Instituto de Biología Molecular y Celular de Plantas, Universitat Politècnica de València-Consejo Superior de Investigaciones Científicas, Camino de Vera, Valencia, Spain.
Instituto de Conservación y Mejora de la Agrodiversidad Valenciana, Universitat Politècnica de València, Camino de Vera, Valencia, Spain.
Physiol Plant. 2022 Jan;174(1):e13600. doi: 10.1111/ppl.13600. Epub 2021 Nov 30.
Capsicum (pepper) is known for its poor seed germination, particularly seed longevity is usually much shorter than other Solanaceae. However, the molecular mechanisms involved are mostly unknown in these species. The present study examines the differences in seed longevity among Capsicum species and varietal types. Feral or less domesticated species, such as Capsicum chinense and particularly Capsicum frutescens, showed higher germination rates than the more domesticated Capsicum annuum after accelerated seed aging treatments. In addition, variability was detected in the expression of genes involved in the response to seed deterioration. The differences observed in ASPG1 expression led us to study the seed protein profile in dry and germinating seeds. Seed storage protein mobilization during germination was faster in seed aging-resistant genotypes. Similarly, the transcriptional change observed for the orthologous gene of the trans-species regulator AtHB25 prompted us to study the structure and molecular components of the seed coat in peppers. All the Capsicum pepper accessions analyzed presented very lignified testa and we observed a positive correlation between the amount of lignin and seed viability. Our results provide essential information to explain the poor germination observed in pepper seeds and provide an experimental framework for future improvements in this important character.
辣椒(辣椒)以其较差的种子发芽率而闻名,尤其是种子的寿命通常比其他茄科植物短得多。然而,这些物种的分子机制在很大程度上是未知的。本研究检查了辣椒属不同物种和品种类型之间种子寿命的差异。野生或较少驯化的物种,如辣椒和特别是辣椒,在加速种子老化处理后,发芽率高于更为驯化的辣椒。此外,还检测到参与种子劣化反应的基因表达的可变性。在 ASPG1 表达中观察到的差异促使我们研究干种子和发芽种子中的种子蛋白图谱。在抗老化种子的基因型中,种子贮藏蛋白在萌发过程中的动员更快。同样,对跨物种调节因子 AtHB25 的同源基因的转录变化促使我们研究辣椒种皮的结构和分子成分。分析的所有辣椒属植物都表现出非常木质化的种皮,我们观察到木质素的含量与种子活力呈正相关。我们的研究结果提供了重要的信息,以解释在辣椒种子中观察到的不良发芽,并为未来改进这一重要特征提供了一个实验框架。