茉莉酸甲酯诱导的 bHLH42 通过调节采台的类黄酮代谢相关途径,介导组织特异性花青素积累。

IF 5.4 2区 生物学 Q1 PLANT SCIENCES
Dingyu Zhang, Lixue Sun, Dandan Xi, Xiaofeng Li, Lu Gao, Liming Miao, Yong Luo, Miaomiao Tian, Hongfang Zhu
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引用次数: 0

摘要

花青素是一种对人体健康有益的植物次生代谢物。蔬菜和水果作物的花青素含量是其营养品质的标志。然而,彩泰以及其他甘蓝型油菜品种花青素积累的分子机制,尤其是组织特异性积累的分子机制仍未确定。在本研究中,我们利用彩泰栽培品种的三种叶片和茎的不同颜色性状,进行了转录组比较分析,并分别鉴定了彩泰叶片和茎中花青素生物合成的分子途径。我们的进一步研究表明,MeJA强烈诱导的bHLH42与采台花青素的组织特异性积累密切相关;bHLH42上调黄酮类/花青素生物合成途径基因的表达,激活花青素生物合成途径,重要的是,过表达bHLH42能显著提高采台的花青素含量。我们的分析令人信服地表明,茉莉酸信号诱导的bHLH42在采台花青素的组织特异性积累中发挥了关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methyl jasmonate-induced bHLH42 mediates tissue-specific accumulation of anthocyanins via regulating flavonoid metabolism-related pathways in Caitai.

Anthocyanin is a type of plant secondary metabolite beneficial to human health. The anthocyanin content of vegetable and fruit crops signifies their nutritional quality. However, the molecular mechanism of anthocyanin accumulation, especially tissue-specific accumulation, in Caitai, as well as in other Brassica rapa varieties, remains elusive. In the present study, taking advantage of three kinds of Caitai cultivars with diverse colour traits between leaves and stems, we conducted a comparative transcriptome analysis and identified the molecular pathway of anthocyanin biosynthesis in Caitai leaves and stems, respectively. Our further investigations demonstrate that bHLH42, which is robustly induced by MeJA, closely correlates with tissue-specific accumulation of anthocyanins in Caitai; bHLH42 upregulates the expression of flavonoid/anthocyanin biosynthetic pathway genes to activate anthocyanin biosynthesis pathway, importantly, overexpression of bHLH42 significantly improves the anthocyanin content of Caitai. Our analysis convincingly suggests that bHLH42 induced by jasmonic acid signalling plays a crucial role in tissue-specific accumulation of anthocyanins in Caitai.

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来源期刊
Physiologia plantarum
Physiologia plantarum 生物-植物科学
CiteScore
11.00
自引率
3.10%
发文量
224
审稿时长
3.9 months
期刊介绍: Physiologia Plantarum is an international journal committed to publishing the best full-length original research papers that advance our understanding of primary mechanisms of plant development, growth and productivity as well as plant interactions with the biotic and abiotic environment. All organisational levels of experimental plant biology – from molecular and cell biology, biochemistry and biophysics to ecophysiology and global change biology – fall within the scope of the journal. The content is distributed between 5 main subject areas supervised by Subject Editors specialised in the respective domain: (1) biochemistry and metabolism, (2) ecophysiology, stress and adaptation, (3) uptake, transport and assimilation, (4) development, growth and differentiation, (5) photobiology and photosynthesis.
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