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调控亚种叶片颜色变化的机制。

Regulatory mechanisms of leaf color change in subsp. .

机构信息

Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing University of Agriculture, Beijing 102206, People's Republic of China.

College of Landscape Architecture, Beijing University of Agriculture, Beijing 102206, People's Republic of China.

出版信息

Genome. 2019 Dec;62(12):793-805. doi: 10.1139/gen-2019-0115. Epub 2019 Sep 6.

Abstract

subsp. is a colored leaf tree with vital ornamental and economic value. However, insufficient color change and early leaf fall in cities restrict its ornamental value. In this research, green and red leaves from wild subsp. were collected to study the regulatory mechanisms of leaf color change. Through the determination of plant physiological indexes, we found that the photosynthetic pigment content in red leaves decreased significantly compared with green leaves, while the anthocyanin content and antioxidant activity increased significantly compared with green leaves during the leaf color change process. Using transcriptome sequencing, we found more than 5500 differentially expressed genes, most of which were up-regulated. Many of the differentially expressed genes are involved in the anthocyanin metabolic pathway. The expression patterns of 15 key genes were investigated by quantitative real-time polymerase chain reaction. Among these genes, and are significant genes involved in the anthocyanin metabolic pathway, and , , , , , , , , , , , , and might be stress response genes that indirectly regulated the anthocyanin accumulation. The results showed that these genes play vital roles in the leaf color change of subsp. . This research will be helpful in further study of the molecular regulatory mechanisms of leaf color change and for the improvement of colored leaf plants.

摘要

subsp. 是一种有色叶树种,具有重要的观赏和经济价值。然而,城市中叶片变色不足和过早落叶限制了其观赏价值。本研究采集了野生 subsp. 的绿叶和红叶,以研究叶片颜色变化的调控机制。通过测定植物生理指标,我们发现红叶在叶片颜色变化过程中,其光合色素含量与绿叶相比显著降低,而花色素苷含量和抗氧化活性显著升高。通过转录组测序,我们发现了超过 5500 个差异表达基因,其中大多数基因上调。许多差异表达基因参与花色素苷代谢途径。通过定量实时聚合酶链反应(qRT-PCR)研究了 15 个关键基因的表达模式。在这些基因中, 和 是参与花色素苷代谢途径的重要基因,而 、 、 、 、 、 、 、 、 、 、 和 可能是间接调节花色素苷积累的应激反应基因。结果表明,这些基因在 subsp. 的叶片颜色变化中发挥重要作用。本研究将有助于进一步研究叶片颜色变化的分子调控机制,并为彩色叶植物的改良提供参考。

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