Research Centre of Characteristic Fruit Tree, College of Horticulture and Forestry, Xinjiang Agricultural University, Urumqi, 830052, Xinjiang, China.
Xinjiang Academy of Agricultural Sciences, Urumqi, 830052, Xinjiang, China.
Sci Rep. 2021 Jun 30;11(1):13569. doi: 10.1038/s41598-021-92832-6.
Ethylene metabolism is very important for climacteric fruit, and apricots are typical climacteric fruit. The activity of pectinase is closely related to fruit firmness, which further affects fruit quality. To better understand ethylene metabolism, pectinase activity and their molecular regulation mechanisms during the development and ripening of apricot fruit, ethylene metabolism, pectinase activity and the "Luntaibaixing" apricot fruit transcriptome were analyzed at different developmental stages. Ethylene metabolic precursors, enzyme activities and ethylene release increased during fruit development and ripening, with significant differences between the ripening stage and other stages (P < 0.05). Fruit firmness decreased significantly from the S1 to S5 stages, and polygalacturonase, pectin methylesterase, and pectin lyase activities were significantly higher in the S5 stage than in other stages. RNA sequencing (RNA-seq) analysis of fruit resulted in the identification of 22,337 unigenes and 6629 differentially expressed genes (DEGs) during development and ripening, of which 20,989 unigenes are annotated in public protein databases. In functional enrichment analysis, DEGs among the three stages were found to be involved in plant hormone signal transduction. Four key genes affecting ethylene metabolism, six key ethylene signal transduction genes and seven genes related to pectinase in apricot fruit were identified by KEGG pathway analysis. By RNA-sequencing, we not only clarified the molecular mechanism of ethylene metabolism during the ripening of "Luntaibaixing" apricot fruit but also provided a theoretical basis for understanding pectin metabolism in apricot fruit.
乙烯代谢对呼吸跃变型果实非常重要,而杏是典型的呼吸跃变型果实。果胶酶的活性与果实硬度密切相关,进而影响果实品质。为了更好地了解杏果实发育和成熟过程中乙烯代谢、果胶酶活性及其分子调控机制,本研究分析了不同发育阶段‘轮台白杏’果实的乙烯代谢、果胶酶活性和转录组。结果表明,随着果实的发育和成熟,乙烯代谢前体、酶活性和乙烯释放量增加,成熟阶段与其他阶段之间存在显著差异(P < 0.05)。果实硬度从 S1 期到 S5 期显著降低,S5 期的多聚半乳糖醛酸酶、果胶甲酯酶和果胶裂解酶活性显著高于其他时期。果实 RNA 测序(RNA-seq)分析鉴定了 22337 条 unigenes 和 6629 条发育和成熟过程中的差异表达基因(DEGs),其中 20989 条 unigenes在公共蛋白数据库中得到注释。在功能富集分析中,发现三个时期的 DEGs 参与植物激素信号转导。通过 KEGG 通路分析,鉴定了影响杏果实乙烯代谢的 4 个关键基因、6 个关键乙烯信号转导基因和 7 个与果胶酶相关的基因。通过 RNA-seq,我们不仅阐明了‘轮台白杏’果实成熟过程中乙烯代谢的分子机制,还为了解杏果实果胶代谢提供了理论依据。