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采后冷藏条件下宽皮柑橘果实基因表达谱分析揭示了可溶性糖代谢相关的调控基因。

Microarray expression profiling of postharvest Ponkan mandarin (Citrus reticulata) fruit under cold storage reveals regulatory gene candidates and implications on soluble sugars metabolism.

机构信息

Key Laboratory of Horticulture Plant Biology of Ministry of Education, Huazhong Agricultural University, Wuhan, China.

出版信息

J Integr Plant Biol. 2011 May;53(5):358-74. doi: 10.1111/j.1744-7909.2011.01035.x.

Abstract

Low temperature storage is widely applied to maintain citrus postharvest fruit quality. In this study, the transcriptional and metabolic changes in the pulp tissue of Citrus reticulata Blanco cv. "Ponkan" were studied for three successive months under cold storage by Affymetrix Citrus GeneChip and gas chromatography, respectively. As many as 2 161 differentially expressed transcripts were identified based on the bayesian hierarchical model. The statistical analysis of gene ontology revealed that defense/stress-related genes were induced quickly, while autophagy-related genes were overrepresented in the late sampling stages, suggesting that the functional shift may coincide with the subsequent steps of chilling development. We further classified the potential regulatory components and concluded that ethylene may play the crucial role in chilling development in this non-climacteric fruit. To cope with complex events, 53 upregulated transcription factors represented regulatory candidates. Within these, the AP2-EREBP, C2H2 and AS2 gene family were overrepresented. Cold storage also causes alterations in various metabolic pathways; a keen interest is paid in deciphering expression changes of soluble sugar genes as increased evidence that soluble sugars act as both osmolytes and metabolite signal molecules. Our results will likely facilitate further studies in this field with promising genetic candidates during chilling.

摘要

低温贮藏被广泛应用于保持柑橘采后果实的品质。本研究采用 Affymetrix 柑橘基因芯片和气相色谱法,分别研究了连续 3 个月冷藏过程中桔皮组织的转录组和代谢组变化。基于贝叶斯层次模型,鉴定出多达 2161 个差异表达的转录本。基因本体论的统计分析表明,防御/应激相关基因迅速被诱导,而自噬相关基因在后期采样阶段过度表达,这表明功能转变可能与随后的冷害发展阶段相吻合。我们进一步对潜在的调控成分进行了分类,得出乙烯可能在这个非呼吸跃变型果实的冷害发展中发挥关键作用的结论。为了应对复杂的事件,53 个上调的转录因子代表了调控候选物。在这些转录因子中,AP2-EREBP、C2H2 和 AS2 基因家族过度表达。低温贮藏还会导致各种代谢途径的改变;人们对可溶性糖基因表达变化的研究非常感兴趣,因为越来越多的证据表明,可溶性糖既作为渗透调节剂,又作为代谢物信号分子。我们的研究结果可能会为今后在冷害过程中筛选具有应用前景的遗传候选物提供帮助。

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