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Malabar spinach ( L.) is a leafy green vegetable rich in betalains, and is found in its fruit. It is also rich in bioactive and antioxidant compounds. This study investigated the potential use of malabar spinach fruit extract (MSFE) at four concentrations (T = 0 μL (control), T = 500 μL, T = 1000 μL, and T = 2000 μL) in yogurt as a natural colorant during 21 days of refrigerated storage. The pH and syneresis of the MSFE-containing yogurt significantly decreased ( < 0.05). Moreover, the total soluble solids, viscosity, and titratable acidity increased ( < 0.05) in a dose-dependent manner and maintained a similar pattern upon storage. Furthermore, compared with the control yogurt, the MSFE-treated yogurt exhibited higher total phenolic content (29.97 mg GAE/100 g DM, T) and total flavonoid content (6.72 mg QE/100 g DM, T) as well as increased antioxidant activity (15.47%, T). Higher MSFE levels significantly reduced ( < 0.05) the initial total plate count from 520.5 × 10 CFU/g (T) to 118.7 × 10 CFU/g (T). However, bacterial proliferation led to an increase in the total plate count during storage. MSFE significantly enhanced ( < 0.05) yogurt color properties, with T resulting in the highest betalain content (2.776 mg/L). The betalain content slightly decreased ( < 0.05) after 14 days but regenerated by the end of the storage period. Nevertheless, MSFE exhibited acceptable color stability over a wide pH range during storage. These findings suggest that MSFE is a viable natural colorant for yogurt, offering improved nutrition and consumer appeal, which was further confirmed by principal component analysis (PCA).
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http://dx.doi.org/10.1002/fsn3.70710 | DOI Listing |
Malabar spinach ( L.) is a leafy green vegetable rich in betalains, and is found in its fruit. It is also rich in bioactive and antioxidant compounds.
View Article and Find Full Text PDFNPJ Microgravity
July 2025
Department of Civil and Environmental Engineering, the Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong SAR, China.
Cultivating plants in outer space is crucial for bioregenerative life support systems in human space exploration. This study aims to investigate the effects of soil conditioning with biochar and hydrochar on the growth and production of Malabar Spinach in microgravity conditions. Peanut shell biochar and wood hydrochar were applied at a 3% dosage by mass.
View Article and Find Full Text PDFEnviron Sci Process Impacts
July 2025
Department of Chemistry, University of Dhaka, Dhaka 1000, Bangladesh.
In order to investigate the level of radioactivity and translocation of radionuclides from soil to plants, fifteen agricultural soil and fifteen edible plant samples grown in soils were collected from Barapukuria coal mining area, Bangladesh. The physicochemical properties (pH, EC, %OC, %OM, %N, %P, and N/P) were evaluated and the XRD patterns of soil samples were obtained. The gamma activity of U, Th, and K in soil and plant samples was analyzed by gamma-ray spectroscopy with an HPGe detector.
View Article and Find Full Text PDFData Brief
June 2025
Department of Computer Science and Engineering, Daffodil International University, Dhaka, Bangladesh.
This study focuses on the urgent need to increase detection of diseases in Malabar Spinach, a valuable leaf vegetable crop which is at risk from several disease types including Anthracous leaf spot and Straw mite infestation. There is still a lack of research focused on Malabar spinach, although advances in machine vision have considerably increased the detection of largescale crop diseases. By developing and evaluating machine vision algorithms specifically designed for accurate detection of diseases in Malabar spinach, this research aims to fill this gap.
View Article and Find Full Text PDFData Brief
February 2025
Multidisciplinary Action Research Laboratory, Department of Computer Science and Engineering, Daffodil International University, Birulia, Dhaka 1216, Bangladesh.
Agriculture has always played a vital role in the economic development of Bangladesh. In Agriculture, leaf diseases have become an issue because they can lead to a major drop in both quality and quantity of crops. Therefore, leveraging technology to automatically detect diseases on leaves plays an important role in farming.
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