Zaxinone Synthase overexpression modulates rice physiology and metabolism, improving growth and productivity under normal and low phosphate supply
Ablazov, A.; Jamil, M.; Haider, I.; Wang, J. Y.; Melino, V.; Maghrebi, M.; Vigani, G.; Liew, K. X.; Lin, P.-Y.; Chen, G.-T.; Kuijer, H.; Berqdar, L.; Mazzarella, T.; Fiorilli, V.; Lanfranco, L.; Zheng, X.; Dai, N.-C.; Lai, M.-H.; Hsing, Y.-i.; Tester, M.; Blilou, I.; Al-Babili, S.
Show abstract
The rice Zaxinone Synthase (ZAS) gene encodes a carotenoid cleavage dioxygenase (CCD) that forms the apocarotenoid growth regulator zaxinone. Here, we generated and characterized constitutive ZAS-overexpressing rice lines, to better understand ZAS role in determining zaxinone content and regulating growth and architecture. ZAS overexpression enhanced endogenous zaxinone level, promoted root growth and meristem size, and increased the number of productive tillers, leading to an up to 30% higher grain yield per plant. Hormone analysis revealed a decrease in strigolactone (SL) content, which we confirmed by rescuing the high-tillering phenotype through application of a SL analog. Metabolomics analysis revealed that ZAS overexpressing plants accumulate higher amounts of monosaccharide sugars, in line with transcriptome analysis. Moreover, transgenic plants showed higher carbon (C) assimilation rate and elevated root phosphate, nitrate and sulfate level, enhancing the tolerance towards low phosphate (Pi) and indicating a generally better nutrient uptake. Our study shows that ZAS regulates hormone homeostasis and a combination of physiological processes to promote growth and grain yield, which makes this gene an excellent candidate for sustainable crop improvement. TeaserZaxinone Synthase overexpression modulates rice metabolism and physiology and improves growth and phosphate uptake.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Ustilaginoidea virens suppresses floral immunity through promoting GA biosynthesis by the effector SCRE9 94%
- The establishment of Populus x Laccaria bicolor ectomycorrhiza requires the inactivation of MYC2 coordinated defense response with a key role for root terpene synthases 94%
- ENHANCED GRAVITROPISM 2 coordinates molecular adaptations to gravistimulation in the elongation zone of barley roots 94%
Similar papers in this journal
- ENHANCED GRAVITROPISM 2 encodes a STERILE ALPHA MOTIVE containing protein that controls root growth angle in barley and wheat 95%
- Emergence of isochorismate-based salicylic acid biosynthesis within Brassicales 95%
- THESEUS1 modulates cell wall stiffness and abscisic acid production in Arabidopsis thaliana 95%
Similar papers in this journal
- Fine-mapping identifies NAD-ME1 as a candidate underlying a major locus controlling temporal variation in primary and specialized metabolism in Arabidopsis 95%
- Rice potassium transporter OsHAK18 mediates phloem K+ loading and redistribution 95%
- An Arabidopsis gene expression predictor enables inference of transcriptional regulators 94%
Similar papers in this journal
Similar papers in this journal
- Auxin-responsive (phospho)proteome analysis reveals regulation of cell cycle and ethylene signaling during rice crown root development 95%
- Multifaceted roles of rice ABA/stress-induced intrinsically disordered proteins in augmenting drought resistance 94%
- Apoplast-localized β-Glucosidase Elevates Isoflavone Accumulation in the Soybean Rhizosphere 93%
"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.