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1.
Ecotoxicol Environ Saf ; 80: 145-51, 2012 Jun.
Article in English | MEDLINE | ID: mdl-22425734

ABSTRACT

Rice consumption is one of the major pathways for As intake in populations that depend on a rice diet in several countries of South and South-east Asia. Pot experiments were undertaken to investigate the effects of water management (WM), arsenic (As) contaminated soil-water and Phosphorus (P) rates on As uptake in rice plants. There were 18 treatments comprising of three each of As rates (0, 20 and 40 mg kg(-1) soil) and P rates (0, 12.5 and 25 mg kg(-1) soil) and two WM (aerobic and anaerobic) strategies on winter (boro var. BRRI dhan 29) and monsoon (aman var. BRRI dhan 32) rice at the Wheat Research Center (WRC), Nashipur, Dinajpur, Bangladesh. Arsenic concentrations in rice grain and straw increased significantly (P ≤ 0.01) with the increasing As rates in the soil. Arsenic availability in soil pore-water solution was less (58%) under aerobic WM (redox potential-Eh=+135 to +138 mV; pH-6.50 at 24.3 °C) as compared to anaerobic WM (flooded: Eh=-41 to -76 mV; pH-6.43 at 23 °C). The highest total grain As content 2.23 ± 0.12 mg kg(-1) and 0.623 ± 0.006 mg kg(-1) was found in T(6) (P(12.5)As(40)-anaerobic) and T(9) (P(25)As(40)-anaerobic) in BRRI dhan 29 and BRRI dhan 32, respectively, which was significantly higher (41-45%) than in the same As and P treatments for pots under aerobic WM. The As content in rice straw (up to 24.7 ± 0.49 ppm in BRRI dhan 29, 17.3 ± 0.49 mg kg(-1) in BRRI dhan 32 with the highest As level) suggested that As can more easily be translocated to the shoots under anaerobic conditions than aerobic condition. BRRI dhan 29 was more sensitive to As than BRRI dhan 32. Under aerobic WM, P soil amendments reduced As uptake by rice plants. The study demonstrated that aerobic water management along with optimum P amendment and selection of arsenic inefficient rice varieties are appropriate options that can be applied to minimize As accumulation in rice which can reduce effects on human and cattle health risk as well as soil contamination.


Subject(s)
Arsenic/metabolism , Oryza/metabolism , Soil Pollutants/metabolism , Water Pollutants, Chemical/metabolism , Agriculture/methods , Animals , Arsenic/analysis , Bangladesh , Cattle , Conservation of Natural Resources , Environmental Monitoring , Floods , Food Contamination/analysis , Food Contamination/statistics & numerical data , Humans , Oryza/growth & development , Phosphorus/metabolism , Phosphorus/pharmacology , Risk Assessment , Seasons , Soil/chemistry , Soil Pollutants/analysis , Water Pollutants, Chemical/analysis
2.
Ecotoxicol Environ Saf ; 74(4): 834-9, 2011 May.
Article in English | MEDLINE | ID: mdl-21146217

ABSTRACT

High arsenic (As) concentrations in soil may lead to elevated concentrations of arsenic in agricultural products. Field experiments were conducted to examine the effects of water management (WM) and Phosphorus (P) rates on As uptake, rice growth, yield and yield attributes of winter (boro) and monsoon (aman) rice in an As contaminated soil-water at Gobindagonj, Gaibandha, Bangladesh in 2004 and 2005. Significantly, the highest average grain yields (6.88±0.07 t ha(-1) in boro 6.38±0.06 t ha(-1) in aman) were recorded in permanent raised bed (PRB; aerobic WM: Eh=+360 mV) plus 100% P amendment. There was a 12% yield increase over conventional till on flat (CTF; anaerobic WM: Eh=-56 mV) at the same P level. In boro, the As content in grain and As content in straw were about 3 and 6 times higher in CTF compared to PRB, respectively. The highest total As content (0.646±0.01 ppm in grain and 10.93±0.19 ppm in straw) was recorded under CTF, and the lowest total As content (0.247±0.01 and 1.554±0.09 ppm in grain and straw, respectively) was recorded under PRB (aerobic WM). The results suggest that grain and straw As are closely associated in boro rice. The furrow irrigation approach of the PRB treatments consistently reduced irrigation input by 29-31% for boro and 27-30% for aman rice relative to CTF treatments in 2004 and 2005, respectively, thus reducing the amount of As added to the soil from the As-contaminated irrigation water. Yearly, 30% less As was deposited to the soil compared to CTF system through irrigation water during boro season. High As concentrations in grain and straw in rice grown using CTF in the farmers' field, and the fact that using PRB reduced grain As concentrations to value less than half of the proposed food hygiene standard.


Subject(s)
Agriculture/methods , Arsenic/metabolism , Oryza/metabolism , Soil Pollutants/metabolism , Water Pollutants, Chemical/metabolism , Arsenic/analysis , Bangladesh , Conservation of Natural Resources/methods , Environmental Monitoring , Food Contamination/prevention & control , Fresh Water/chemistry , Oryza/growth & development , Phosphates/analysis , Phosphorus/analysis , Phosphorus/metabolism , Seasons , Soil/chemistry , Water Supply
3.
J Trop Pediatr ; 45(5): 291-3, 1999 10.
Article in English | MEDLINE | ID: mdl-10584471

ABSTRACT

To understand nutritional rickets in Bangladesh better, 14 rachitic and 13 'unaffected' children were evaluated. Seventy per cent of children with active rickets had no evidence of either vitamin D deficiency or familial rickets. Rickets in Bangladesh is probably related to calcium deficiency. Abnormalities in 'unaffected' children suggest that subclinical calcium insufficiency is common.


Subject(s)
Rickets/etiology , Bangladesh , Calcium/deficiency , Child , Child, Preschool , Female , Humans , Infant , Male , Vitamin D Deficiency
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