Spices are integral to Kenyan cuisine, adding depth of flavour and aroma to dishes. Information on the levels of macro- and micronutrients in these spices is scarce, as they are sold locally in Kisumu City, Kenya; however, these species have medicinal value. The study reports the trace elements composition of eight selected spices (black pepper, cloves, ginger, cardamom, turmeric, cumin, red chillies, and garlic) sold in two open-air markets in Kisumu City. The trace elemental compositions for Zn, Ca, Fe, S, K, Na, P, Mg, Mn, B, Co, Li, Cu, Pb, and Cd were analysed using inductively coupled plasma-optical emission spectrometry (ICP-OES). Ginger had the highest mean concentrations of most essential elements, K (5767.86 ± 43.44 mg/kg), Mg (4615.36 ± 76.27 mg/kg), B (132.08 ± 0.66 mg/kg), Li (33.52 ± 0.84 mg/kg), Mn (365.29 ± 2.22 mg/kg), and Zn (70.44 ± 0.85 mg/kg), followed by Ca (5290.44 ± 147.34 mg/kg), Na (1361.88 ± 41.01 mg/kg), P (3954.25 ± 122.68 mg/kg), and S (4031.88 ± 106.95 mg/kg), while turmeric had the lowest. The concentrations of macro-elements in spices from the Kibuye market were slightly higher than those from the Jubilee market; however, these differences were not statistically significant (p < 0.05). Concentrations of Pb and Cd heavy metals were detected and reported for all spices in the two markets, although the levels were below the WHO standard; hence, the spices are safe for use as supplements for essential trace elements in addition to their medicinal uses.
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Front Biosci (Elite Ed)
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Department of Life Sciences, GITAM School of Science, Gandhi Institute of Technology and Management, 530045 Visakhapatnam, Andhra Pradesh, India.
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Background: Radon, a colorless and odorless radioactive gas, poses serious health risks. It is the second leading cause of lung cancer and notably increases lung cancer risk in smokers. Although previous epidemiological studies have mainly examined lung cancer rates in miners, the effects of radon on genomic stability and its molecular mechanisms are not well understood.
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December 2024
São Paulo State University (Unesp), Environmental Studies Center (CEA), Rio Claro, SP, Brazil; Postgraduate Program in Geosciences and Environment, Institute of Geosciences and Exact Sciences (IGCE), Rio Claro, SP, Brazil. Electronic address:
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Agricultural Microbiology Laboratory, Brazilian Agricultural Research Corporation Rice and Beans (Embrapa Arroz e Feijão), Santo Antônio de Goiás, Goiás, 75375-000, Brazil.
Rhizobacteria and silicon fertilization synergism suppress leaf and panicle Blast, and mitigates biotic stress in rice plants. Association of bioagents and silicon is synergistic for mitigating leaf and panicle blast and low phosphorus (P) levels in upland rice, under greenhouse conditions. This study aimed to evaluate the potential of the bioagents and silicon interaction on blast disease severity suppression in upland rice plants, under field low P conditions.
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Department of Laboratory Medicine and Pathology, Mayo Clinic, Rochester, MN, USA.
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