LPS1, Encoding Iron-Sulfur Subunit SDH2-1 of Succinate Dehydrogenase, Affects Leaf Senescence and Grain Yield in Rice
Abstract
:1. Introduction
2. Results
2.1. Late Premature Senescence and Dramatically Reduced Grain Yield in Lps1
2.2. Decreased Photosynthetic Capacity in Lps1
2.3. LPS1 Encodes Iron-Sulfur Subunit SDH2-1 of Succinate Dehydrogenase
2.4. The Mutant Phenotype of Lps1 Was Rescued by Wild Type LOC_Os08g02640 Gene
2.5. Excessive Accumulation of Reactive Oxygen Species in Lps1 Leaves and Young Panicles
2.6. Fertility of Pollen Grains Was Reduced in Lps1
2.7. OsSDH2-1 Was Located in Mitochondria
2.8. LOC_Os08g02640 Gene Was Ubiquitously Expressed in Rice
2.9. Senescence- and ROS Detoxification-Associated Genes Were Upregulated in Lps1 Leaves
3. Discussion
4. Materials and Methods
4.1. Plant Materials and Growth Conditions
4.2. Measurement of Photosynthetic Pigments and Capacity
4.3. Transmission Electron Microscope Analysis
4.4. Gene Mapping and Candidate Gene Analysis of LPS1
4.5. Complementation Analysis
4.6. Sequence Analysis
4.7. Subcellular Localization
4.8. Detection of Reactive Oxygen Species
4.9. Detection of Male and Female Fertility
4.10. Histochemical Staining Analysis
4.11. Quantitative RT-PCR Analysis
4.12. Statistical Analysis
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
ROS | Reactive oxygen species |
SDH | Succinate dehydrogenase |
TCA | Tricarboxylic acid |
ETC | Electron transport chain |
EMS | Ethyl methanesulfonate |
Chl | Chlorophyll |
References
- Gottlieb, E.; Tomlinson, I.P.M. Mitochondrial tumour suppressors: A genetic and biochemical update. Nat. Rev. Cancer 2005, 5, 857–866. [Google Scholar] [CrossRef] [PubMed]
- Rasheed, H.A.M.R.; Tarjan, G. Succinate dehydrogenase complex: An updated review. Arch. Pathol. Lab. Med. 2018, 142, 1564–1570. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Lemire, B.D.; Oyedotun, K.S. The Saccharomyces cerevisiae mitochondrial succinate:ubiquinone oxidoreductase. Biochim. Biophys. Acta Bioenerg. 2002, 1553, 102–116. [Google Scholar] [CrossRef] [Green Version]
- Sun, F.; Huo, X.; Zhai, Y.; Wang, A.; Xu, J.; Su, D.; Bartlam, M.; Rao, Z. Crystal Structure of Mitochondrial Respiratory Membrane Protein Complex II. Cell 2005, 121, 1043–1057. [Google Scholar] [CrossRef] [Green Version]
- Yankovskaya, V.; Horsefield, R.; Törnroth, S.; Luna-Chavez, C.; Miyoshi, H.; Léger, C.; Byrne, B.; Cecchini, G.; Iwata, S. Ar-chitecture of succinate dehydrogenase and reactive oxygen species generation. Science 2003, 299, 700–704. [Google Scholar] [CrossRef] [Green Version]
- Huang, S.B.; Braun, H.-P.; Gawryluk, R.M.R.; Millar, A.H. Mitochondrial complex II of plants: Subunit composition, assembly and function in respiration and signaling. Plant J. 2019, 98, 405–417. [Google Scholar] [CrossRef] [Green Version]
- Huang, S.; Taylor, N.L.; Narsai, R.; Eubel, H.; Whelan, J.; Millar, A. Functional and composition differences between mitochondrial complex II in Arabidopsis and rice are correlated with the complex genetic history of the enzyme. Plant Mol. Biol. 2009, 72, 331–342. [Google Scholar] [CrossRef] [Green Version]
- Jardim-Messeder, D.; Caverzan, A.; Rauber, R.; Ferreira, E.D.S.; Margis-Pinheiro, M.; Galina, A. Succinate dehydrogenase (mitochondrial complex II) is a source of reactive oxygen species in plants and regulates development and stress responses. New Phytol. 2015, 208, 776–789. [Google Scholar] [CrossRef]
- Ishii, N.; Fujii, M.; Hartman, P.S.; Tsuda, M.; Yasuda, K.; Senoo-Matsuda, N.; Yanase, S.; Ayusawa, D.; Suzuki, K. A mutation in succinate dehydrogenase cytochrome b causes oxidative stress and ageing in nematodes. Nat. Cell Biol. 1998, 394, 694–697. [Google Scholar] [CrossRef]
