Article
Untying arsenite tolerance mechanisms in contrasting maize genotypes attributed to NIPs-mediated controlled influx and root-to-shoot translocation, redox homeostasis and phytochelatin-mediated detoxification pathway.
Chemosphere - 1 Aug 2024
Saha Shrabani, Adhikari Ayan, Ghosh Pratyush Kanti, Shaw Arun Kumar, Roy Doyel, Choubey Sampad, Basuli Debapriya, Tarafder Mrinmay, Roy Sankhajit, Hossain Zahed
Abstract excerpt
Contamination of ground water and soil with toxic metalloids like arsenic (As) poses a serious hazard to the global agricultural food production. One of the best ways to restrict entry of As into the food chain is selection of germplasms which accrue extremely low level of As in grains. Here, we screened diverse maize genotypes under high arsenite (100 μM AsIII) stress and identified PMI-PV-9 and PMI-PV-3 as...
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