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通过转录组和代谢组分析相结合鉴定甜樱桃中光诱导花青素积累的潜在调控基因。

Potential regulatory genes of light induced anthocyanin accumulation in sweet cherry identified by combining transcriptome and metabolome analysis.

作者信息

Zhang Yao, Chen Chaoqun, Cui Yiling, Du Qinsong, Tang Wenjing, Yang Wenlong, Kou Guanqiong, Tang Wanjia, Chen Hongxu, Gong Ronggao

机构信息

College of Horticulture, Sichuan Agricultural University, Chengdu, China.

出版信息

Front Plant Sci. 2023 Aug 16;14:1238624. doi: 10.3389/fpls.2023.1238624. eCollection 2023.

Abstract

Anthocyanins exist widely in various plant tissues and organs, and they play an important role in plant reproduction, disease resistance, stress resistance, and protection of human vision. Most fruit anthocyanins can be induced to accumulate by light. Here, we shaded the "Hong Deng" sweet cherry and performed an integrated analysis of its transcriptome and metabolome to explore the role of light in anthocyanin accumulation. The total anthocyanin content of the fruit and two of its anthocyanin components were significantly reduced after the shading. Transcriptome and metabolomics analysis revealed that and other structural genes of the anthocyanin pathway and cyanidin 3-O-glucoside, cyanidin 3-O-rutinoside, and other metabolites were significantly affected by shading. Weighted total gene network analysis and correlation analysis showed that the upstream and middle structural genes , and of anthocyanin biosynthesis may be the key genes affecting the anthocyanin content variations in fruits after light shading. Their expression levels may be regulated by transcription factors such as , and . This study revealed for the first time the possible role of , and other transcription factors in the light-induced anthocyanin accumulation of sweet cherry, thereby laying a preliminary foundation for further research on the role of light in anthocyanin accumulation of deep red fruit varieties and the genetic breeding of sweet cherry.

摘要

花青素广泛存在于各种植物组织和器官中,在植物繁殖、抗病性、抗逆性以及保护人类视力方面发挥着重要作用。大多数果实中的花青素可被光诱导积累。在此,我们对“红灯”甜樱桃进行遮光处理,并对其转录组和代谢组进行综合分析,以探究光在花青素积累中的作用。遮光处理后果实的总花青素含量及其两种花青素成分显著降低。转录组和代谢组学分析表明,花青素途径的 以及其他结构基因和花青素-3-O-葡萄糖苷、花青素-3-O-芸香糖苷等代谢产物受遮光影响显著。加权基因共表达网络分析和相关性分析表明,花青素生物合成的上游和中间结构基因 、 和 可能是影响遮光后果实花青素含量变化的关键基因。它们的表达水平可能受 、 和 等转录因子调控。本研究首次揭示了 、 和 等转录因子在甜樱桃光诱导花青素积累中的可能作用,从而为进一步研究光在深红色果实品种花青素积累中的作用以及甜樱桃的遗传育种奠定了初步基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39e5/10469515/166596567b81/fpls-14-1238624-g001.jpg

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