- Hoekstra, A.S.; Bayley, J.-P. The role of complex II in disease. Biochim. Biophys. Acta Bioenerg. 2013, 1827, 543–551. [Google Scholar] [CrossRef] [Green Version]
- León, G.; Holuigue, L.; Jordana, X. Mitochondrial Complex II Is Essential for Gametophyte Development in Arabidopsis. Plant Physiol. 2007, 143, 1534–1546. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Gleason, C.; Huang, S.; Thatcher, L.F.; Foley, R.C.; Anderson, C.R.; Carroll, A.J.; Millar, A.H.; Singh, K.B. Mitochondrial Complex II has a key role in mitochondrial-derived reactive oxygen species influence on plant stress gene regulation and de-fense. Proc. Natl. Acad. Sci. USA 2011, 108, 10768–10773. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Elorza, A.; Roschzttardtz, H.; Gómez, I.; Mouras, A.; Holuigue, L.; Araya, A.; Jordana, X. A Nuclear Gene for the Iron-Sulfur Subunit of Mitochondrial Complex II is Specifically Expressed During Arabidopsis Seed Development and Germination. Plant Cell Physiol. 2006, 47, 14–21. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Elorza, A.; León, G.; Gómez, I.; Mouras, A.; Holuigue, L.; Araya, A.; Jordana, X. Nuclear SDH2-1 and SDH2-2 Genes, Encoding the Iron-Sulfur Subunit of Mitochondrial Complex II in Arabidopsis, Have Distinct Cell-Specific Expression Patterns and Promoter Activities. Plant Physiol. 2004, 136, 4072–4087. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Restovic, F.; Espinoza-Corral, R.; Gomez, I.; Vicente-Carbajosa, J.; Jordana, X. An active Mitochondrial Complex II Present in Mature Seeds Contains an Embryo-Specific Iron–Sulfur Subunit Regulated by ABA and bZIP53 and Is Involved in Germination and Seedling Establishment. Front. Plant Sci. 2017, 8, 277. [Google Scholar] [CrossRef] [Green Version]
- Roschzttardtz, H.; Fuentes, I.; Vásquez, M.; Corvalán, C.; León, G.; Gómez, I.; Araya, A.; Holuigue, L.; Vicente-Carbajosa, J.; Jordana, X. A nuclear gene encoding the iron-sulfur subunit of mitochondrial Complex II is regulated by B3 domain tran-scription factors during seed development in Arabidopsis. Plant Physiol. 2009, 150, 84–95. [Google Scholar] [CrossRef] [Green Version]
- Araújo, W.L.; Nunes-Nesi, A.; Osorio, S.; Usadel, B.; Fuentes, D.; Nagy, R.; Balbo, I.; Lehmann, M.; Studart-Witkowski, C.; Tohge, T.; et al. Antisense Inhibition of the Iron-Sulphur Subunit of Succinate Dehydrogenase Enhances Photosynthesis and Growth in Tomato via an Organic Acid–Mediated Effect on Stomatal Aperture. Plant Cell 2011, 23, 600–627. [Google Scholar] [CrossRef] [Green Version]
- Huang, S.; Taylor, N.L.; Narsai, R.; Eubel, H.; Whelan, J.; Millar, A. Experimental Analysis of the Rice Mitochondrial Proteome, Its Biogenesis, and Heterogeneity. Plant Physiol. 2008, 149, 719–734. [Google Scholar] [CrossRef] [Green Version]
- Kubo, N.; Harada, K.; Hirai, A.; Kadowaki, K. A single nuclear transcript encoding mitochondrial RPS14 and SDHB of rice is processed by alternative splicing: Common use of the same mitochondrial targeting signal for different proteins. Proc. Natl. Acad. Sci. USA 1999, 96, 9207–9211. [Google Scholar] [CrossRef] [Green Version]
- Figueroa, P.M.; Gomez, I.; Holuigue, L.; Araya, A.; Jordana, X. Transfer of rps14 from the mitochondrion to the nucleus in maize implied integration within a gene encoding the iron-sulphur subunit of succinate dehydrogenase and expression by alternative splicing. Plant J. 1999, 18, 601–609. [Google Scholar] [CrossRef]
- Figueroa, P.M.; Holuigue, L.; Araya, A.; Jordana, X. The Nuclear-Encoded SDH2-RPS14 Precursor Is Proteolytically Processed between SDH2 and RPS14 to Generate Maize Mitochondrial RPS14. Biochem. Biophys. Res. Commun. 2000, 271, 380–385. [Google Scholar] [CrossRef] [PubMed]
