Department of Biology, Colorado State University, Fort Collins, CO 80523-1878, USA.
Plant J. 2010 Nov;64(3):367-78. doi: 10.1111/j.1365-313X.2010.04340.x. Epub 2010 Oct 1.
Wild tomato species in Solanum Section Lycopersicon often exhibit two types of reproductive barriers: self-incompatibility (SI) and unilateral incompatibility or incongruity (UI), wherein the success of an inter-specific cross depends on the direction of the cross. UI pollen rejection often follows the 'SI × SC' rule, i.e. pistils of SI species reject the pollen of SC (self-compatible) species but not vice versa, suggesting that the SI and UI pollen rejection mechanisms may overlap. In order to address this question, pollen tube growth was measured after inter-specific crosses using wild tomato species as the female parents and pollen from cultivated tomato (Solanum lycopersicum). Two modes of UI pollen rejection, early and late, were observed, and both differed from SI pollen rejection. The structure and expression of known stylar SI genes were evaluated. We found that S-RNase expression is not required for either the early or late mode of UI pollen rejection. However, two HT family genes, HT-A and HT-B, map to a UI QTL. Surprisingly, we found that a gene previously implicated in SI, HT-B, is mutated in both SI and SC S. habrochaites accessions, and no HT-B protein could be detected. HT-A genes were detected and expressed in all species examined, and may therefore function in both SI and UI. We conclude that there are significant differences between SI and UI in the tomato clade, in that pollen tube growth differs between these two rejection systems, and some stylar SI factors, including S-RNase and HT-B, are not required for UI.
野生番茄种在茄属 Lycopersicon 中常表现出两种生殖障碍:自交不亲和(SI)和单向不亲和或不和谐(UI),其中种间杂交的成功取决于杂交的方向。UI 花粉排斥通常遵循“SI×SC”规则,即 SI 种的柱头排斥 SC(自交亲和)种的花粉,但反之则不然,这表明 SI 和 UI 花粉排斥机制可能重叠。为了解决这个问题,使用野生番茄作为母本,用栽培番茄(Solanum lycopersicum)的花粉进行种间杂交,测量花粉管生长。观察到两种 UI 花粉排斥模式,早期和晚期,它们都不同于 SI 花粉排斥。评估了已知花柱 SI 基因的结构和表达。我们发现,S-RNase 的表达对于早期或晚期 UI 花粉排斥都不是必需的。然而,两个 HT 家族基因 HT-A 和 HT-B,映射到一个 UI QTL。令人惊讶的是,我们发现一个先前与 SI 相关的基因 HT-B,在 SI 和 SC S. habrochaites 品系中都发生了突变,并且检测不到 HT-B 蛋白。HT-A 基因在所有被检测的物种中都被检测到并表达,因此可能在 SI 和 UI 中都有功能。我们得出结论,在番茄属中,SI 和 UI 之间存在显著差异,花粉管生长在这两种排斥系统之间存在差异,一些花柱 SI 因子,包括 S-RNase 和 HT-B,对于 UI 是不需要的。