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柑橘果实中调控热诱导冷害耐受性的分子事件洞察

Insights into the Molecular Events That Regulate Heat-Induced Chilling Tolerance in Citrus Fruits.

作者信息

Lafuente María T, Establés-Ortíz Beatriz, González-Candelas Luis

机构信息

Department of Biotechnology, Instituto de Agroquímica y Tecnología de Alimentos (CSIC)Valencia, Spain.

出版信息

Front Plant Sci. 2017 Jun 26;8:1113. doi: 10.3389/fpls.2017.01113. eCollection 2017.

Abstract

Low non-freezing temperature may cause chilling injury (CI), which is responsible for external quality deterioration in many chilling-sensitive horticultural crops. Exposure of chilling-sensitive citrus cultivars to non-lethal high-temperature conditioning may increase their chilling tolerance. Very little information is available about the molecular events involved in such tolerance. In this work, the molecular events associated with the low temperature tolerance induced by heating Fortune mandarin, which is very sensitive to chilling, for 3 days at 37°C prior to cold storage is presented. A transcriptomic analysis reveals that heat-conditioning has an important impact favoring the repression of genes in cold-stored fruit, and that long-term heat-induced chilling tolerance is an active process that requires activation of transcription factors involved in transcription initiation and of the WRKY family. The analysis also shows that chilling favors degradation processes, which affect lipids and proteins, and that the protective effect of the heat-conditioning treatment is more likely to be related to the repression of the genes involved in lipid degradation than to the modification of fatty acids unsaturation, which affects membrane permeability. Another major factor associated with the beneficial effect of the heat treatment on reducing CI is the regulation of stress-related proteins. Many of the genes that encoded such proteins are involved in secondary metabolism and in oxidative stress-related processes.

摘要

低温但不结冰可能会导致冷害(CI),这是许多冷敏园艺作物外部品质劣化的原因。将冷敏柑橘品种暴露于非致死性高温预处理下可能会提高它们的耐寒性。关于这种耐受性所涉及的分子事件,目前所知甚少。在这项研究中,我们展示了与耐低温相关的分子事件,该耐低温性是通过在冷藏前将对冷非常敏感的福橘在37°C下加热3天诱导产生的。转录组分析表明,热预处理对冷藏果实中的基因抑制具有重要影响,并且长期热诱导的耐寒性是一个活跃的过程,需要激活参与转录起始的转录因子以及WRKY家族的转录因子。分析还表明,低温有利于影响脂质和蛋白质的降解过程,并且热预处理的保护作用更可能与抑制参与脂质降解的基因有关,而不是与影响膜通透性的脂肪酸不饱和度的改变有关。与热处理对减轻冷害的有益作用相关的另一个主要因素是应激相关蛋白的调节。许多编码此类蛋白的基因参与次生代谢和氧化应激相关过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b6b/5483458/28880362f58b/fpls-08-01113-g0001.jpg

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