- Song, G.; Kwon, C.-T.; Kim, S.-H.; Shim, Y.; Lim, C.; Koh, H.-J.; An, G.; Kang, K.; Paek, N.-C. The Rice Spotted Leaf4 (SPL4) Encodes a Plant Spastin That Inhibits ROS Accumulation in Leaf Development and Functions in Leaf Senescence. Front. Plant Sci. 2019, 9, 9. [Google Scholar] [CrossRef] [PubMed]
- Wang, M.; Zhang, T.; Peng, H.; Luo, S.; Tan, J.; Jiang, K.; Heng, Y.; Zhang, X.; Guo, X.; Zheng, J.; et al. Rice Premature Leaf Senescence 2, Encoding a Glycosyltransferase (GT), Is Involved in Leaf Senescence. Front. Plant Sci. 2018, 9, 560. [Google Scholar] [CrossRef] [PubMed]
- Yang, X.; Gong, P.; Li, K.Y.; Huang, F.D.; Cheng, F.M.; Pan, G. A single cytosine deletion in the OsPLS1 gene encoding vacuolar-type H+-ATPase subunit A1 leads to premature leaf senescence and seed dormancy in rice. J. Exp. Bot. 2016, 67, 2761–2776. [Google Scholar] [CrossRef] [Green Version]
- Quinlan, C.L.; Orr, A.L.; Perevoshchikova, I.V.; Treberg, J.R.; Ackrell, B.A.; Brand, M.D. Mitochondrial Complex II Can Generate Reactive Oxygen Species at High Rates in Both the Forward and Reverse Reactions. J. Biol. Chem. 2012, 287, 27255–27264. [Google Scholar] [CrossRef] [Green Version]
- Mhamdi, A.; Van Breusegem, F. Reactive oxygen species in plant development. Development 2018, 145, dev164376. [Google Scholar] [CrossRef] [Green Version]
- Armenteros, J.J.A.; Salvatore, M.; Emanuelsson, O.; Winther, O.; Von Heijne, G.; Elofsson, A.; Nielsen, H. Detecting sequence signals in targeting peptides using deep learning. Life Sci. Alliance 2019, 2, e201900429. [Google Scholar] [CrossRef] [Green Version]
- Lee, R.; Wang, C.; Huang, L.; Chen, S.G. Leaf senescence in rice plants: Cloning and characterization of senescence up-regulated genes. J. Exp. Bot. 2001, 52, 1117–1121. [Google Scholar] [CrossRef] [Green Version]
- Miao, Y.; Laun, T.; Zimmermann, P.; Zentgraf, U. Targets of the WRKY53 transcription factor and its role during leaf senescence in Arabidopsis. Plant Mol. Biol. 2004, 55, 853–867. [Google Scholar] [CrossRef]
- Qiu, Z.; Zhu, L.; He, L.; Chen, D.; Zeng, D.; Chen, G.; Hu, J.; Zhang, G.; Ren, D.; Dong, G.; et al. DNA damage and reactive oxygen species cause cell death in the rice local lesions 1 mutant under high light and high temperature. New Phytol. 2019, 222, 349–365. [Google Scholar] [CrossRef]
- Wood, D.; Darlison, M.G.; Wilde, R.J.; Guest, J.R. Nucleotide sequence encoding the flavoprotein and hydrophobic subunits of the succinate dehydrogenase of Escherichia coli. Biochem. J. 1984, 222, 519–534. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Figueroa, P.; León, A.E.G.; Holuigue, L.; Jordana, X. Three different genes encode the iron-sulfur subunit of succinate dehydrogenase in Arabidopsis thaliana. Plant Mol. Biol. 2001, 46, 241–250. [Google Scholar] [CrossRef] [PubMed]
- Fuentes, D.; Meneses, M.; Nunes-Nesi, A.; Araújo, W.L.; Tapia, R.; Gómez, I.; Holuigue, L.; Gutiérrez, R.A.; Fernie, A.R.; Jordana, X. A Deficiency in the Flavoprotein of Arabidopsis Mitochondrial Complex II Results in Elevated Photosynthesis and Better Growth in Nitrogen-Limiting Conditions. Plant Physiol. 2011, 157, 1114–1127. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Huang, J.Z.; Lemire, B.D. Mutations in the C. elegans succinate dehydrogenase iron-sulfur subunit promote superoxide gen-eration and premature aging. J. Mol. Biol. 2009, 387, 559–569. [Google Scholar] [CrossRef]
- Astuti, D.; Latif, F.; Dallol, A.; Dahia, P.L.M.; Douglas, F.; George, E.; Sköldberg, F.; Husebye, E.S.; Eng, C.; Maher, E.R. Gene Mutations in the Succinate Dehydrogenase Subunit SDHB Cause Susceptibility to Familial Pheochromocytoma and to Familial Paraganglioma. Am. J. Hum. Genet. 2001, 69, 49–54. [Google Scholar] [CrossRef] [Green Version]
