Please use this identifier to cite or link to this item: https://doi.org/10.1371/journal.pone.0176357
Title: Morpho-physiological analysis of tolerance to aluminum toxicity in rice varieties of North East India
Authors: Awasthi J.P.
Saha B.
Regon P.
Sahoo S.
Chowra U.
Pradhan A.
Roy A.
Panda S.K. 
Keywords: aluminum
glutathione reductase
aluminum
hemin
hydrogen peroxide
superoxide
water
aluminum overload
aluminum tolerance
Article
concentration (parameters)
contamination
controlled study
crop
growth inhibition
histochemistry
hybridization
India
lipid peroxidation
nonhuman
nutrient
plant physiology
plant root
plant structures
productivity
rice
water transport
Western blotting
biomass
cell membrane
drug effects
gene expression regulation
genetics
genotype
metabolism
Oryza
physiological stress
physiology
transport at the cellular level
Aluminum
Biological Transport
Biomass
Cell Membrane
Gene Expression Regulation, Plant
Genotype
Hemin
Hydrogen Peroxide
India
Lipid Peroxidation
Oryza
Plant Roots
Stress, Physiological
Superoxides
Water
Issue Date: 2017
Publisher: Public Library of Science
Citation: Awasthi J.P., Saha B., Regon P., Sahoo S., Chowra U., Pradhan A., Roy A., Panda S.K. (2017). Morpho-physiological analysis of tolerance to aluminum toxicity in rice varieties of North East India. PLoS ONE 12 (4) : e0176357. ScholarBank@NUS Repository. https://doi.org/10.1371/journal.pone.0176357
Abstract: Aluminum (Al) is the third most abundant metal in earth crust, whose chemical form is mainly dependent on soil pH. The most toxic form of Al with respect to plants is Al , which exists in soil pH <5. Acidic soil significantly limits crop production mainly due to Al toxicity worldwide, impacting approximately 50% of the world's arable land (in North-Eastern India 80% soil are acidic). Al toxicity in plants ensues root growth inhibition leading to less nutrient and water uptake impacting crop productivity as a whole. Rice is one of the chief grains which constitutes the staple food of two-third of the world population including India and is not untouched by Al toxicity. Al contamination is a critical constraint to plant production in agricultural soils of North East India. 24 indigenous Indica rice varieties (including Badshahbhog as tolerant check and Mashuri as sensitive check) were screened for Al stress tolerance in hydroponic plant growth system. Results show marked difference in growth parameters (relative growth rate, Root tolerance index, fresh and dry weight of root) of rice seedlings due to Al (100 ?M) toxicity. Al uptake and lipid peroxidation level also increased concomitantly under Al treatment. Histochemical assay were also performed to elucidate uptake of aluminum, loss of membrane integrity and lipid peroxidation, which were found to be more in sensitive genotypes at higher Al concentration. This study revealed that aluminum toxicity is a serious harmful problem for rice crop productivity in acid soil. Based on various parameters studied it's concluded that Disang is a comparatively tolerant variety whereas Joymati a sensitive variety. Western blot hybridization further strengthened the claim, as it demonstrated more accumulation of Glutathione reductase (GR) protein in Disang rice variety than Joymati under stressed condition. This study also observed that the emergence of lethal toxic symptoms occurs only after 48h irrespective of the dose used in the study. � 2017 Awasthi et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
Source Title: PLoS ONE
URI: https://scholarbank.nus.edu.sg/handle/10635/166035
ISSN: 19326203
DOI: 10.1371/journal.pone.0176357
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