College of Horticulture, Hebei Agricultural University, Baoding 071000, PR China.
College of Horticulture, Hebei Agricultural University, Baoding 071000, PR China; Research Center of Chinese Jujube, Hebei Agricultural University, 071001 Baoding, Hebei, PR China.
Genomics. 2021 Mar;113(2):552-563. doi: 10.1016/j.ygeno.2021.01.002. Epub 2021 Jan 15.
Rapid loss of firmness is a major handicap for persimmon (Diospyros kaki Thunb.) transportation and retail. The present study employed a comparative transcriptomic approach to elucidate the mechanism involving ethylene and cell wall modification related genes in fruit firmness control of two cultivars during post harvest ripening. In contrast to the short shelf life cultivar (Mopan), the long shelf life cultivar (Yoho) kept high firmness during ripening. Extensive loss of firmness in Mopan drove an intense transcriptional activity. Globally, Mopan and Yoho shared very few common differentially expressed structural genes and regulators. Yoho strongly repressed the expression of ACC synthase and several classes of cell wall degradation genes at the onset of ripening and only induced them during late ripening period. Various ERF, WRKY, MYB, bHLH transcription factors were found highly active during fruit ripening. Overall, this study generates novel gene resources as important tools for extending persimmon shelf life.
迅速失去硬度是柿子(Diospyros kaki Thunb.)运输和零售的主要障碍。本研究采用比较转录组学方法,阐明了在两个品种果实成熟过程中乙烯和细胞壁修饰相关基因参与硬度控制的机制。与短货架期品种(Mopan)相比,长货架期品种(Yoho)在成熟过程中保持较高的硬度。Mopan 的硬度大量丧失导致转录活性增强。全球范围内,Mopan 和 Yoho 共享的结构基因和调控因子很少。Yoho 在成熟开始时强烈抑制 ACC 合成酶和几类细胞壁降解基因的表达,仅在成熟后期诱导它们表达。在果实成熟过程中发现各种 ERF、WRKY、MYB、bHLH 转录因子高度活跃。总的来说,这项研究为延长柿子的货架期提供了新的基因资源,作为重要的工具。