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The ascorbic acid content of tomato fruits is associated with the expression of genes involved in pectin degradation

机译:番茄果实中的抗坏血酸含量与果胶降解相关基因的表达有关

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Background High levels of ascorbic acid (AsA) in tomato fruits provide health benefits for humans and also play an important role in several aspects of plant life. Although AsA metabolism has been characterized in detail, the genetic mechanisms controlling AsA accumulation in tomatoes are poorly understood. The transcriptional control of AsA levels in fruits can be investigated by combining the advanced genetic and genomic resources currently available for tomato. A comparative transcriptomic analysis of fruit tissues was carried out on an introgression line containing a QTL promoting AsA accumulation in the fruit, using a parental cultivar with lower AsA levels as a reference. Results Introgression line IL 12-4 ( S. pennellii in a S. lycopersicum background) was selected for transcriptomic analysis because it maintained differences in AsA levels compared to the parental genotypes M82 and S. pennellii over three consecutive trials. Comparative microarray analysis of IL 12-4 and M82 fruits over a 2-year period allowed 253 differentially-expressed genes to be identified, suggesting that AsA accumulation in IL 12-4 may be caused by a combination of increased metabolic flux and reduced utilization of AsA. In particular, the upregulation of a pectinesterase and two polygalacturonases suggests that AsA accumulation in IL12-4 fruit is mainly achieved by increasing flux through the L-galactonic acid pathway, which is driven by pectin degradation and may be triggered by ethylene. Conclusions Based on functional annotation, gene ontology classification and hierarchical clustering, a subset of the 253 differentially-expressed transcripts was used to develop a model to explain the higher AsA content in IL 12-4 fruits in terms of metabolic flux, precursor availability, demand for antioxidants, abundance of reactive oxygen species and ethylene signaling.
机译:背景技术番茄果实中的高水平抗坏血酸(AsA)为人类带来健康益处,并且在植物生命的多个方面也发挥着重要作用。尽管已经详细描述了AsA代谢的特征,但对控制番茄中AsA积累的遗传机制知之甚少。可以通过结合目前可用于番茄的先进遗传和基因组资源来研究水果中AsA水平的转录控制。使用含有较低AsA水平的亲本栽培种,在含有促进AsA在水果中积累的QTL的渗入系上,对水果组织进行了转录组分析。结果选择渗入系IL 12-4(在S. lycopersicum背景中的S. pennellii)进行转录组分析,因为在三个连续的试验中,与亲本基因型M82和S. pennellii相比,AsA水平保持差异。对IL 12-4和M82水果进行了2年的比较性微阵列分析,可以鉴定253个差异表达的基因,这表明IL 12-4中AsA的积累可能是由于代谢通量增加和对C12利用率降低的综合作用引起的。作为一个。特别地,果胶酯酶和两种多半乳糖苷酶的上调表明,IL12-4果实中的AsA积累主要是通过增加通过L-半乳糖酸途径的通量来实现的,这是由果胶降解驱动的,并可能由乙烯触发。结论基于功能注释,基因本体分类和层次聚类,使用253个差异表达转录本的子集开发了一个模型,以从代谢通量,前体可用性,需求方面解释了IL 12-4水果中较高的AsA含量。用于抗氧化剂,丰富的活性氧和乙烯信号。

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