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高花色苷番茄的转录组分析揭示了 Aft 和 atv 基因的协同作用。

Transcriptional analysis in high-anthocyanin tomatoes reveals synergistic effect of Aft and atv genes.

机构信息

Plant Lab, Scuola Superiore Sant'Anna, Piazza Martiri della Libertà 33, 56127 Pisa, Italy.

出版信息

J Plant Physiol. 2011 Feb 15;168(3):270-9. doi: 10.1016/j.jplph.2010.07.022.

Abstract

Anthocyanins are high value plant antioxidants, which are not present in the fruits of the cultivated tomato. However, both the dominant gene Anthocyanin fruit (Aft) and the recessive gene atroviolacea (atv), when introgressed into the domesticated tomato from two different wild Solanum species, stimulate a limited anthocyanin pigmentation. Surprisingly, the double mutant Aft/Aft atv/atv gives rise to intensely purple pigmented tomatoes. A transcript profiling analysis was carried out using quantitative RT-PCR and GeneChip(®) Tomato Genome Arrays to identify differentially expressed genes when comparing Ailsa Craig, Aft/Aft, atv/atv, and Aft/Aft atv/atv fruits. Anthocyanin levels and the expression of the genes involved in anthocyanin production and compartmentalization were higher in the peel of Aft/Aft atv/atv fruits than in the individual parental lines. Moreover, a synergistic effect of the two alleles Aft and atv on the transcription of specific anthocyanin genes and the activation of the whole anthocyanin pathway was observed. Among the differentially expressed transcripts, genes involved in the phenylpropanoid pathway, biotic and abiotic stress responses, cell wall and hormone metabolism were over-represented in Aft/Aft atv/atv fruit peel. Transcriptomic analyses thus revealed that the activation of anthocyanin synthesis in the peel of tomato fruit was accompanied by a complex remodulation of gene expression.

摘要

花色苷是高价值的植物抗氧化剂,在栽培番茄的果实中并不存在。然而,当从两个不同的野生茄属物种中引入花色苷果实(Aft)和隐性基因atroviolacea(atv)时,它们会刺激有限的花色苷色素沉着。令人惊讶的是,双突变体 Aft/Aft atv/atv 会导致强烈的紫色着色番茄。使用定量 RT-PCR 和 GeneChip(®)番茄基因组芯片进行了转录谱分析,以比较 Ailsa Craig、Aft/Aft、atv/atv 和 Aft/Aft atv/atv 果实时,鉴定差异表达的基因。与单个亲本系相比,Aft/Aft atv/atv 果实的果皮中花色苷水平和参与花色苷生物合成和区室化的基因表达更高。此外,Aft 和 atv 两个等位基因对特定花色苷基因转录和整个花色苷途径激活的协同作用得到了观察。在差异表达的转录本中,参与苯丙烷途径、生物和非生物胁迫反应、细胞壁和激素代谢的基因在 Aft/Aft atv/atv 果皮中过度表达。转录组分析因此表明,番茄果实果皮中花色苷合成的激活伴随着基因表达的复杂重排。

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