软化
采后
成熟
转录组
代谢组
木质素
细胞壁
生物合成
乙烯
生物化学
化学
食品科学
生物
植物
基因
基因表达
材料科学
代谢物
复合材料
催化作用
作者
Faiz Ur Rahman,Qiunan Zhu,Qian Zhang,Xinmiao Kang,Xiangting Wang,Weixin Chen,Xueping Li,Xiaoyang Zhu
标识
DOI:10.1016/j.foodchem.2024.140771
摘要
Heat stress in summer causes softening disorder in papaya but the molecular mechanism is not clear. In this study, papaya fruit stored at 35 °C showed a softening disorder termed rubbery texture. Analysis of the transcriptome and metabolome identified numerous differentially expressed genes (DEGs) and differentially accumulated metabolites (DAMs) between the fruit stored at 25 °C and 35 °C. The DEGs and DAMs related to lignin biosynthesis were upregulated, while those related to ethylene biosynthesis, sucrose metabolism, and cell wall degradation were downregulated under heat stress. Co-expression network analysis highlighted the correlation between the DEGs and metabolites associated with lignin biosynthesis, ethylene biosynthesis, and cell wall degradation under heat stress. Finally, the correlation analysis identified the key factors regulating softening disorder under heat stress. The study's findings reveal that heat stress inhibited papaya cell wall degradation and ethylene production, delaying fruit ripening and softening and ultimately resulting in a rubbery texture.
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