Centro de Investigación en Biotecnología Agroalimentaria (BITAL), Universidad de Almería, 04120, Almería, Spain.
Instituto de Biología Molecular y Celular de Plantas, Universidad Politécnica de Valencia-CSIC, 46022, Valencia, Spain.
Plant J. 2018 Oct;96(2):300-315. doi: 10.1111/tpj.14031. Epub 2018 Aug 12.
Pollen development is a crucial step in higher plants, which not only makes possible plant fertilization and seed formation, but also determines fruit quality and yield in crop species. Here, we reported a tomato T-DNA mutant, pollen deficient1 (pod1), characterized by an abnormal anther development and the lack of viable pollen formation, which led to the production of parthenocarpic fruits. Genomic analyses and the characterization of silencing lines proved that pod1 mutant phenotype relies on the tomato SlMED18 gene encoding the subunit 18 of Mediator multi-protein complex involved in RNA polymerase II transcription machinery. The loss of SlMED18 function delayed tapetum degeneration, which resulted in deficient microspore development and scarce production of viable pollen. A detailed histological characterization of anther development proved that changes during microgametogenesis and a significant delay in tapetum degeneration are associated with a high proportion of degenerated cells and, hence, should be responsible for the low production of functional pollen grains. Expression of pollen marker genes indicated that SlMED18 is essential for the proper transcription of a subset of genes specifically required to pollen formation and fruit development, revealing a key role of SlMED18 in male gametogenesis of tomato. Additionally, SlMED18 is able to rescue developmental abnormalities of the Arabidopsis med18 mutant, indicating that most biological functions have been conserved in both species.
花粉发育是高等植物的关键步骤,不仅使植物受精和种子形成成为可能,还决定了作物中果实的质量和产量。在这里,我们报道了一个番茄 T-DNA 突变体,花粉缺乏 1 突变体(pod1),其特征是花药发育异常和缺乏有活力的花粉形成,导致产生单性结实果实。基因组分析和沉默系的特征表明,pod1 突变体表型依赖于番茄 SlMED18 基因,该基因编码 RNA 聚合酶 II 转录机制中介体多蛋白复合物的亚基 18。SlMED18 功能的丧失延迟了绒毡层的退化,导致小孢子发育不足和有活力的花粉产量稀少。花药发育的详细组织学特征表明,小孢子发生过程中的变化以及绒毡层退化的显著延迟与退化细胞的高比例有关,因此应负责功能花粉粒的低产生。花粉标记基因的表达表明,SlMED18 对于特定于花粉形成和果实发育的一组基因的正确转录是必需的,这揭示了 SlMED18 在番茄雄性配子发生中的关键作用。此外,SlMED18 能够挽救拟南芥 med18 突变体的发育异常,表明在这两个物种中大多数生物学功能都得到了保守。