The University Institute of Research in Olive Grove and Olive Oils (INUO), University of Jaén, 23071 Jaén, Spain.
Instituto de la Grasa, CSIC (Consejo Superior de Investigaciones Científicas), 41013 Seville, Spain.
Int J Mol Sci. 2024 Oct 17;25(20):11150. doi: 10.3390/ijms252011150.
The olive fruit is a drupe whose development and ripening takes several months from flowering to full maturation. During this period, several biochemical and physiological changes occur that affect the skin color, texture, composition, and size of the mesocarp. The final result is a fruit rich in fatty acids, phenolic compounds, tocopherols, pigments, sterols, terpenoids, and other compounds of nutritional interest. In this work, a transcriptomic analysis was performed using flowers (T0) and mesocarp tissue at seven different stages during olive fruit development and ripening (T1-T7) of the 'Picual' cultivar. A total of 1755 genes overexpressed at any time with respect to the flowering stage were further analyzed. These genes were grouped into eight clusters based on their expression profile. The gene enrichment analysis revealed the most relevant biological process of every cluster. Highlighting the important role of hormones at very early stages of fruit development (T1, Cluster 1), whereas genes involved in fatty acid biosynthesis were relevant throughout the fruit developmental process. Hence, genes coding for different fatty acid desaturase (SAD, FAD2, FAD3, FAD4, FAD5, FAD6, and FAD7) enzymes received special attention. In particular, 26 genes coding for different fatty acid desaturase enzymes were identified in the 'Picual' genome, contributing to the improvement of the genome annotation. The expression pattern of these genes during fruit development corroborated their role in determining fatty acid composition.
橄榄果实是核果,从开花到完全成熟,需要几个月的时间来完成其发育和成熟过程。在此期间,会发生多种生化和生理变化,影响果皮颜色、质地、成分和中果皮大小。最终的结果是果实富含脂肪酸、酚类化合物、生育酚、色素、固醇、萜类化合物和其他具有营养价值的化合物。在这项工作中,我们对‘Picual’品种橄榄果实发育和成熟过程中的花(T0)和中果皮组织在七个不同阶段(T1-T7)进行了转录组分析。进一步分析了在任何时间相对于开花阶段都过表达的 1755 个基因。这些基因根据其表达谱被分为八个簇。基因富集分析揭示了每个簇的最相关的生物过程。突出了激素在果实发育早期(T1,簇 1)的重要作用,而参与脂肪酸生物合成的基因在整个果实发育过程中都很重要。因此,编码不同脂肪酸去饱和酶(SAD、FAD2、FAD3、FAD4、FAD5、FAD6 和 FAD7)的基因受到特别关注。特别是,在‘Picual’基因组中鉴定出 26 个编码不同脂肪酸去饱和酶的基因,有助于改进基因组注释。这些基因在果实发育过程中的表达模式证实了它们在决定脂肪酸组成中的作用。