Modification of Non-photochemical Quenching Pathways in the C4 Model Plant Setaria viridis Revealed Shared and Unique Photoprotection Mechanisms as Compared to C3 Plants
Milburn, G.; Morris, C. M.; Kosola, E.; Patel-Tupper, D.; Liu, J.; Pham, D. H.; Acosta-Gamboa, L.; Stone, W. D.; Pardi, S.; Hillman, K.; McHargue, W. E.; Becker, E.; Kang, X.; Sumner, J.; Bailey, C.; Thielen, P. M.; Jander, G.; Kane, C. N.; McAdam, S. A. M.; Lawton, T. J.; Nusinow, D. A.; Zhang, F.; Gore, M. A.; Cheng, J.; Niyogi, K. K.; Zhang, R.
Show abstract
Light is essential for photosynthesis; however, excess light can increase the accumulation of photoinhibitory reactive oxygen species that reduce photosynthetic efficiency. Plants have evolved photoprotective non-photochemical quenching (NPQ) pathways to dissipate excess light energy. In tobacco and soybean (C3 plants), overexpression of three NPQ genes, violaxanthin de-epoxidase (VDE), Photosystem II Subunit S (PsbS), and zeaxanthin epoxidase (ZEP), hereafter VPZ, resulted in faster NPQ induction and relaxation kinetics, and increased crop yields in field conditions. NPQ is well-studied in C3 plants; however, NPQ and the translatability of the VPZ approach in C4 plants is poorly understood. The green foxtail Setaria viridis is an excellent model to study photosynthesis and photoprotection in C4 plants. To understand the regulation of NPQ and photosynthesis in C4 plants, we performed transient overexpression in Setaria protoplasts and generated (and employed) stable transgenic Setaria plants overexpressing one of the three Arabidopsis NPQ genes or all three NPQ genes (AtVPZ lines). Overexpressing (OE) AtVDE and AtZEP in Setaria produced similar results as in C3 plants, with increased or reduced zeaxanthin (thus NPQ), respectively. However, overexpressing AtPsbS appeared to be challenging in Setaria, with largely reduced NPQ in protoplasts and under-represented homozygous AtPsbS-OE lines, potentially due to competitive and tight heterodimerization of AtPsbS and SvPsbS proteins. Furthermore, Setaria AtVPZ lines had increased zeaxanthin, faster NPQ induction, higher NPQ level, but slower NPQ relaxation. Despite this, AtVPZ lines had improved growth as compared to wildtype under several conditions, especially high temperatures, which is not related to the faster relaxation of NPQ but may be attributable to increased zeaxanthin and NPQ in C4 plants. Our results identified shared and unique characteristics of the NPQ pathway in C4 model Setaria as compared to C3 plants and provide insights to improve C4 crop yields under fluctuating environmental conditions.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Several geranylgeranyl diphosphate synthase isoforms supply metabolic substrates for carotenoid biosynthesis in tomato 97%
- Novel insights on the contribution of plastoglobules and reactive oxygen species to chromoplast differentiation 97%
- Mitochondrial respiration is essential for photosynthesis-dependent ATP supply of the plant cytosol 96%
Similar papers in this journal
- Increased sedoheptulose-1,7-bisphosphatase content in the C4 species Setaria viridis does not affect photosynthesis 97%
- Paralog editing tunes rice stomatal density to maintain photosynthesis and improve drought tolerance 97%
- Increased chloroplast area in the rice bundle sheath through cell specific perturbation of brassinosteroid signalling 97%
Similar papers in this journal
- The Arabidopsis D27like1 is a novel Isomerase that Contributes to SL Biosynthesis and Negatively Impacts ABA Level 97%
- Spliceosomal complex components are critical for adjusting the C:N balance during high-light acclimation 96%
- Regulation of Vacuole Fusion in Stomata by Dephosphorylation of the HOPS subunit VPS39 96%
Similar papers in this journal
- Simultaneous knockout of VITAMIN C DEFECTIVE 2 and 3 exacerbates ascorbate deficiency and light stress sensitivity 97%
- Quantitative genetics of photosynthetic trait variation in maize 97%
- Introduction of a terminal electron sink in chloroplasts decreases leaf cell expansion associated to higher proteasome activity and lower endoreduplication 97%
Similar papers in this journal
- Increased drought resistance in state transition mutants is linked to modified plastoquinone pool redox state 96%
- Constitutive expression of JASMONATE RESISTANT 1 elevates content of several jasmonates and primes Arabidopsis thaliana to better withstand drought 96%
- Root-derived trans-zeatin cytokinin protects Arabidopsis plants against photoperiod 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.