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Aditi Raj

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Conference Open access 2026

Phytochemical profiling and heavy metal accumulation in organic and local market food crops: Principal Component Analysis (PCA) - based comparative evaluation

This study explores the bioactive compounds in five vegetables, namely Indian mustard ( Brassica juncea ), lettuce ( Lactuca sativa ), spinach ( Spinacia oleracea ), cabbage ( Brassica oleracea L. var. capitata ), curry leaves ( Murraya koenigii ), one underutilized fruit, Indian gooseberry ( Phyllanthus emblica ), and one agricultural waste, rice stubble ( Oryza sativa L. ), obtained from organic sources and a local market in Ghaziabad, India, to evaluate their nutritional significance. These samples were analysed on the basis of their moisture, ash, chlorophyll, carotenoid, flavonoid, and eavy metal contents. It was observed that lettuce had the highest moisture content i.e. > 94%. Rice stubble had the highest ash content (14.26%), whereas Indian gooseberry had the lowest (< 0.9%). Organic mustard had the highest chlorophyll content i.e. 1.89 mg mL⁻¹, whereas organic curry leaves had the highest carotenoid content (0.50 mg mL⁻¹). Indian gooseberry had the highest phenolic compounds as well as flavonoid content. The study is one of the first to use a combined ICP-MS - PCA approach to jointly benchmark heavy metal and bioactive profiles across organic versus market source produce. Heavy metal concentrations in both organic and market vegetable samples were within allowable limits, confirming overall food safety. However, an integrated ICP-MS and PCA framework revealed that organic samples had a slightly lower trace elemental baseline and marginally higher bioactive compound content than market crops, with both categories remaining largely comparable in terms of composition and quality.

Aditi Raj, P. Gauba, Ekta Bhatt · 0 citations
Review Open access Jul 2026

Barnyard millet (Echinochloa species): an underutilized nutritional powerhouse with emerging nutraceutical benefits

The impact of climate change presents an opportunity for orphan crops like millet to contribute to sustainable food systems. A prime example of an orphan crop with special traits and the potential to develop climate-smart agriculture is Barnyard millet (BYM). Alkaloids, steroids, polysaccharides, glycosides, tannins, phenols, dietary lignans and flavonoids are just a few of the antioxidants that are abundant in BYM. BYM’s antioxidant potential, prebiotic status, anti-inflammatory, hypoglycemic, antibacterial and anticancerous properties help it to combat a myriad of diseases. The antinutritional compounds present in BYM such phytic acid, tannins, polyphenols, and amylase inhibitors limit the absorption of minerals because they form complexes with dietary minerals like calcium, zinc, magnesium, and iron and make them inaccessible for absorption. Various processing methods like dehulling, soaking, heating, gamma irradiation, cold plasma processing, fermentation might enhance the nutritional and technological functional qualities of BYM. The bioactives in BYM can improve their bioavailability, in vitro digestibility, efficiency, structural modification and stability by biological processing techniques such as germination and fermentation employing microbial strains. BYM straw’s high cellulose and hemicellulose percentage makes C5 and C6 sugars accessible for bioconversion into bioethanol.

M. Sasi, Veda Krishnan, Ramesh M. Naik et al. · 0 citations

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