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Gene Expression Profiling of Development and Anthocyanin Accumulation in Kiwifruit (Actinidia chinensis) Based on Transcriptome Sequencing

生物 猕猴桃 猕猴桃 转录组 抗坏血酸 基因 猕猴桃 从头转录组组装 Illumina染料测序 RNA序列 基因表达谱 花青素 基因表达 植物 遗传学 基因组 食品科学
作者
Wenbin Li,Yifei Liu,Shaohua Zeng,Xiaohua Gong,Gan Wang,Ying Wāng,Ming Peng,Hongwen Huang
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:10 (8): e0136439-e0136439 被引量:52
标识
DOI:10.1371/journal.pone.0136439
摘要

Red-fleshed kiwifruit (Actinidia chinensis Planch. 'Hongyang') is a promising commercial cultivar due to its nutritious value and unique flesh color, derived from vitamin C and anthocyanins. In this study, we obtained transcriptome data of 'Hongyang' from seven developmental stages using Illumina sequencing. We mapped 39-54 million reads to the recently sequenced kiwifruit genome and other databases to define gene structure, to analyze alternative splicing, and to quantify gene transcript abundance at different developmental stages. The transcript profiles throughout red kiwifruit development were constructed and analyzed, with a focus on the biosynthesis and metabolism of compounds such as phytohormones, sugars, starch and L-ascorbic acid, which are indispensable for the development and formation of quality fruit. Candidate genes for these pathways were identified through MapMan and phylogenetic analysis. The transcript levels of genes involved in sucrose and starch metabolism were consistent with the change in soluble sugar and starch content throughout kiwifruit development. The metabolism of L-ascorbic acid was very active, primarily through the L-galactose pathway. The genes responsible for the accumulation of anthocyanin in red kiwifruit were identified, and their expression levels were investigated during kiwifruit development. This survey of gene expression during kiwifruit development paves the way for further investigation of the development of this uniquely colored and nutritious fruit and reveals which factors are needed for high quality fruit formation. This transcriptome data and its analysis will be useful for improving kiwifruit genome annotation, for basic fruit molecular biology research, and for kiwifruit breeding and improvement.
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