- Hägerhäll, C. Succinate: Quinone oxidoreductases-variations on a conserved theme. Bioenergetics 1997, 1320, 107–141. [Google Scholar] [CrossRef] [Green Version]
- Duan, Q.; Kita, D.; Johnson, E.A.; Aggarwal, M.; Gates, L.; Wu, H.-M.; Cheung, A.Y. Reactive oxygen species mediate pollen tube rupture to release sperm for fertilization in Arabidopsis. Nat. Commun. 2014, 5, 3129. [Google Scholar] [CrossRef]
- Hu, L.; Liang, W.; Yin, C.; Cui, X.; Zong, J.; Wang, X.; Hu, J.; Zhang, D. Rice MADS3 Regulates ROS Homeostasis during Late Anther Development. Plant Cell 2011, 23, 515–533. [Google Scholar] [CrossRef] [Green Version]
- Muhlemann, J.K.; Younts, T.L.B.; Muday, G.K. Flavonols control pollen tube growth and integrity by regulating ROS ho-meostasis during high-temperature stress. Proc. Natl. Acad. Sci. USA 2018, 115, E11188–E11197. [Google Scholar] [CrossRef] [Green Version]
- Zafar, S.A.; Patil, S.B.; Uzair, M.; Fang, J.J.; Zhao, J.F.; Guo, T.T.; Yuan, S.J.; Uzair, M.; Luo, Q.; Shi, J.X.; et al. Degen-Erated Panicle and Partial STERILITY 1 (DPS1) encodes a cystathionine β-synthase domain containing protein re-quired for anther cuticle and panicle development in rice. New Phytol. 2020, 225, 356–375. [Google Scholar] [CrossRef] [Green Version]
- Lichtenthaler, H.K.; Wellburn, A.R. Determinations of total carotenoids and chlorophylls a and b of leaf extracts in different solvents. Biochem. Soc. Trans. 1983, 11, 591–592. [Google Scholar] [CrossRef] [Green Version]
- Abe, A.; Kosugi, S.; Yoshida, K.; Natsume, S.; Takagi, H.; Kanzaki, H.; Matsumura, H.; Yoshida, K.; Mitsuoka, C.; Tamiru, M.; et al. Genome sequencing reveals agronomically important loci in rice using MutMap. Nat. Biotechnol. 2012, 30, 174–178. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Zhang, Y.; Su, J.B.; Duan, S.; Ao, Y.; Dai, J.R.; Liu, J.; Wang, P.; Li, Y.G.; Liu, B.; Feng, D.R.; et al. A highly efficient rice green tissue protoplast system for transient gene expression and studying light/chloroplast-related processes. Plant Methods 2011, 7, 30. [Google Scholar] [CrossRef] [PubMed] [Green Version]
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Share and Cite
Li, C.; Liu, C.-Q.; Zhang, H.-S.; Chen, C.-P.; Yang, X.-R.; Chen, L.-F.; Liu, Q.-S.; Guo, J.; Sun, C.-H.; Wang, P.-R.; et al. LPS1, Encoding Iron-Sulfur Subunit SDH2-1 of Succinate Dehydrogenase, Affects Leaf Senescence and Grain Yield in Rice. Int. J. Mol. Sci. 2021, 22, 157. https://doi.org/10.3390/ijms22010157
Li C, Liu C-Q, Zhang H-S, Chen C-P, Yang X-R, Chen L-F, Liu Q-S, Guo J, Sun C-H, Wang P-R, et al. LPS1, Encoding Iron-Sulfur Subunit SDH2-1 of Succinate Dehydrogenase, Affects Leaf Senescence and Grain Yield in Rice. International Journal of Molecular Sciences. 2021; 22(1):157. https://doi.org/10.3390/ijms22010157
Chicago/Turabian StyleLi, Chun, Chuan-Qiang Liu, Hong-Shan Zhang, Cong-Ping Chen, Xiao-Rong Yang, Long-Fei Chen, Qing-Song Liu, Jia Guo, Chang-Hui Sun, Ping-Rong Wang, and et al. 2021. "LPS1, Encoding Iron-Sulfur Subunit SDH2-1 of Succinate Dehydrogenase, Affects Leaf Senescence and Grain Yield in Rice" International Journal of Molecular Sciences 22, no. 1: 157. https://doi.org/10.3390/ijms22010157
APA StyleLi, C., Liu, C. -Q., Zhang, H. -S., Chen, C. -P., Yang, X. -R., Chen, L. -F., Liu, Q. -S., Guo, J., Sun, C. -H., Wang, P. -R., & Deng, X. -J. (2021). LPS1, Encoding Iron-Sulfur Subunit SDH2-1 of Succinate Dehydrogenase, Affects Leaf Senescence and Grain Yield in Rice. International Journal of Molecular Sciences, 22(1), 157. https://doi.org/10.3390/ijms22010157