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Network Analysis of Postharvest Senescence Process in Citrus Fruits Revealed by Transcriptomic and Metabolomic Profiling

机译:转录组和代谢组学分析揭示了柑橘类水果采后衰老过程的网络分析

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摘要

Citrus (Citrus spp.), a nonclimacteric fruit, is one of the most important fruit crops in global fruit industry. However, the biological behavior of citrus fruit ripening and postharvest senescence remains unclear. To better understand the senescence process of citrus fruit, we analyzed data sets from commercial microarrays, gas chromatography-mass spectrometry, and liquid chromatography-mass spectrometry and validated physiological quality detection of four main varieties in the genus Citrus. Network-based approaches of data mining and modeling were used to investigate complex molecular processes in citrus. The Citrus Metabolic Pathway Network and correlation networks were constructed to explore the modules and relationships of the functional genes/metabolites. We found that the different flesh-rind transport of nutrients and water due to the anatomic structural differences among citrus varieties might be an important factor that influences fruit senescence behavior. We then modeled and verified the citrus senescence process. As fruit rind is exposed directly to the environment, which results in energy expenditure in response to biotic and abiotic stresses, nutrients are exported from flesh to rind to maintain the activity of the whole fruit. The depletion of internal substances causes abiotic stresses, which further induces phytohormone reactions, transcription factor regulation, and a series of physiological and biochemical reactions.
机译:柑橘(Citrus spp。)是一种非更年期的水果,是全球水果行业中最重要的水果作物之一。然而,柑橘类水果成熟和采后衰老的生物学行为仍不清楚。为了更好地理解柑橘类水果的衰老过程,我们分析了商业微阵列,气相色谱-质谱和液相色谱-质谱的数据集,并验证了柑橘属四个主要品种的生理品质检测。基于网络的数据挖掘和建模方法用于研究柑橘中的复杂分子过程。构建了柑橘代谢途径网络和相关网络,以探索功能基因/代谢物的模块和关系。我们发现,由于柑橘品种之间的解剖结构差异,不同的果皮营养物质和水的运输可能是影响果实衰老行为的重要因素。然后,我们建模并验证了柑橘的衰老过程。由于果皮直接暴露于环境中,这导致生物和非生物胁迫下的能量消耗,营养物质从果肉输出到果皮,以维持整个水果的活性。内部物质的消耗会导致非生物胁迫,从而进一步诱发植物激素反应,转录因子调节以及一系列生理和生化反应。

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