Department of Plant Sciences (ms #3), University of California, Davis, One Shields Avenue, Davis, California 95616.
Plant Physiol. 2021 May 27;186(1):452-468. doi: 10.1093/plphys/kiab062.
Unilateral incompatibility (UI) manifests as pollen rejection in the pistil, typically when self-incompatible (SI) species are pollinated by self-compatible (SC) relatives. In the Solanaceae, UI occurs when pollen lack resistance to stylar S-RNases, but other, S-RNase-independent mechanisms exist. Pistils of the wild tomato Solanum pennellii LA0716 (SC) lack S-RNase yet reject cultivated tomato (Solanum lycopersicum, SC) pollen. In this cross, UI results from low pollen expression of a farnesyl pyrophosphate synthase gene (FPS2) in S. lycopersicum. Using pollen from fps2-/- loss-of-function mutants in S. pennellii, we identified a pistil factor locus, ui3.1, required for FPS2-based pollen rejection. We mapped ui3.1 to an interval containing 108 genes situated on the IL 3-3 introgression. This region includes a cluster of ornithine decarboxylase (ODC2) genes, with four copies in S. pennellii, versus one in S. lycopersicum. Expression of ODC2 transcript was 1,034-fold higher in S. pennellii than in S. lycopersicum styles. Pistils of odc2-/- knockout mutants in IL 3-3 or S. pennellii fail to reject fps2 pollen and abolish transmission ratio distortion (TRD) associated with FPS2. Pollen of S. lycopersicum express low levels of FPS2 and are compatible on IL 3-3 pistils, but incompatible on IL 12-3 × IL 3-3 hybrids, which express both ODC2 and ui12.1, a locus thought to encode the SI proteins HT-A and HT-B. TRD observed in F2 IL 12-3 × IL 3-3 points to additional ODC2-interacting pollen factors on both chromosomes. Thus, ODC2 genes contribute to S-RNase independent UI and interact genetically with ui12.1 to strengthen pollen rejection.
单侧不亲和性 (UI) 表现为柱头对花粉的排斥,通常发生在自交亲和 (SI) 物种被自交亲和 (SC) 亲属授粉时。在茄科植物中,当花粉缺乏对花柱 S-RNases 的抗性时,就会发生 UI,但也存在其他 S-RNase 独立的机制。野生番茄 Solanum pennellii LA0716(SC)的柱头缺乏 S-RNase,但会排斥栽培番茄(Solanum lycopersicum,SC)的花粉。在这种杂交中,UI 是由于栽培番茄中法呢基焦磷酸合酶基因 (FPS2) 的花粉表达水平较低引起的。使用来自 S. pennellii fps2-/- 功能丧失突变体的花粉,我们鉴定出一个与 FPS2 基于花粉排斥有关的柱头因子座 ui3.1。我们将 ui3.1 定位到包含 108 个基因的区间,这些基因位于 IL 3-3 导入系上。该区域包含一个鸟氨酸脱羧酶 (ODC2) 基因簇,在 S. pennellii 中有 4 个拷贝,而在 S. lycopersicum 中只有 1 个拷贝。ODC2 转录本在 S. pennellii 中的表达水平比 S. lycopersicum 花柱高 1034 倍。IL 3-3 或 S. pennellii 中的 odc2-/- 敲除突变体的柱头不能排斥 fps2 花粉,并消除与 FPS2 相关的传递比失真 (TRD)。S. lycopersicum 的花粉表达低水平的 FPS2,在 IL 3-3 柱头上是亲和的,但在 IL 12-3 × IL 3-3 杂种上是不亲和的,后者表达 ODC2 和 ui12.1,后者被认为编码 SI 蛋白 HT-A 和 HT-B。在 F2 IL 12-3 × IL 3-3 中观察到的 TRD 表明,两个染色体上都有额外的与 ODC2 相互作用的花粉因子。因此,ODC2 基因有助于 S-RNase 独立的 UI,并与 ui12.1 遗传相互作用,以增强花粉排斥。