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首页> 外文期刊>African Journal of Agricultural Research >Plant secondary metabolites and its dynamical systems of induction in response to environmental factors: A review
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Plant secondary metabolites and its dynamical systems of induction in response to environmental factors: A review

机译:植物对次生代谢产物及其动力学系统的响应环境因素:综述。

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Under natural conditions, the plants are, usually, surrounded by a series of potential enemies. They had created strategies of defense against pathogens and herbivores' attacks, allowing its perpetuation throughout evolution. These defense mechanisms are closely associated with the synthesis of secondary metabolites, which are also worldwide used in several areas of industry. This bibliographic review was conducted aiming to better understand how plants synthesize these substances in response to biotic or abiotic stimuli. The results discussed here revealed that synthesis of plant secondary metabolites is dependent on changes in several metabolic pathways, being often directly associated with the primary metabolism. Injury by herbivores or pathogens, temperature, CO2 levels, solar radiation and drought, are the factors related to the environment that express the most significant signs of inhibition or synthesis of plant secondary metabolites. Global climatic changes recently observed can affect the metabolic pathways network and, consequently, secondary metabolites synthesis. Nowadays, genomic tools have been useful alternatives that are leading to a new revolution of plant breeding, allowing the overexpression or inhibition of these substances. Some limitations and challenges to be achieved upon the dynamics of secondary metabolite synthesis in plants are presented.
机译:在自然条件下,植物通常被一系列潜在的敌人包围。他们制定了防御病原体和食草动物攻击的策略,使其在整个进化过程中得以永存。这些防御机制与次生代谢产物的合成密切相关,次生代谢产物也在世界范围内的多个工业领域中使用。进行本书目审查旨在更好地了解植物如何响应生物或非生物刺激来合成这些物质。此处讨论的结果表明,植物次生代谢产物的合成取决于几种代谢途径的变化,这些变化通常与一次代谢直接相关。草食动物或病原体的伤害,温度,CO2水平,太阳辐射和干旱是与环境有关的因素,这些因素表现出植物次生代谢产物抑制或合成的最显着迹象。最近观察到的全球气候变化会影响代谢途径网络,从而影响次级代谢产物的合成。如今,基因组工具已成为有用的替代方法,这些方法正在引发植物育种的新革命,从而允许这些物质的过表达或抑制。提出了植物中次级代谢产物合成动力学的一些限制和挑战。

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