agriculture3 papersavg year 2019weak evidence

Understand the impact of arsenic on paddy soil microbiomes

Research gap analysis derived from 3 agriculture papers in our local library.

The gap

There is a need to understand the impact of arsenic on paddy soil microbiomes. The study aims to address this gap by reconstructing genomes from arsenic-impacted paddy soils.

Evidence profile

Sourced from the stated research gap and abstract of the source papers, classified as general, drawn from work published between 2006 and 2026, spanning 3 journals. Those papers have been cited 231 times in total.

Research trend

Established — well-defined area with open sub-problems.

Supporting evidence — 3 representative gaps

  • Pseudomonas inoculation enhances soil nitrogen retention and rice resistance to arsenic stress while reducing arsenic accumulation (2026) · Journal of Soils and Sediments · doi

    The paper identifies a gap in the understanding of the effect of Pseudomonas inoculation on soil nitrogen retention and rice resistance to arsenic stress. It also highlights the need for a solution to reduce arsenic accumulation in rice and improve soil nitrogen retention.

    generalstated research gap
    Keywords: paper identifies gap understanding effect pseudomonas inoculation soil
  • Genome-resolved insights into arsenic-impacted paddy soil and microcosm-derived microbiomes from West Bengal, India (2026) · Microbiology Resource Announcements · doi

    There is a need to understand the impact of arsenic on paddy soil microbiomes. The study aims to address this gap by reconstructing genomes from arsenic-impacted paddy soils.

    generalstated research gapevidence 5/5
    Keywords: there need understand impact arsenic paddy soil microbiomes
  • In Vivo Assessment of Arsenic Bioavailability in Rice and Its Significance for Human Health Risk Assessment (2006) · Environmental Health Perspectives · cited 231× · doi

    BACKGROUND: Millions of people worldwide consume arsenic-contaminated rice; however, little is known about the uptake and bioavailability of arsenic species after arsenic-contaminated rice ingestion.

    generalabstractevidence 4/5
    Keywords: arsenic contaminated rice background millions people worldwide consume little known uptake bioavailability species ingestion

Questions about this gap

There is a need to understand the impact of arsenic on paddy soil microbiomes. The study aims to address this gap by reconstructing genomes from arsenic-impacted paddy soils. This is supported by 3 representative gap statements extracted from 3 papers, rated weak evidence.

Explore this gap further

Run this gap as a query across open scholarly engines for the latest related literature.

Working on this gap? Review it with us.

Science AI Journal reviews manuscripts in one pass with 8 specialised AI agents calibrated on 69,000+ real peer reviews.

Related gaps in Agriculture

Command palette

Jump anywhere, run any action.