Universidad Andrés Bello, Facultad Ciencias Biológicas, Centro de Biotecnología Vegetal, Santiago, Chile.
Universidad de Los Lagos, Departamento de Acuicultura y Recursos Agroalimentarios, Osorno, Chile.
PLoS One. 2018 Jan 10;13(1):e0190087. doi: 10.1371/journal.pone.0190087. eCollection 2018.
Ripening is one of the key processes associated with the development of major organoleptic characteristics of the fruit. This process has been extensively characterized in climacteric fruit, in contrast with non-climacteric fruit such as grape, where the process is less understood. With the aim of studying changes in gene expression during ripening of non-climacteric fruit, an Illumina based RNA-Seq transcriptome analysis was performed on four developmental stages, between veraison and harvest, on table grapes berries cv Thompson Seedless. Functional analysis showed a transcriptional increase in genes related with degradation processes of chlorophyll, lipids, macromolecules recycling and nucleosomes organization; accompanied by a decrease in genes related with chloroplasts integrity and amino acid synthesis pathways. It was possible to identify several processes described during leaf senescence, particularly close to harvest. Before this point, the results suggest a high transcriptional activity associated with the regulation of gene expression, cytoskeletal organization and cell wall metabolism, which can be related to growth of berries and firmness loss characteristic to this stage of development. This high metabolic activity could be associated with an increase in the transcription of genes related with glycolysis and respiration, unexpected for a non-climacteric fruit ripening.
成熟是与果实主要感官特征发育相关的关键过程之一。与非跃变型果实(如葡萄)相比,这个过程在跃变型果实中已经得到了广泛的研究,而非跃变型果实的相关过程则了解较少。为了研究非跃变型果实成熟过程中的基因表达变化,我们对汤普森无核葡萄的四个发育阶段(转色期到收获期)进行了基于 Illumina 的 RNA-Seq 转录组分析。功能分析表明,与叶绿素、脂质、大分子回收和核小体组织降解过程相关的基因转录增加;同时,与叶绿体完整性和氨基酸合成途径相关的基因转录减少。可以识别出几个在叶片衰老过程中描述的过程,特别是在接近收获期时。在此之前,研究结果表明,与基因表达调控、细胞骨架组织和细胞壁代谢相关的转录活性较高,这可能与浆果的生长和该发育阶段特有的硬度下降有关。这种高代谢活性可能与与糖酵解和呼吸作用相关的基因转录增加有关,这对于非跃变型果实的成熟来说是出乎意料的。