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探索植物中脱落类胡萝卜素代谢途径的多样性与调控

Exploring the Diversity and Regulation of Apocarotenoid Metabolic Pathways in Plants.

作者信息

Zheng Xiongjie, Yang Yu, Al-Babili Salim

机构信息

The BioActives Lab, Center for Desert Agriculture (CDA), Biological and Environment Science and Engineering (BESE), King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

出版信息

Front Plant Sci. 2021 Dec 10;12:787049. doi: 10.3389/fpls.2021.787049. eCollection 2021.

Abstract

In plants, carotenoids are subjected to enzyme-catalyzed oxidative cleavage reactions as well as to non-enzymatic degradation processes, which produce various carbonyl products called apocarotenoids. These conversions control carotenoid content in different tissues and give rise to apocarotenoid hormones and signaling molecules, which play important roles in plant growth and development, response to environmental stimuli, and in interactions with surrounding organisms. In addition, carotenoid cleavage gives rise to apocarotenoid pigments and volatiles that contribute to the color and flavor of many flowers and several fruits. Some apocarotenoid pigments, such as crocins and bixin, are widely utilized as colorants and additives in food and cosmetic industry and also have health-promoting properties. Considering the importance of this class of metabolites, investigation of apocarotenoid diversity and regulation has increasingly attracted the attention of plant biologists. Here, we provide an update on the plant apocarotenoid biosynthetic pathway, especially highlighting the diversity of the enzyme carotenoid cleavage dioxygenase 4 (CCD4) from different plant species with respect to substrate specificity and regioselectivity, which contribute to the formation of diverse apocarotenoid volatiles and pigments. In addition, we summarize the regulation of apocarotenoid metabolic pathway at transcriptional, post-translational, and epigenetic levels. Finally, we describe inter- and intraspecies variation in apocarotenoid production observed in many important horticulture crops and depict recent progress in elucidating the genetic basis of the natural variation in the composition and amount of apocarotenoids. We propose that the illustration of biochemical, genetic, and evolutionary background of apocarotenoid diversity would not only accelerate the discovery of unknown biosynthetic and regulatory genes of bioactive apocarotenoids but also enable the identification of genetic variation of causal genes for marker-assisted improvement of aroma and color of fruits and vegetables and CRISPR-based next-generation metabolic engineering of high-value apocarotenoids.

摘要

在植物中,类胡萝卜素会经历酶催化的氧化裂解反应以及非酶促降解过程,这些过程会产生各种称为脱辅基类胡萝卜素的羰基产物。这些转化过程控制着不同组织中的类胡萝卜素含量,并产生脱辅基类胡萝卜素激素和信号分子,它们在植物生长发育、对环境刺激的响应以及与周围生物体的相互作用中发挥着重要作用。此外,类胡萝卜素裂解会产生脱辅基类胡萝卜素色素和挥发物,这些物质赋予了许多花朵和一些果实颜色和风味。一些脱辅基类胡萝卜素色素,如藏红花素和胭脂树橙,在食品和化妆品工业中被广泛用作着色剂和添加剂,并且还具有促进健康的特性。鉴于这类代谢物的重要性,对脱辅基类胡萝卜素多样性和调控的研究越来越受到植物生物学家的关注。在此,我们提供了关于植物脱辅基类胡萝卜素生物合成途径的最新进展,特别强调了来自不同植物物种的类胡萝卜素裂解双加氧酶4(CCD4)在底物特异性和区域选择性方面的多样性,这有助于形成多样的脱辅基类胡萝卜素挥发物和色素。此外,我们总结了脱辅基类胡萝卜素代谢途径在转录、翻译后和表观遗传水平上的调控。最后,我们描述了在许多重要园艺作物中观察到的脱辅基类胡萝卜素产生的种间和种内变异,并阐述了在阐明脱辅基类胡萝卜素组成和含量自然变异的遗传基础方面的最新进展。我们认为,阐明脱辅基类胡萝卜素多样性的生化、遗传和进化背景,不仅将加速发现生物活性脱辅基类胡萝卜素未知的生物合成和调控基因,还将有助于识别因果基因的遗传变异,用于标记辅助改良水果和蔬菜的香气和颜色,以及基于CRISPR的高价值脱辅基类胡萝卜素下一代代谢工程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/162b/8702529/e49b445b345f/fpls-12-787049-g001.jpg

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