Investigate the effects of biostimulants on other crop
Research gap analysis derived from 3 agriculture papers in our local library.
The gap
Investigate the effects of biostimulants on other crop species, - Examine the long-term effects of biostimulant application, - Explore the potential of biostimulants to enhance plant resilience to climate change
Evidence profile
Sourced from the conclusions and future-work section of the source papers, classified as general, drawn from work published between 2024 and 2026, spanning 3 journals. Those papers have been cited 9 times in total.
Research trend
Established — well-defined area with open sub-problems.
Supporting evidence — 3 representative gaps
- Potato ( Solanum tuberosum L.) Response to Amino Acids Biostimulants Treatment under Organic Farming System (2026) · Acta horticulturae et regiotecturae · doi
Therefore, further research is warranted to achieve a more comprehensive understanding of their efficacy and to optimize their application under diverse agricultural conditions. Despite the increasing interest in biostimulants and the expanding body of knowledge on their use, their variable efficacy remains incompletely understood in many cases.
generalconclusionsevidence 5/5Keywords: efficacy further warranted achieve comprehensive understanding optimize application diverse agricultural conditions despite increasing interest biostimulants - GLYCINE betaine and seaweed-based biostimulants improved leaf water status and enhanced photosynthetic activity in sweet cherry trees (2024) · Frontiers in Plant Science · cited 9× · doi
Investigate the effects of biostimulants on other crop species, - Examine the long-term effects of biostimulant application, - Explore the potential of biostimulants to enhance plant resilience to climate change
generalfuture-work sectionevidence 5/5Keywords: investigate effects biostimulants other crop species examine long-term - Foliar biostimulant from Kappaphycus alvarezii enhances growth and development of peppermint plants (Mentha × piperita) (2026) · Discover Plants · doi
Future research should investigate the underly- ing mechanisms driving the biological effects detected and evaluate the biostimulants’ performance across other plant species to broaden their applicability in agricultural systems.
generalconclusionsevidence 4/5Keywords: future investigate underly mechanisms driving biological effects detected evaluate biostimulants performance across plant species broaden
Questions about this gap
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.
Tools for your next paper
Related gaps in Agriculture
- Soil is the primary source of ecosystem servicesSoil is the primary source of ecosystem services such as the production of food and regulating the climate, however the methodological alter…
- Heavy metal contamination poses ecologicalHeavy metal contamination poses ecological and human-health risks. The dumpsite's proximity to highways and urban areas increases the risk o…
- Lead toxicity disrupts plant physiologicalLead toxicity disrupts plant physiological and biochemical processes - Lead toxicity reduces crop productivity - There is a need to develop …
- The causes of industry instability in the AustralianThe causes of industry instability in the Australian potato industry remain unclear. Prior studies have not fully examined the other agricul…