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Transcriptome changes in the phenylpropanoid pathway in senescing leaves of Toona sinensis.


ABSTRACT: Toona sinensis is a deciduous tree native to eastern and southeastern Asia that has important culinary and cultural values. To expand current knowledge of the transcriptome and functional genomics in this species, a de novo transcriptome sequence analysis of young and mature leaf tissues of T. sinensis was performed using the Illumina platform. Over 8.1 Gb of data were generated, assembled into 64,541 unigenes, and annotated with known biological functions. Proteins involved in primary metabolite biosynthesis were identified based on similarities to known proteins, including some related to biosynthesis of carbohydrates, amino acids, lipids, and energy. Analysis of unigenes differentially expressed between young and mature leaves (transcriptomic libraries 'YL' and 'ML', respectively) showed that the KEGG pathways of phenylpropanoid, naringenin, lignin, cutin, suberin, and wax biosynthesis were significantly enriched in mature leaves. These results not only expand knowledge of transcriptome characteristics for this valuable species, but also provide a useful transcriptomic dataset to accelerate the researches on its metabolic mechanisms and functional genomics. This study can also further the understanding of unique aromatic metabolism and Chinese medicinal properties of T. sinensis.

SUBMITTER: Sui J 

PROVIDER: S-EPMC7088779 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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Transcriptome changes in the phenylpropanoid pathway in senescing leaves of <i>Toona sinensis</i>.

Sui Juanjuan J   Qu Changqing C   Yang Jingxia J   Zhang Wenna W   Ji Yuntao Y  

Acta physiologiae plantarum 20190617 7


<i>Toona sinensis</i> is a deciduous tree native to eastern and southeastern Asia that has important culinary and cultural values. To expand current knowledge of the transcriptome and functional genomics in this species, a de novo transcriptome sequence analysis of young and mature leaf tissues of <i>T. sinensis</i> was performed using the Illumina platform. Over 8.1 Gb of data were generated, assembled into 64,541 unigenes, and annotated with known biological functions. Proteins involved in pri  ...[more]

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