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Transcriptome Analysis of Sucrose Metabolism during Bulb Swelling and Development in Onion (Allium cepa L.)

机译:洋葱鳞茎膨大和发育过程中蔗糖代谢的转录组分析

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摘要

Allium cepa L. is a widely cultivated and economically significant vegetable crop worldwide, with beneficial dietary and health-related properties, but its sucrose metabolism is still poorly understood. To analyze sucrose metabolism during bulb swelling, and the development of sweet taste in onion, a global transcriptome profile of onion bulbs was undertaken at three different developmental stages, using RNA-seq. A total of 79,376 unigenes, with a mean length of 678 bp, was obtained. In total, 7% of annotated Clusters of Orthologous Groups (COG) were involved in carbohydrate transport and metabolism. In the Kyoto Encyclopedia of Genes and Genomes (KEGG) database, “starch and sucrose metabolism” (147, 2.40%) constituted the primary metabolism pathway in the integrated library. The expression of sucrose transporter genes was greatest during the early-swelling stage, suggesting that sucrose transporters (SUTs) participated in sucrose metabolism mainly at an early stage of bulb development. A gene-expression analysis of the key enzymes of sucrose metabolism suggested that sucrose synthase, cell wall invertase, and invertase were all likely to participate in the hydrolysis of sucrose, generating glucose, and fructose. In addition, trehalose was hydrolyzed to two molecules of glucose by trehalase. From 15 to 40 days after swelling (DAS), both the glucose and fructose contents of bulbs increased, whereas the sucrose content decreased. The growth rate between 15 and 30 DAS was slower than that between 30 and 40 DAS, suggesting that the latter was a period of rapid expansion. The dataset generated by our transcriptome profiling will provide valuable information for further research.
机译:洋葱Cepa L.是世界范围内广泛种植且具有经济意义的蔬菜作物,具有有益于饮食和健康的特性,但其蔗糖代谢仍知之甚少。为了分析鳞茎肿胀过程中的蔗糖代谢以及洋葱甜味的发展,使用RNA-seq在三个不同的发育阶段对洋葱鳞茎进行了全局转录组分析。总共获得了79,376个单基因,平均长度为678 bp。总共有7%的直系同源基因组(COG)参与碳水化合物的运输和代谢。在《京都基因与基因组百科全书》(KEGG)数据库中,“淀粉和蔗糖代谢”(147,2.40%)构成了整合文库中的主要代谢途径。蔗糖转运蛋白基因的表达在早期肿胀阶段最大,表明蔗糖转运蛋白(SUTs)主要在球茎发育的早期参与蔗糖代谢。对蔗糖代谢关键酶的基因表达分析表明,蔗糖合酶,细胞壁转化酶和转化酶都可能参与蔗糖的水解,产生葡萄糖和果糖。另外,海藻糖被海藻糖酶水解为两个葡萄糖分子。肿胀(DAS)后15到40天,鳞茎的葡萄糖和果糖含量均增加,而蔗糖含量则下降。 15至30 DAS的增长率低于30至40 DAS的增长率,这表明后者是一个快速扩张的时期。我们的转录组分析生成的数据集将为进一步研究提供有价值的信息。

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