College of Agronomy, Jiangxi Agricultural University, Nanchang 330045, China.
College of Life Sciences, Gannan Normal University, Ganzhou 341000, China.
Genes (Basel). 2022 Sep 22;13(10):1706. doi: 10.3390/genes13101706.
A complex molecular regulatory network plays an important role in the development and ripening of fruits and leads to significant differences in apparent characteristics. Comparative transcriptome and sRNAome analyses were performed to reveal the regulatory mechanisms of fruit ripening in a spontaneous early-ripening navel orange mutant ('Ganqi 4', L. Osbeck) and its wild type ('Newhall' navel orange) in this study. At the transcript level, a total of 10792 genes were found to be differentially expressed between MT and WT at the four fruit development stages by RNA-Seq. Additionally, a total of 441 differentially expressed miRNAs were found in the four periods, and some of them belong to 15 families. An integrative analysis of the transcriptome and sRNAome data revealed some factors that regulate the mechanisms of formation of early-ripening traits. First, secondary metabolic materials, especially endogenous hormones, carotenoids, cellulose and pectin, obviously changed during fruit ripening in MT and WT. Second, we found a large number of differentially expressed genes (, , , , , and ) involved in plant hormone signal transduction and starch and sucrose metabolism, which suggests the importance of these metabolic pathways during fruit ripening. Third, the expression patterns of several key miRNAs and their target genes during citrus fruit development and ripening stages were examined. csi-miR156, csi-miR160, csi-miR397, csi-miR3954, and miRN106 suppressed specific transcription factors (, , , , and ) that are thought to be important regulators involved in citrus fruit development and ripening. In the present study, we analyzed ripening-related regulatory factors from multiple perspectives and provide new insights into the molecular mechanisms that operate in the early-ripening navel orange mutant 'Ganqi 4'.
一个复杂的分子调控网络在果实的发育和成熟中起着重要作用,导致外观特征的显著差异。本研究对自发早熟脐橙突变体(“甘七 4”,L. Osbeck)及其野生型(“纽荷尔脐橙”)果实发育的四个时期进行了转录组和 sRNA 组分析,以揭示果实成熟的调控机制。在转录水平上,通过 RNA-Seq 共发现 10792 个基因在 MT 和 WT 之间在四个果实发育阶段存在差异表达。此外,在四个时期共发现 441 个差异表达的 miRNA,其中一些属于 15 个家族。对转录组和 sRNA 组数据的综合分析揭示了一些调节早熟性状形成机制的因素。首先,次级代谢物质,特别是内源激素、类胡萝卜素、纤维素和果胶,在 MT 和 WT 果实成熟过程中明显变化。其次,我们发现了大量涉及植物激素信号转导和淀粉和蔗糖代谢的差异表达基因(、、、、和),这表明这些代谢途径在果实成熟过程中的重要性。第三,检测了几个关键 miRNA 及其在柑橘果实发育和成熟阶段的靶基因的表达模式。csi-miR156、csi-miR160、csi-miR397、csi-miR3954 和 miRN106 抑制了特定的转录因子(、、、和),这些转录因子被认为是参与柑橘果实发育和成熟的重要调控因子。本研究从多个角度分析了与成熟相关的调控因子,为早熟脐橙突变体“甘七 4”的分子机制提供了新的见解。