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生化和转录组分析揭示了‘安吉白茶’(茶树)三个颜色和发育阶段之间不同的代谢物生物合成谱。

Biochemical and transcriptomic analyses reveal different metabolite biosynthesis profiles among three color and developmental stages in 'Anji Baicha' (Camellia sinensis).

作者信息

Li Chun-Fang, Xu Yan-Xia, Ma Jian-Qiang, Jin Ji-Qiang, Huang Dan-Juan, Yao Ming-Zhe, Ma Chun-Lei, Chen Liang

机构信息

Key Laboratory of Tea Biology and Resources Utilization, Ministry of Agriculture, Tea Research Institute of the Chinese Academy of Agricultural Sciences, Hangzhou, China.

School of Agriculture and Food Science, Zhejiang Agriculture and Forestry University, Lin'an, Hangzhou, China.

出版信息

BMC Plant Biol. 2016 Sep 8;16(1):195. doi: 10.1186/s12870-016-0885-2.

Abstract

BACKGROUND

The new shoots of the albino tea cultivar 'Anji Baicha' are yellow or white at low temperatures and turn green as the environmental temperatures increase during the early spring. 'Anji Baicha' metabolite profiles exhibit considerable variability over three color and developmental stages, especially regarding the carotenoid, chlorophyll, and theanine concentrations. Previous studies focused on physiological characteristics, gene expression differences, and variations in metabolite abundances in albino tea plant leaves at specific growth stages. However, the molecular mechanisms regulating metabolite biosynthesis in various color and developmental stages in albino tea leaves have not been fully characterized.

RESULTS

We used RNA-sequencing to analyze 'Anji Baicha' leaves at the yellow-green, albescent, and re-greening stages. The leaf transcriptomes differed considerably among the three stages. Functional classifications based on Gene Ontology enrichment and Kyoto Encyclopedia of Genes and Genomes enrichment analyses revealed that differentially expressed unigenes were mainly related to metabolic pathways, biosynthesis of secondary metabolites, phenylpropanoid biosynthesis, and carbon fixation in photosynthetic organisms. Chemical analyses revealed higher β-carotene and theanine levels, but lower chlorophyll a levels, in the albescent stage than in the green stage. Furthermore, unigenes involved in carotenoid, chlorophyll, and theanine biosyntheses were identified, and the expression patterns of the differentially expressed unigenes in these biosynthesis pathways were characterized. Through co-expression analyses, we identified the key genes in these pathways. These genes may be responsible for the metabolite biosynthesis differences among the different leaf color and developmental stages of 'Anji Baicha' tea plants.

CONCLUSIONS

Our study presents the results of transcriptomic and biochemical analyses of 'Anji Baicha' tea plants at various stages. The distinct transcriptome profiles for each color and developmental stage enabled us to identify changes to biosynthesis pathways and revealed the contributions of such variations to the albino phenotype of tea plants. Furthermore, comparisons of the transcriptomes and related metabolites helped clarify the molecular regulatory mechanisms underlying the secondary metabolic pathways in different stages.

摘要

背景

白化茶品种‘安吉白茶’的新梢在早春低温时呈黄色或白色,随着环境温度升高而变绿。‘安吉白茶’的代谢物谱在三个颜色和发育阶段表现出相当大的变异性,尤其是在类胡萝卜素、叶绿素和茶氨酸浓度方面。先前的研究集中在白化茶树叶片特定生长阶段的生理特征、基因表达差异和代谢物丰度变化。然而,调节白化茶叶片不同颜色和发育阶段代谢物生物合成的分子机制尚未完全阐明。

结果

我们使用RNA测序分析了‘安吉白茶’处于黄绿、白化和返绿阶段的叶片。三个阶段的叶片转录组有很大差异。基于基因本体富集和京都基因与基因组百科全书富集分析的功能分类表明,差异表达的单基因主要与代谢途径、次生代谢物生物合成、苯丙烷类生物合成以及光合生物中的碳固定有关。化学分析表明,白化阶段的β-胡萝卜素和茶氨酸水平高于绿色阶段,但叶绿素a水平低于绿色阶段。此外,鉴定了参与类胡萝卜素、叶绿素和茶氨酸生物合成的单基因,并对这些生物合成途径中差异表达单基因的表达模式进行了表征。通过共表达分析,我们确定了这些途径中的关键基因。这些基因可能是‘安吉白茶’茶树不同叶片颜色和发育阶段代谢物生物合成差异的原因。

结论

我们的研究展示了‘安吉白茶’茶树不同阶段的转录组和生化分析结果。每个颜色和发育阶段独特的转录组图谱使我们能够识别生物合成途径的变化,并揭示这些变化对茶树白化表型的贡献。此外,转录组与相关代谢物的比较有助于阐明不同阶段次生代谢途径的分子调控机制。

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