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首页> 外文期刊>Frontiers in Plant Science >Comparative Physiological and Transcriptomic Analyses Reveal the Actions of Melatonin in the Delay of Postharvest Physiological Deterioration of Cassava
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Comparative Physiological and Transcriptomic Analyses Reveal the Actions of Melatonin in the Delay of Postharvest Physiological Deterioration of Cassava

机译:比较生理和转录组学分析揭示了褪黑素在木薯采后生理恶化延迟中的作用

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Melatonin plays important roles in various aspects of biological processes. However, it is less known on the effects and mechanism of melatonin on the postharvest physiological deterioration (PPD) process of cassava, which largely restricts the potential of cassava as a food and industrial crop. In this study, we found that exogenous application of melatonin significantly delayed PPD of cassava tuberous roots by reducing H_(2)O_(2)content and improving activities of catalase and peroxidase. Moreover, 3425 differentially expressed genes by melatonin during the PPD process were identified by transcriptomic analysis. Several pathways were markedly affected by melatonin treatments, including metabolic-, ion homeostasis-, and enzyme activity-related processes. Further detailed analysis revealed that melatonin acted through activation of ROS-scavenging and ROS signal transduction pathways, including antioxidant enzymes, calcium signaling, MAPK cascades, and transcription factors at early stages. Notably, the starch degradation pathway was also activated at early stages, whereas it was repressed by melatonin at middle and late stages, thereby indicating its regulatory role in starch metabolism during PPD. Taken together, this study yields new insights into the effect and underlying mechanism of melatonin on the delay of PPD and provides a good strategy for extending shelf life and improvement of cassava tuberous roots.
机译:褪黑激素在生物过程的各个方面起着重要作用。然而,关于褪黑素对木薯采后生理退化(PPD)过程的影响和机理的研究鲜为人知,这在很大程度上限制了木薯作为粮食和工业作物的潜力。在这项研究中,我们发现外源褪黑素可通过降低H_(2)O_(2)含量并改善过氧化氢酶和过氧化物酶的活性而显着延迟木薯块根的PPD。此外,通过转录组分析鉴定了PPD过程中褪黑激素的3425个差异表达基因。褪黑素治疗显着影响了几种途径,包括代谢,离子稳态和酶活性相关过程。进一步的详细分析表明,褪黑素在早期阶段通过激活ROS清除和ROS信号转导途径起作用,包括抗氧化酶,钙信号传导,MAPK级联和转录因子。值得注意的是,淀粉降解途径在早期也被激活,而在中后期则被褪黑激素抑制,从而表明其在PPD期间对淀粉代谢的调节作用。综上所述,本研究对褪黑素对PPD延迟的作用及其潜在机制产生了新的见解,并为延长货架期和改善木薯块根提供了良好的策略。

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