首页> 外文期刊>International Journal of Molecular Sciences >Comparative Transcriptional Analysis of Loquat Fruit Identifies Major Signal Networks Involved in Fruit Development and Ripening Process
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Comparative Transcriptional Analysis of Loquat Fruit Identifies Major Signal Networks Involved in Fruit Development and Ripening Process

机译:Lo果实的比较转录分析确定了参与果实发育和成熟过程的主要信号网络

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Loquat ( Eriobotrya japonica Lindl.) is an important non-climacteric fruit and rich in essential nutrients such as minerals and carotenoids. During fruit development and ripening, thousands of the differentially expressed genes (DEGs) from various metabolic pathways cause a series of physiological and biochemical changes. To better understand the underlying mechanism of fruit development, the Solexa/Illumina RNA-seq high-throughput sequencing was used to evaluate the global changes of gene transcription levels. More than 51,610,234 high quality reads from ten runs of fruit development were sequenced and assembled into 48,838 unigenes. Among 3256 DEGs, 2304 unigenes could be annotated to the Gene Ontology database. These DEGs were distributed into 119 pathways described in the Kyoto Encyclopedia of Genes and Genomes (KEGG) database. A large number of DEGs were involved in carbohydrate metabolism, hormone signaling, and cell-wall degradation. The real-time reverse transcription (qRT)-PCR analyses revealed that several genes related to cell expansion, auxin signaling and ethylene response were differentially expressed during fruit development. Other members of transcription factor families were also identified. There were 952 DEGs considered as novel genes with no annotation in any databases. These unigenes will serve as an invaluable genetic resource for loquat molecular breeding and postharvest storage.
机译:qua(Eriobotrya japonica Lindl。)是一种重要的非更年期水果,富含矿物质和类胡萝卜素等基本营养素。在果实发育和成熟期间,来自各种代谢途径的数千个差异表达基因(DEG)引起一系列生理和生化变化。为了更好地了解水果发育的潜在机制,使用了Solexa / Illumina RNA-seq高通量测序来评估基因转录水平的整体变化。对来自十次水果发育的超过51,610,234个高质量读段进行了测序,并将其组装成48,838个单基因。在3256个DEG中,可以将2304个单基因注释到Gene Ontology数据库中。这些DEG被分配到《京都基因与基因组百科全书》(KEGG)数据库中描述的119条途径中。大量的DEG参与碳水化合物的代谢,激素信号传导和细胞壁降解。实时逆转录(qRT)-PCR分析表明,在果实发育过程中,与细胞膨胀,生长素信号传导和乙烯反应相关的几个基因差异表达。还确定了转录因子家族的其他成员。有952个DEG被认为是新基因,在任何数据库中都没有注释。这些单基因将成为lo分子育种和收获后储存的宝贵遗传资源。

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