A mechanistic investigation of enhanced nitrogen use efficiency in wheat seedlings after treatment with a precision engineered Ascophyllum nodosum biostimulant
Langowski, L.; Goni, O.; Ikuyinminu, E.; Feeney, E.; O'Connell, S.
Show abstract
Reduction in the emissions of the greenhouse gas nitrous oxide and nitrogen (N) pollution of ground water by improving nitrogen use efficiency (NUE) in crops is urgently required in pursuit of a sustainable agricultural future. Utilising an engineered biostimulant (PSI-362) derived from the brown seaweed Ascophyllum nodosum, we examined its effect on wheat seedling growth dynamics and mechanistic spatiotemporal changes at transcriptional and biochemical levels in relation to N uptake, assimilation and NUE. PSI-362-mediated biomass increase was associated with increased nitrate uptake and N assimilation in the form of glutamate, glutamine, free amino acids, soluble proteins and total chlorophyll. Phenotypical and biochemical analysis were supported by evaluation of differential expression of genetic markers involved in nitrate perception and transport (TaNRT1.1/NPF6.3), and assimilation (TaNR1 and TaNiR1, TaGDH2, TaGoGAT, TaGS1). Finally, a comparative analysis of the PSI-362 and two generic Ascophyllum nodosum extracts (ANEs) demonstrated that the NUE effect greatly differs depending on the ANE biostimulant used. In the current context of climate warming the transition of agriculture to a more sustainable model is urgently required. Application and adoption of precision biostimulants creates an opportunity for sustainable crop management, reduced production cost and environmental pollution, while maintaining yields.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Integrative analysis of hexaploid wheat roots identifies signature components during iron starvation 97%
- Early root-root interactions weaken foliar defense responses against Septoria tritici blotch in a durum wheat varietal mixture 95%
- Dissecting the Metabolic Reprogramming of Maize Root under Nitrogen Limiting Stress Condition 95%
Similar papers in this journal
- Physiological and transcriptional changes in soybean as adaptive responses to the combined effects of soil alkalinity and drought 96%
- Genetic improvement of wheat early vigor promote weed-competitiveness under Mediterranean climate 95%
- Dynamic structural changes in wheat vegetative development as an adaptive response to drought stress 95%
Similar papers in this journal
- Systematic hormone-metabolite network provides insights of high salinity tolerance in Pongamia pinnata (L.) pierre 96%
- Gene co-expression networks highlight key nodes associated with Ammonium nitrate in sugarcane 95%
- Photosynthetic adjustments maintain lettuce growth under dynamically changing lighting in controlled indoor farming setups 95%
Similar papers in this journal
- Asymmetric expression of homoeologous genes in wheat roots modulates the early phase of iron-deficiency signalling 97%
- Metabolic profiling of drought tolerance: revealing how citrus rootstocks modulate plant metabolism under varying water availability 95%
- Synchronization and interaction of proline, ascorbate and oxidative stress pathways under abiotic stress combination in tomato plants 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.