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Transcriptome Analysis of Mango (Mangifera indica L.) Fruit Epidermal Peel to Identify Putative Cuticle-Associated Genes

机译:芒果(Mangifera indica L.)水果表皮去皮的转录组分析以鉴定推定的表皮相关基因

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摘要

Mango fruit (Mangifera indica L.) are highly perishable and have a limited shelf life, due to postharvest desiccation and senescence, which limits their global distribution. Recent studies of tomato fruit suggest that these traits are influenced by the expression of genes that are associated with cuticle metabolism. However, studies of these phenomena in mango fruit are limited by the lack of genome-scale data. In order to gain insight into the mango cuticle biogenesis and identify putative cuticle-associated genes, we analyzed the transcriptomes of peels from ripe and overripe mango fruit using RNA-Seq. Approximately 400 million reads were generated and de novo assembled into 107,744 unigenes, with a mean length of 1,717 bp and with this information an online Mango RNA-Seq Database () which is a valuable genomic resource for molecular research into the biology of mango fruit was created. RNA-Seq analysis suggested that the pathway leading to biosynthesis of the cuticle component, cutin, is up-regulated during overripening. This data was supported by analysis of the expression of several putative cuticle-associated genes and by gravimetric and microscopic studies of cuticle deposition, revealing a complex continuous pattern of cuticle deposition during fruit development and involving substantial accumulation during ripening/overripening.
机译:芒果果实(Mangifera indica L.)极易腐烂,并且由于收获后的干燥和衰老而限制了其全球分布,因此货架期有限。番茄果实的最新研究表明,这些性状受与表皮代谢相关的基因表达的影响。但是,由于缺乏基因组规模的数据,对芒果果实中这些现象的研究受到了限制。为了深入了解芒果表皮的生物发生并鉴定推测的表皮相关基因,我们使用RNA-Seq分析了成熟和成熟芒果果皮的转录组。大约产生了4亿个读数,并从头开始组装成107,744个单基因,平均长度为1,717 bp,通过此信息,在线芒果RNA-Seq数据库()是进行芒果果实生物学分子研究的宝贵基因组资源。创建。 RNA-Seq分析表明,导致角质层成分角质素生物合成的途径在过度成熟过程中被上调。该数据得到了几种假定的表皮相关基因表达的分析以及表皮沉积的重量分析和显微研究的支持,揭示了果实发育过程中表皮沉积的复杂连续模式,并且在成熟/过度成熟过程中涉及大量积累。

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