OsPSTOL1 is prevalent in upland rice and its expression in wheat enhances root growth and hastens low phosphate signaling
Kettenburg, A. T.; Lopez, M. A.; Yogendra, K.; Prior, M. J.; Rose, T.; Bimson, S.; Heuer, S.; Roy, S. J.; Bailey-Serres, J.
Show abstract
PHOSPHORUS-STARVATION TOLERANCE 1 (OsPSTOL1) benefits crown root growth and phosphorus (P) sufficiency in rice (Oryza sativa L.). To better understand the importance of this variably present gene, we carried out a biogeographic survey of landraces and cultivars, confirming that functional OsPSTOL1 alleles prevail in low nutrient and drought-prone rainfed ecosystems, whereas loss-of-function alleles and absence haplotypes predominate in control-irrigated paddy varieties of east Asia. To address the evolutionary history of OsPSTOL1 and related genes in cereal crops, phylogenetic and transcript meta-analyses were performed. Finally, to evaluate its potential value in another Gramineae, wheat (Triticum aestivum L.) lines overexpressing OsPSTOL1 were evaluated under field and controlled low P conditions. OsPSTOL1 enhances growth, crown root number, and overall root plasticity under low P in wheat. Survey of root and shoot crown transcriptomes at two developmental stages identifies transcription factors that are differentially regulated in OsPSTOL1 wheat that are similarly controlled by the gene in rice. In wheat, OsPSTOL1 alters the timing and amplitude of regulators of root development in dry soils and hastens induction of the core P-starvation response. Based on these findings, OsPSTOL1 and related genes may aid more sustainable cultivation of cereal crops. Summary statementMight a rice gene that controls root plasticity confer a similar benefit in another grain crop. Here, we evaluate the genetic variation and evolutionary history of OsPSTOL1 and demonstrate its impact in wheat.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- MicroRNA156 and its targeted SPL genes interact with the photoperiod, vernalization, and gibberellin pathways to regulate wheat heading time 97%
- Functional genetics of rice <em>PISTILLATA</em> genes unravels new roles and targets in flowering time, female fertility and parthenocarpy 96%
- Allelic variants confer Arabidopsis adaptation to mild environmental clines 95%
Similar papers in this journal
- Paralog editing tunes rice stomatal density to maintain photosynthesis and improve drought tolerance 96%
- Phosphate transporter PHT1;1 as a key determinant of phosphorus acquisition in Arabidopsis natural accessions 96%
- SvFUL2, an A-class MADS-box transcription factor, is necessary for inflorescence determinacy in model panicoid cereal, Setaria viridis 96%
Similar papers in this journal
- The role of AUX1 during lateral root development in the domestication of the model C4 grass Setaria italica 95%
- Characterization of growth and development of sorghum genotypes with differential susceptibility to Striga hermonthica 95%
- Sucrose transport and metabolism control carbon partitioning between stem and grain in rice 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.