Plant Metabolomics: An Overview of the Role of Primary and Secondary Metabolites against Different Environmental Stress Factors
Метаболомика растений: обзор роли первичных и вторичных метаболитов в ответе на различные факторы окружающей среды
2023-03-06
SCID: 54.1/nf56msbf
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abiotic stressosmoprotectantsplant metabolomicsprimary metabolitessecondary metabolites
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Abstract (AI)
Several environmental stresses, including biotic and abiotic factors, adversely affect the growth and development of crops, thereby lowering their yield. However, abiotic factors, e.g., drought, salinity, cold, heat, ultraviolet radiations (UVr), reactive oxygen species (ROS), trace metals (TM), and soil pH, are extremely destructive and decrease crop yield worldwide. It is expected that more than 50% of crop production losses are due to abiotic stresses. Moreover, these factors are responsible for physiological and biochemical changes in plants. The response of different plant species to such stresses is a complex phenomenon with individual features for several species. In addition, it has been shown that abiotic factors stimulate multi-gene responses by making modifications in the accumulation of the primary and secondary metabolites. Metabolomics is a promising way to interpret biotic and abiotic stress tolerance in plants. The study of metabolic profiling revealed different types of metabolites, e.g., amino acids, carbohydrates, phenols, polyamines, terpenes, etc, which are accumulated in plants. Among all, primary metabolites, such as amino acids, carbohydrates, lipids polyamines, and glycine betaine, are considered the major contributing factors that work as osmolytes and osmoprotectants for plants from various environmental stress factors. In contrast, plant-derived secondary metabolites, e.g., phenolics, terpenoids, and nitrogen-containing compounds (alkaloids), have no direct role in the growth and development of plants. Nevertheless, such metabolites could play a significant role as a defense by protecting plants from biotic factors such as herbivores, insects, and pathogens. In addition, they can enhance the resistance against abiotic factors. Therefore, metabolomics practices are becoming essential and influential in plants by identifying different phytochemicals that are part of the acclimation responses to various stimuli. Hence, an accurate metabolome analysis is important to understand the basics of stress physiology and biochemistry. This review provides insight into the current information related to the impact of biotic and abiotic factors on variations of various sets of metabolite levels and explores how primary and secondary metabolites help plants in response to these stresses.
Key Findings
1
Abiotic stress responses are species-specific and involve multigene regulation of primary and secondary metabolite accumulation.
2
Abiotic stresses—including drought, salinity, temperature extremes, UV radiation, ROS, trace metals, and soil pH—cause major physiological changes and more than 50% of global crop-production losses.
3
Metabolomics identifies stress-associated metabolites such as amino acids, carbohydrates, phenols, polyamines, terpenes, lipids, and glycine betaine.
4
Primary metabolites, including amino acids, carbohydrates, lipids, polyamines, and glycine betaine, function as osmolytes and osmoprotectants during environmental stress.
5
Secondary metabolites, particularly phenolics, terpenoids, and alkaloids, provide defense against herbivores, insects, and pathogens and can also enhance abiotic-stress resistance.
Research Object
Plants and crops exposed to biotic and abiotic environmental stresses
Research Subject
The roles and stress-response accumulation patterns of primary and secondary metabolites in plant acclimation and resistance
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2023-03-06
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