Pérez-Rojas Moises, Díaz-Ramírez David, Ortíz-Ramírez Clara Inés, Galaz-Ávalos Rosa M, Loyola-Vargas Víctor M, Ferrándiz Cristina, Abraham-Juárez Ma Del Rosario, Marsch-Martínez Nayelli
Departamento de Biotecnología y Bioquímica, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Irapuato 36824, Mexico.
Instituto de Biología Molecular y Celular de Plantas, Consejo Superior de Investigaciones Científicas-Universidad Politécnica de Valencia (CSIC-UPV), 46022 Valencia, Spain.
Plants (Basel). 2023 Oct 25;12(21):3672. doi: 10.3390/plants12213672.
Cytokinins play a relevant role in flower and fruit development and plant yield. Strawberry fruits have a high commercial value, although what is known as the "fruit" is not a "true" botanical fruit because it develops from a non-reproductive organ (receptacle) on which the true botanical fruits (achenes) are found. Given cytokinins' roles in botanical fruits, it is important to understand their participation in the development of a non-botanical or accessory "fruit". Therefore, in this work, the role of cytokinin in strawberry flowers and fruits was investigated by identifying and exploring the expression of homologous genes for different families that participate in the pathway, through publicly available genomic and expression data analyses. Next, trans-zeatin content in developing flowers and receptacles was determined. A high concentration was observed in flower buds and at anthesis and decreased as the fruit approached maturity. Moreover, the spatio-temporal expression pattern of selected genes was evaluated and detected in receptacles at pre-anthesis stages. The results point to an important role and effect of cytokinins in flower and receptacle development, which is valuable both from a biological point of view and to improve yield and the quality of this fruit.
细胞分裂素在花和果实发育以及植物产量方面发挥着重要作用。草莓果实具有很高的商业价值,尽管所谓的“果实”并非“真正的”植物学果实,因为它是由一个非生殖器官(花托)发育而来,真正的植物学果实(瘦果)着生于该花托上。鉴于细胞分裂素在植物学果实中的作用,了解它们在非植物学或附属“果实”发育中的参与情况很重要。因此,在这项研究中,通过公开可用的基因组和表达数据分析,鉴定并探索参与该途径的不同家族同源基因的表达,从而研究了细胞分裂素在草莓花和果实中的作用。接下来,测定了发育中的花和花托中的反式玉米素含量。在花芽和花期观察到高浓度,随着果实接近成熟而降低。此外,还评估并在花前阶段的花托中检测了所选基因的时空表达模式。结果表明,细胞分裂素在花和花托发育中具有重要作用和影响,这从生物学角度以及提高这种果实的产量和品质方面都具有重要价值。