首页> 外文期刊>Scientific reports. >Distinct transcriptome profiles reveal gene expression patterns during fruit development and maturation in five main cultivated species of pear (Pyrus L.)
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Distinct transcriptome profiles reveal gene expression patterns during fruit development and maturation in five main cultivated species of pear (Pyrus L.)

机译:不同的转录组谱揭示了在五个主要栽培梨种(Pyrus L.)的果实发育和成熟过程中的基因表达模式。

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The transcriptomes of five pear cultivars, 'Hosui' (P. pyrifolia), 'Yali' (P. bretschneideri), 'Kuerlexiangli' (P. sinkiangensis), 'Nanguoli' (P. ussuriensis), and 'Starkrimson' (P. communis) were sequenced at seven key fruit developmental stages, from fruit setting to maturation and fruit senescence after harvesting. In total, 33,136 genes that could be mapped by reads, were analyzed. Most gene expression cluster models showed a steadily decreasing trend. Gene expression patterns had obvious differences according to maturity type, that is, post-ripening cultivars were still vigorous at maturity, and showed a higher proportion of up-regulated genes; non post-ripening cultivars had a gradually decreasing tendency during fruit maturation. Meanwhile, differentially expressed genes related to fruit quality and development, such as stone cells, sugar, acid and hormones, were identified. Co-expression analysis revealed that several ethylene synthesis genes and polyphenoloxidase-related genes interacted with each other directly, and an indirect relationship was reflected between ethylene synthesis genes and ethylene response genes. In addition, the highly diverse SNPs represented the great differences between oriental and occidental pears. Understanding how RNA-seq based gene-expression patterns and differential gene expression contribute to fruit quality allows us to build models for gene-expression for fruit development of Pyrus species.
机译:五个梨品种'Hosui'(P. pyrifolia),'Yali'(P. bretschneideri),'Kuerlexiangli'(P. sinkiangensis),'Nanguoli'(Ps ussuriensis)和'Starkrimson'(P.采摘后从果实定植到成熟和果实衰老的七个关键果实发育阶段进行测序。总共分析了33,136个可通过阅读定位的基因。大多数基因表达簇模型显示出稳定下降的趋势。基因表达方式根据成熟类型而有明显差异,即成熟后的品种仍然活跃,并且上调基因的比例更高。非成熟后品种在果实成熟过程中具有逐渐降低的趋势。同时,鉴定了与果实品质和发育相关的差异表达基因,例如核细胞,糖,酸和激素。共表达分析表明,几个乙烯合成基因和多酚氧化酶相关基因直接相互作用,并且反映了乙烯合成基因和乙烯响应基因之间的间接关系。此外,高度多样化的SNP代表了东方梨和西方梨之间的巨大差异。了解基于RNA-seq的基因表达模式和差异基因表达如何影响果实品质,使我们能够建立梨属植物果实发育的基因表达模型。

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