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非生物胁迫诱导的芸苔属植物次生代谢产物生成:机遇与挑战

Abiotic stress-induced secondary metabolite production in Brassica: opportunities and challenges.

作者信息

Muthusamy Muthusamy, Lee Soo In

机构信息

Department of Agricultural Biotechnology, National Institute of Agricultural Sciences (NAS), Rural Development Administration, Jeonju, Republic of Korea.

出版信息

Front Plant Sci. 2024 Jan 4;14:1323085. doi: 10.3389/fpls.2023.1323085. eCollection 2023.

Abstract

Over the decades, extensive research efforts have been undertaken to understand how secondary plant metabolites are affected by genetic, environmental, and agronomic factors. Understanding the genetic basis of stress-response metabolite biosynthesis is crucial for sustainable agriculture production amidst frequent occurrence of climatic anomalies. Although it is known that environmental factors influence phytochemical profiles and their content, studies of plant compounds in relation to stress mitigation are only emerging and largely hindered by phytochemical diversities and technical shortcomings in measurement techniques. Despite these challenges, considerable success has been achieved in profiling of secondary metabolites such as glucosinolates, flavonoids, carotenoids, phenolic acids and alkaloids. In this study, we aimed to understand the roles of glucosinolates, flavonoids, carotenoids, phenolic acids and alkaloids in relation to their abiotic stress response, with a focus on the developing of stress-resilient crops. The focal genus is the Brassica since it (i) possesses variety of specialized phytochemicals that are important for its plant defense against major abiotic stresses, and (ii) hosts many economically important crops that are sensitive to adverse growth conditions. We summarize that augmented levels of specialized metabolites in Brassica primarily function as stress mitigators against oxidative stress, which is a secondary stressor in many abiotic stresses. Furthermore, it is clear that functional characterization of stress-response metabolites or their genetic pathways describing biosynthesis is essential for developing stress-resilient Brassica crops.

摘要

几十年来,人们进行了广泛的研究,以了解植物次生代谢产物如何受到遗传、环境和农艺因素的影响。了解应激反应代谢物生物合成的遗传基础,对于在气候异常频繁发生的情况下实现可持续农业生产至关重要。尽管已知环境因素会影响植物化学特征及其含量,但有关植物化合物与减轻胁迫关系的研究才刚刚兴起,并且在很大程度上受到植物化学多样性和测量技术技术缺陷的阻碍。尽管存在这些挑战,但在对芥子油苷、黄酮类化合物、类胡萝卜素、酚酸和生物碱等次生代谢物进行分析方面已经取得了相当大的成功。在本研究中,我们旨在了解芥子油苷、黄酮类化合物、类胡萝卜素、酚酸和生物碱在非生物胁迫反应中的作用,重点是培育抗逆作物。重点研究的属是芸苔属,因为它(i)拥有多种特殊的植物化学物质,这些物质对其抵御主要非生物胁迫的植物防御很重要,并且(ii)种植了许多对不利生长条件敏感的重要经济作物。我们总结认为,芸苔属中特殊代谢物水平的提高主要起到减轻氧化应激的作用,氧化应激是许多非生物胁迫中的一种次生胁迫因素。此外,很明显,应激反应代谢物或其描述生物合成的遗传途径的功能表征对于培育抗逆芸苔属作物至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c7d/10794482/214f216b145f/fpls-14-1323085-g001.jpg

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