The lack of effective methods to reduce cadmium
Research gap analysis derived from 3 agriculture papers in our local library.
The gap
The lack of effective methods to reduce cadmium accumulation in rice. The need for sustainable and environmentally friendly approaches to mitigate Cd bioavailability in soil.
Evidence profile
Sourced from the abstract and stated research gap of the source papers, classified as general, spanning 3 journals. Those papers have been cited 1 times in total.
Research trend
Established — well-defined area with open sub-problems.
Supporting evidence — 3 representative gaps
- Exposure to arsenic and cadmium promotes conjugative transfer of plasmid-borne antibiotic resistance genes among soil microbiota (2026) · Ecotoxicology and Environmental Safety · doi
While cadmium (Cd) is known to influence ARG transfer in pure cultures, the effects of arsenic (As) and As-Cd co-exposure on plasmid-mediated conjugation, especially in soil, remain unclear.
generalabstractevidence 5/5Keywords: cadmium known influence transfer pure cultures effects arsenic exposure plasmid mediated conjugation especially soil remain - Swine wastewater-cultivated Chlorella sorokiniana reduces cadmium accumulation in rice grown on contaminated paddy soil (2026) · Scientific Reports · cited 1× · doi
The lack of effective methods to reduce cadmium accumulation in rice. The need for sustainable and environmentally friendly approaches to mitigate Cd bioavailability in soil.
generalstated research gapevidence 5/5Keywords: lack effective methods reduce cadmium accumulation rice need - Manganese and selenium co-application synergistically mitigates cadmium and arsenic accumulation in rice (Oryza sativa L.) by modulating element diffusion and bacterial network stability (2026) · Plant and Soil · doi
Although manganese (Mn) and selenium (Se) have been individually reported to mitigate Cd or As accumulation in plants, their combined effects on Cd-As co-contaminated systems remain poorly understood, particularly through mineral-element migration-microbial co-regulation.
generalabstractevidence 2/5Keywords: manganese selenium individually reported mitigate accumulation plants combined effects contaminated systems remain poorly understood particularly
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