provide an example that a specific Skp1-like protein other than the known conserved ones can be recruited into a canonical SCF complex as an adaptor.
自交不亲和(SI)反应广泛存在于开花植物中,是防止自花受精的一种手段。在这些自我/非自我识别系统中,植物柱头排斥自我或遗传上相关的花粉。在茄科、车前科和蔷薇科中,柱头分泌的 S-RNases 进入花粉管,并作为细胞毒素特异性阻止自花粉管生长。最近的研究表明,S 座位 F-box(SLF)蛋白控制这些家族中 SI 的花粉表达。然而,SLF 的精确作用在很大程度上仍然未知。在这里,我们报告 PhSSK1(矮牵牛 SLF 相互作用的 Skp1 样 1),拟南芥 AhSSK1 的同源物,特异性在花粉中表达,并作为 SCF(Skp1-Cullin1-F-box)(SLF)复合物中的接头,表明这种花粉特异性 SSK1-SLF 相互作用发生在茄科和车前科的两个物种中,分别是矮牵牛和拟南芥。花粉中 PhSSK1 的大量减少降低了 S-RNase 基 SI 反应中的异交花粉亲和性(CPC),表明花粉 S 决定因素有助于抑制而不是保护 S-RNase 活性,至少在茄科植物中是这样。此外,我们的结果提供了一个例子,即可以招募一种特定的 Skp1 样蛋白而不是已知的保守蛋白作为接头进入规范的 SCF 复合物。