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利用同源和异源基因表达谱分析工具来描绘苹果果实成熟和成熟过程中的转录动态。

Use of homologous and heterologous gene expression profiling tools to characterize transcription dynamics during apple fruit maturation and ripening.

机构信息

Department of Fruit Tree and Woody Plant Science, University of Bologna, Viale Fanin 46, 40121 Bologna, Italy.

出版信息

BMC Plant Biol. 2010 Oct 25;10:229. doi: 10.1186/1471-2229-10-229.

Abstract

BACKGROUND

Fruit development, maturation and ripening consists of a complex series of biochemical and physiological changes that in climacteric fruits, including apple and tomato, are coordinated by the gaseous hormone ethylene. These changes lead to final fruit quality and understanding of the functional machinery underlying these processes is of both biological and practical importance. To date many reports have been made on the analysis of gene expression in apple. In this study we focused our investigation on the role of ethylene during apple maturation, specifically comparing transcriptomics of normal ripening with changes resulting from application of the hormone receptor competitor 1-methylcyclopropene.

RESULTS

To gain insight into the molecular process regulating ripening in apple, and to compare to tomato (model species for ripening studies), we utilized both homologous and heterologous (tomato) microarray to profile transcriptome dynamics of genes involved in fruit development and ripening, emphasizing those which are ethylene regulated.The use of both types of microarrays facilitated transcriptome comparison between apple and tomato (for the later using data previously published and available at the TED: tomato expression database) and highlighted genes conserved during ripening of both species, which in turn represent a foundation for further comparative genomic studies. The cross-species analysis had the secondary aim of examining the efficiency of heterologous (specifically tomato) microarray hybridization for candidate gene identification as related to the ripening process. The resulting transcriptomics data revealed coordinated gene expression during fruit ripening of a subset of ripening-related and ethylene responsive genes, further facilitating the analysis of ethylene response during fruit maturation and ripening.

CONCLUSION

Our combined strategy based on microarray hybridization enabled transcriptome characterization during normal climacteric apple ripening, as well as definition of ethylene-dependent transcriptome changes. Comparison with tomato fruit maturation and ethylene responsive transcriptome activity facilitated identification of putative conserved orthologous ripening-related genes, which serve as an initial set of candidates for assessing conservation of gene activity across genomes of fruit bearing plant species.

摘要

背景

果实的发育、成熟和成熟过程包括一系列复杂的生化和生理变化,在包括苹果和番茄在内的跃变型果实中,这些变化由气态激素乙烯协调。这些变化导致最终的果实品质,理解这些过程背后的功能机制具有重要的生物学和实际意义。迄今为止,已有许多关于苹果基因表达分析的报道。在这项研究中,我们专注于乙烯在苹果成熟过程中的作用,特别是比较正常成熟和应用激素受体竞争物 1-甲基环丙烯的变化。

结果

为了深入了解调控苹果成熟的分子过程,并与番茄(成熟研究的模式物种)进行比较,我们利用同源和异源(番茄)微阵列来分析参与果实发育和成熟的基因的转录组动态,强调那些受乙烯调节的基因。使用这两种类型的微阵列有助于在苹果和番茄之间进行转录组比较(对于后者,使用之前发表的数据和在 TED:番茄表达数据库中可用的数据),并突出了在两个物种成熟过程中保守的基因,这些基因反过来又为进一步的比较基因组研究奠定了基础。跨物种分析的次要目的是检验异源(特别是番茄)微阵列杂交在候选基因鉴定方面的效率,与成熟过程有关。所得的转录组数据揭示了一组与成熟相关和乙烯反应基因在果实成熟过程中的协调表达,进一步促进了对果实成熟过程中乙烯反应的分析。

结论

我们基于微阵列杂交的综合策略使我们能够在正常跃变型苹果成熟过程中进行转录组特征描述,以及定义乙烯依赖的转录组变化。与番茄果实成熟和乙烯反应转录组活性的比较促进了推测保守直系同源成熟相关基因的鉴定,这些基因作为评估跨果实植物基因组基因活性保守性的初始候选基因集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1177/3095317/81d64f8a76b0/1471-2229-10-229-1.jpg

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