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首页> 外文期刊>Plant Molecular Biology >A genetic genomics-expression approach reveals components of the molecular mechanisms beyond the cell wall that underlie peach fruit woolliness due to cold storage
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A genetic genomics-expression approach reveals components of the molecular mechanisms beyond the cell wall that underlie peach fruit woolliness due to cold storage

机译:遗传基因组学表达方法揭示了细胞壁之外的分子机理的组成部分,这些分子机理是由于冷藏导致桃果实羊毛质的基础

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摘要

Peach fruits subjected to prolonged cold storage (CS) to delay decay and over-ripening often develop a form of chilling injury (CI) called mealiness/woolliness (WLT), a flesh textural disorder characterized by lack of juiciness. Transcript profiles were analyzed after different lengths of CS and subsequent shelf life ripening (SLR) in pools of fruits from siblings of the Pop-DG population with contrasting sensitivity to develop WLT. This was followed by quantitative PCR on pools and individual lines of the Pop-DG population to validate and extend the microarray results. Relative tolerance to WLT development during SLR was related to the fruit's ability to recover from cold and the reactivation of normal ripening, processes that are probably regulated by transcription factors involved in stress protection, stress recovery and induction of ripening. Furthermore, our results showed that altered ripening in WLT fruits during shelf life is probably due, in part, to cold-induced desynchronization of the ripening program involving ethylene and auxin hormonal regulation of metabolism and cell wall. In addition, we found strong correlation between expression of RNA translation and protein assembly genes and the visual injury symptoms.
机译:桃子果实经过长期冷藏(CS)以延迟腐烂和过度成熟经常会发展成一种称为粉尘/结块性(WLT)的冷害(CI)形式,一种以缺乏多汁性为特征的肉质结构紊乱。在不同长度的CS和随后的Pop-DG群体同胞的果实库中的货架期成熟(SLR)之后,分析转录物谱,并具有相反的敏感性来发展WLT。接下来是对Pop-DG群体的库和各个系进行定量PCR,以验证和扩展微阵列结果。在SLR期间对WLT发育的相对耐受性与果实从寒冷中恢复的能力以及正常成熟的重新激活有关,该过程可能受涉及胁迫保护,胁迫恢复和成熟诱导的转录因子调控。此外,我们的结果表明,保质期较长的WLT果实的成熟改变可能部分归因于成熟程序的冷诱导失步,该成熟程序涉及乙烯和生长素激素对新陈代谢和细胞壁的调节。另外,我们发现RNA翻译和蛋白质装配基因的表达与视觉损伤症状之间有很强的相关性。

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