Priming of retrograde signaling in wheat across multiple natural environments reveal how responses to dynamic stimuli can be integrated to alter yield, yield stability and water productivity
Bowerman, A. F.; Moore, M.; Yadav, A.; Zhang, J.; Mortimer, M. D.; Plskova, Z.; Tee, E. E.; Au, E. K.; Collinge, D. P.; Estavillo, G. M.; Howitt, C. A.; Chan, K. X.; Rebetzke, G. J.; Pogson, B. J.
Show abstract
O_LIChloroplast-to-nucleus retrograde signaling enables rapid stress responses in plants, but whether these signals accumulate to affect crop performance across entire growing seasons under field conditions remains unknown. C_LIO_LIWe generated wheat mutants with targeted deletions in specific SAL gene copies from two distinct homeologous groups (TaSAL1 and TaSAL2), creating lines with enhanced stress signal responsiveness. We tested these lines across 15 field trials spanning diverse Australian environments with varying temperatures, rainfall, and irrigation regimes, measuring physiological responses, yield, biomass, and water productivity. C_LIO_LILines with TaSAL2 gene deletions showed 4-8% yield improvements with enhanced water productivity, while TaSAL1 deletions reduced yields. The TaSAL2 mutants maintained superior photosynthetic function under drought stress, showed improved relative water content, and demonstrated enhanced yield stability across environments. Canopy temperature measurements revealed dynamic stomatal regulation, with increased closure during midday stress periods but normal aperture under benign conditions. Significantly, specific SAL modifications enhanced photosynthetic efficiency and stress resilience without traditional yield penalties. C_LIO_LITargeted modification of specific SAL homeologous groups can simultaneously improve both yield and stress tolerance in wheat. This demonstrates that retrograde signaling integrates environmental information across the plant lifecycle, and highlights the importance of locus-specific targeting and multi-environment field validation for crop modifications. C_LI
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Extensive photophysiological variation in wild barley is linked to environmental origin 98%
- The Influences of Stomatal Size and Density on Rice Drought, Salinity and VPD Resilience 97%
- Functional phenomics and genetics of the root economics space in winter wheat using high-throughput phenotyping of respiration and architecture 96%
Similar papers in this journal
- Machine learning enabled phenotyping for GWAS and TWAS of WUE traits in 869 field-grown sorghum accessions 97%
- Paralog editing tunes rice stomatal density to maintain photosynthesis and improve drought tolerance 97%
- Uncoupling differential water usage from drought resistance in a dwarf Arabidopsis mutant 96%
Similar papers in this journal
- Genetic mapping of the early responses to salt stress in Arabidopsis thaliana 96%
- Loss of Tonoplast Sucrose Transporter SUT4 Alters Seasonal Growth, Carbohydrate Allocation, and Fertility in Field-Grown Poplar 96%
- Temporally resolved growth patterns reveal novel information about the polygenic nature of complex quantitative traits 95%
Similar papers in this journal
- Metabolomic, photoprotective, and photosynthetic acclimatory responses to post-flowering drought in sorghum 97%
- Transcriptional analysis in multiple barley varieties identifies signatures of waterlogging response 96%
- Non-destructive, whole-plant phenotyping reveals dynamic changes in water use efficiency, photosynthesis efficiency, and rhizosphere acidification of sorghum accessions under osmotic stress 96%
"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.