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低温和预处理处理后葡萄柚果皮的转录组分析揭示了参与耐寒性和易感性的主要分子成分。

Transcriptome profiling of grapefruit flavedo following exposure to low temperature and conditioning treatments uncovers principal molecular components involved in chilling tolerance and susceptibility.

作者信息

Maul Pilar, McCollum Gregory T, Popp Mick, Guy Charles L, Porat Ron

机构信息

United States Department of Agriculture, US Horticultural Research Laboratory, 2001 S. Rock Road, Fort Pierce, FL 34945, USA.

出版信息

Plant Cell Environ. 2008 Jun;31(6):752-68. doi: 10.1111/j.1365-3040.2008.01793.x. Epub 2008 Feb 5.

Abstract

A pre-storage conditioning (CD) treatment of 16 degrees C for 7 d enhanced chilling tolerance of grapefruit and reduced the development of chilling injuries during storage at 5 degrees C. To gain a better understanding of the molecular mechanisms involved in the responses of citrus fruit to low temperatures, we performed genome-wide transcriptional profiling analysis of RNA isolated from grapefruit flavedo using the newly developed Affymetrix Citrus GeneChip microarray. Utilizing very restrictive cut-off criteria, including pair-wise anova comparisons significantly different at P < or = 0.05 and induction or repression of transcript levels by at least fourfold, we found that out of 30 171 probe sets on the microarray, 1345 probe sets were significantly affected by chilling in both control and CD-treated fruits, 509 probe sets were affected by chilling specifically in the CD-treated fruits, and 417 probe sets were specifically expressed in chilling-sensitive control fruits. Overall, exposure to chilling led to expression arrest of general cellular metabolic activity, including concretive down-regulation of cell wall, pathogen defence, photosynthesis, respiration, and protein, nucleic acid and secondary metabolism. On the other hand, chilling enhanced adaptation processes that involve changes in the expression of transcripts related to membranes, lipid, sterol and carbohydrate metabolism, stress stimuli, hormone biosynthesis, and modifications in DNA binding and transcription factors.

摘要

在16℃下进行7天的预贮藏预处理(CD)可增强葡萄柚的耐冷性,并减少在5℃贮藏期间冷害的发生。为了更好地了解柑橘类水果对低温响应所涉及的分子机制,我们使用新开发的Affymetrix柑橘基因芯片微阵列对从葡萄柚外果皮分离的RNA进行了全基因组转录谱分析。利用非常严格的截止标准,包括在P≤0.05时两两方差分析比较有显著差异以及转录水平至少四倍的诱导或抑制,我们发现在微阵列上的30171个探针组中,1345个探针组在对照和CD处理的果实中均受到低温的显著影响,509个探针组在CD处理的果实中受到低温的特异性影响,417个探针组在冷敏感对照果实中特异性表达。总体而言,暴露于低温导致一般细胞代谢活性的表达停滞,包括细胞壁、病原体防御、光合作用、呼吸作用以及蛋白质、核酸和次生代谢的具体下调。另一方面,低温增强了适应过程,这些过程涉及与膜、脂质、甾醇和碳水化合物代谢、应激刺激、激素生物合成以及DNA结合和转录因子修饰相关的转录本表达变化。

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