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MYB5 样和 bHLH 影响石榴中的类黄酮组成。

MYB5-like and bHLH influence flavonoid composition in pomegranate.

机构信息

Consiglio Nazionale delle Ricerche, Istituto per i Sistemi Agricoli e Forestali del Mediterraneo (CNR-ISAFOM) U.O.S. Catania, Via Empedocle, 58, 95128, Catania, Italy.

Consiglio Nazionale delle Ricerche, Istituto per i Sistemi Agricoli e Forestali del Mediterraneo (CNR-ISAFOM) U.O.S. Catania, Via Empedocle, 58, 95128, Catania, Italy.

出版信息

Plant Sci. 2020 Sep;298:110563. doi: 10.1016/j.plantsci.2020.110563. Epub 2020 Jun 20.

Abstract

The fruit of the pomegranate (Punica granatum L.) is an important nutraceutical food rich in polyphenolic compounds, including hydrolysable tannins, anthocyanins and flavonols. Their composition varies according to cultivar, tissue and fruit development stage and is probably regulated by a combination of MYB and bHLH type transcription factors (TFs). In this study, metabolomics analysis during fruit developmental stages in the main pomegranate cultivars, Wonderful and Valenciana with contrasting colour of their ripe fruits, showed that flavonols were mostly present in flowers while catechins were highest in unripe fruits and anthocyanins in late fruit maturation stages. A novel MYB TF, PgMYB5-like, was identified, which differs from previously isolated pomegranate TFs by unique C-terminal protein motifs and lack of the amino-acid residues conserved among anthocyanins promoting MYBs. In both pomegranate cultivars the expression of PgMYB5-like was high at flowering stage, while it decreased during fruit ripening. A previously identified bHLH-type TF, PgbHLH, also showed high transcript levels at flowering stage in both cultivars, while it showed a decrease in expression during fruit ripening in cv. Valenciana, but not in cv. Wonderful. Functional analysis of both TFs was performed by agro-infiltration into Nicotiana benthamiana leaves. Plants infiltrated with the PgMYB5-like+PgbHLH combined construct showed a specific and significant accumulation of intermediates of the flavonoid pathway, especially dihydroflavonols, while anthocyanins were not produced. Thus, we propose a role for PgMYB5-like and PgbHLH in the first steps of flavonoid production in flowers and in unripe fruits. The expression patterns of these two TFs may be key in determining the differential flavonoid composition in both flowers and fruits of the pomegranate varieties Wonderful and Valenciana.

摘要

石榴(Punica granatum L.)的果实是一种重要的营养保健品,富含多酚类化合物,包括可水解单宁、花青素和类黄酮。它们的组成根据品种、组织和果实发育阶段而变化,可能受到 MYB 和 bHLH 类转录因子(TFs)的组合调控。在这项研究中,对主要石榴品种奇妙和瓦伦西亚在果实发育阶段的代谢组学分析表明,花中主要存在类黄酮,未成熟果实中儿茶素含量最高,晚熟果实中花青素含量最高。鉴定出一种新型 MYB TF,PgMYB5-like,与以前分离的石榴 TF 不同,其 C 端蛋白基序独特,缺乏促进花青素的 MYB 氨基酸残基保守。在这两个石榴品种中,PgMYB5-like 的表达在开花期较高,而在果实成熟过程中逐渐降低。以前鉴定的 bHLH 型 TF,PgbHLH,在两个品种的开花期也表现出高转录水平,而在瓦伦西亚品种的果实成熟过程中表达降低,但在奇妙品种中没有。通过农杆菌浸润到黄花烟叶片中对这两个 TF 进行了功能分析。用 PgMYB5-like+PgbHLH 组合构建体浸润的植物特异性和显著积累了类黄酮途径的中间体,特别是二氢黄酮醇,而不产生花青素。因此,我们提出 PgMYB5-like 和 PgbHLH 在花和未成熟果实中黄酮类生物合成的第一步中起作用。这两个 TF 的表达模式可能是决定奇妙和瓦伦西亚石榴品种花和果实中差异黄酮组成的关键。

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