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Improving the nutraceutical content of tomato (Lycopersicon esculentum) by advanced environmental conditions and agricultural practices


Article Information

Title: Improving the nutraceutical content of tomato (Lycopersicon esculentum) by advanced environmental conditions and agricultural practices

Authors: Alia Anwar, Muhammad Ashfaq, Sadaf Habib, Muhammad Shafiq Ahmad, Hafiz Sabah-Ud-Din Mazhar, Ralf Müller-Xing, Muhammad Arshad Javed

Journal: Advancements in Life Sciences

HEC Recognition History
Category From To
X 2023-07-01 2024-09-30
X 2022-07-01 2023-06-30
Y 2021-07-01 2022-06-30
Y 2020-07-01 2021-06-30

Publisher: Centre of Excellence in Molecular Biology

Country: Pakistan

Year: 2025

Volume: 12

Issue: 1

Language: en

DOI: 10.62940/als.v12i1.1725

Categories

Abstract

The consumption of tomatoes has been associated with diminishing the risk of several lethal diseases, e.g., heart attack and cancer. This is because tomato contains high antioxidants that have been shown to protect against oxidative damage in numerous empirical and epidemiological studies .  Considering the health benefits, more emphasis should be given to produce organic tomatoes. Tomatoes have been ranked as the most important fruit and vegetable in Western diets as essential source of antioxidants such as lycopene,  β -carotene, phenols, vitamin E, and vitamin C .  Environmental conditions and agricultural practices are key factors that affect the quantities of these compounds available in tomato. Therefore, controlling the environmental conditions, such as water availability, temperature, light, saline soil, and agricultural practices (fertilization practices, harvesting, and food storage) are valuable tools to enhance the nutritional value of tomato fruits organically. Although, the quantitative and qualitative contents of health-promoting compounds in vegetables and fruits depend on their genetic predispositions. Agricultural practices and different environmental condition have broad effects on the nutraceutical compounds. Thus, this present study emphasizes on enhancing tomato nutrition through improved agricultural practices and optimized farming, especially in saline and water-deficit conditions. This organic-oriented strategy may counteract the scepticism caused by genetically modified tomatoes (GMOs) and will prompt further exploration in future studies. Keywords: Organic grown tomato; Antioxidants; Nutritional values; Salinity; Water deficit; Temperature; Agricultural practices; Fertilization   


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