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Heavy Metal Index

Evaluation of the responses of contrasting

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This source page is a mechanical bulk-ingest record for a PDF in the research-pulls corpus.

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Cited by3 pages
Metals measured1
Evidence tierB
Year2025

Overview

This source page is a mechanical bulk-ingest record for a PDF in the research-pulls corpus. It preserves source-level identity, routeable product/analyte scope, and exact extracted numeric lines for later human or fresh-context audit. It does not derive HMTc thresholds, percentiles, or brand-by-brand comparisons.

Key numbers

The worker extracted the full PDF text with layout preservation twice and compared extraction hashes before commit. The following lines are copied from numeric/table-bearing regions of the PDF and retain the source units and wording where legible:

  • taminated soils. Thus, locally adaptable appropriate rice germination percentage varied from 60%-100% in con-
  • genotypes could be a feasible and a low cost approach. trol, 56%-100% at 25 µM As(III) and 33–100% at 50 µM
  • gal, India and reported significant variation in total grain 100% germination while other genotypes showed decline
  • As tolerant cultivars and recommended the cultivation of varied from 0.64% to 37% at 25 µM and from 1.63% to
  • these cultivars in As contaminated areas. 58% at 50 µM. Vivek Dhan showed least negative effect
  • genotypes on the basis of root growth reduction against control was found to be maximum 76% and 91% at 25 µM
  • 2013), the present study was conducted to screen sixty also showed a wide range of variation (Supplementary
  • Fig. 1 The result of A percent germination and B log2-fold change in % germination of genotypes for control versus As (III) stress of 67 rice
  • the ratio of shoot/root length. The results of Log2-fold attributable to lower As accumulation in its tissues while
  • erant and a sensitive genotype of a plant; in this case As in root, OL and YL was 57%, 35% and 54%, respectively
  • in rice (Chakrabarty et al. 2009). It is indeed the ability in Pooja and 97%, 170% and 80% in CO-50. In concentra-
  • tion to above-ground tissues including new young leaves roots, OL and YL was 16%, 27% and 28%, respectively at
  • work, it was clearly noticed that Pooja resisted As accu- were 57%, 30% and 48% (Fig. 6). MDA is generated by
  • shoot length and fresh weight showed 18%, 40% and 19% assumption of more ROS production in CO-50. The assay
  • ures 4 and 5). Hence, the growth of Pooja was positively and 142%, respectively that were more as compared to
  • at fixed concentration of 25 μM) (A) and different concentrations (0–25 μM at fixed duration of 5 d) (B). The values are mean of three replicates ± SD
  • concentration of 25 μM) in Pooja (A) and CO-50 (B) and at different concentrations (0–25 μM at fixed duration of 5 d) (C). The values are mean
  • concentration of 25 μM) in Pooja (A) and CO-50 (B) and at different concentrations (0–25 μM at fixed duration of 5 d) (C). The values are mean
  • concentration of 25 μM) in Pooja (A) and CO-50 (B) and at different concentrations (0–25 μM at fixed duration of 5 d) (C). The values are mean
  • that some genotypes had significantly high As accumu- LC50 dose of As(III) and it was found to be in range of
  • and OM997). On the basis of As content and tolerance, seeds were sterilized with 30% ethanol and then soaked in
  • identification of suitable As-tolerant genotypes acts as ent sets: control, 25 µM As(III) and 50 µM As(III) and as
  • was calculated for each variety of rice by applying the fol- Analysis of variance (ANOVA) at P ≤ 0.01 and the means
  • mean values ± SD and or as percentage change. Further, Technol 36:962–968. https://​doi.​org/​10.​1021/​es010​1678
  • crops, vegetables, animals and food products. Food Chem 276:608–618.

Methods (brief)

  • zaman et al. 2017). An excessive consumption of GSH Rice genotypes were collected from Varanasi and Sid-
  • tion and seedling performance. They found significant tems) under controlled conditions in As(III) (­NaAsO2,
  • shoot length, and As content in seedlings). They found experiments with a few collected genotyeps to know the
  • analyses, samples were homogenized in liquid nitrogen
  • Total As in the rice plant samples (root, OL and YL) was Funding
  • estimated after acid digestion of oven-dried plant sam- This research was supported by a grant from Science& Engineering Research
  • Abedin MJ, Cresser MS, Meharg AA, Feldmann J, Cotter-Howells J (2002)
  • FJ, Wu ZC (2024) The plastid-localized lipoamide dehydrogenase 1 is Raab A, Schat H, Meharg AA, Feldmann J (2005) Uptake, translocation and

Implications

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Update history

The five most recent substantive edits to this page, classified major (evidence or structure moved), correction (a published value or statement was wrong and has been fixed), or minor (narrative rewritten without changing the underlying evidence). Each description is derived from what the edit did to this page; the linked commit is the authoritative record, routine regeneration passes are excluded, and the full version history lives in git. When DOI minting comes online (see schema docs), each entry below will also link to a version-pinned DataCite DOI.

CommitDateChangeDescription
b01ec52c2026-08-04major2 sections added
d49e450f2026-08-03major5 sections added; narrative text revised