Study of high temperature stress induced damage and recovery in photosystem II (PSII) and photosystem I (PSI) in Spinach leaves (Spinacia oleracia)

Divya Agrawal1, Anjana Jajoo1
1School of Life Science, Devi Ahilya University, Indore, India

Tóm tắt

Từ khóa


Tài liệu tham khảo

Agrawal D, Allakhverdiev SI, Jajoo A (2016) Cyclic electron flow plays an important role in protection of spinach leaves under high temperature stress. Russ J Plant Physiol 63:210–215

Ait AN, Dewez D, Didur O, Popovic R (2008) Effect of dichromate on photosystem II activity in xanthophyll-deficient mutants of Chlamydomonas reinhardtii. Photosynth Res 95:45–53

Allakhverdiev SI, Kreslavski V, Klimov V, Los D, Carpentier R, Mohanty P (2008) Heat stress: an overview of molecular responses in photosynthesis. Photosynth Res 98:541–550

Ashraf M, Harris PJC (2013) Photosynthesis under stressful environments: an overview. Photosynthetica 51:163–190

Bita CE, Gerats T (2013) Plant tolerance to high temperature in a changing environment: scientific fundamentals and production of heat stress-tolerant crops. Front Plant Sci 4:273

Bukhov NG, Samson G, Carpentier R (2000) Nophotosynthetic reduction of the intersystem electron transport chain of chloroplasts following heat stress. Steady-state rate. Photochem Photobiol 72:351–357

Carpentier R (1999) Effect of high-temperature stress on the photosynthetic apparatus. In: Pessarakli M (ed) Handbook of plant and crop stress. Marcel Dekker, New York, pp 337–348

Chaitanya KV, Sundar D, Masilamani S, Reddy R (2002) Variation in heat stress-induced antioxidant enzyme activities among three mulberry cultivars. Plant Growth Regul 36:175–180

Coopman RE, Fuentes-Neira FP, Bricenõ VF, Cabrera HM, Corcuera LJ, Bravo LA (2010) Light energy partitioning in photosystems I and II during development of Nothofagus nitida growing under different light environments in the Chilean evergreen temperate rain forest. Trees 24:247–259

Enami I, Kitamura M, Tomo T, Isokawa Y, Ohta H, Katoh S (1994) Is the primary cause of thermal inactivation of oxygen evolution in spinach PS II membranes release of the extrinsic 33 kDa protein or of Mn? Biochim Biophys Acta 1186:52–58

Essemine J, Govindachary S, Ammar S, Bouzid S, Carpentier R (2011) Functional aspects of the photosynthetic light reactions in heat stressed Arabidopsis deficient in digalactosyl-diacylglycerol. J Plant Physiol 168:1526–1533

Essemine J, Govindachary S, Ammar S, Bouzid S, Carpentier R (2012) Enhanced sensitivity of the photosynthetic apparatus to heat stress in digalactosyl-diacylglycerol deficient Arabidopsis. Environ Exp Bot 80:16–26

Genty B, Briantais JM, Baker NR (1989) The relationship between the quantum of photosynthetic electron transport and quenching of chlorophyll fluorescence. Biochim Biophys Acta 990:87–92

Georgieva K, Maslenkova L (2006) Thermostability and photostabitity of PSII in leaves of resurrection plant Haberlea rhodopensis studied by means of chlorophyll fluorescence. Zeitschrift für Naturforshung 61c:234–240

Gounaris K, Brain ARR, Quinn PJ, Williams WP (1983) Structural and functional changes associated with heat-induced phase-separations of non-bilayer lipids in chloroplast thylakoid membranes. FEBS Lett 153:47–52

Guo YP, Zhou HF, Zhang LC (2006) Photosynthetic characteristics and protective mechanisms against photooxidation during high temperature stress in two citrus species. Sci Hortic 108:260–267

Hasanuzzaman M, Nahar K, Md AlamM, Roychowdhury R, Fujita M (2013) Physiological, biochemical, and molecular mechanisms of heat stress tolerance in plants. Int J Mol Sci 14:9643–9684

Havaux M (1996) Short-term responses of photosystem I to heat stress, induction of a PS II-independent electron transport through PS I fed by stromal components. Photosynth Res 47:85–97

Hoogenboom MO, Campbell DA, Beraud E, DeZeeuw K, Ferrier-Pagés C (2012) Effects of light, food availability and temperature stress on the function of photosystem II and photosystem I of coral symbionts. PLoS ONE 7:30167

Hu S, Ding Y, Zhu C (2020) Sensitivity and responses of chloroplasts to heat stress in plants. Front Plant Sci. https://doi.org/10.3389/fpls.2020.00375

Huang W, Zhang SB, Cao KF (2011) Cyclic electron flow plays an important role in photoprotection of tropical trees illuminated at temporal chilling temperature. Plant Cell Physiol 52:297–305

Huang W, Yang SJ, Zhang SB, Zhang JL, Cao KF (2012) Cyclic electron flow plays an important role in photoprotection for the resurrection plant Paraboea rufescens under drought stress. Planta 235:819–828

Ivanov AG, Morgan R, Gray GR, Velitchkova MY, Huner NPA (1998) Temperature/light dependent development of selective resistance to photoinhibition of photosystem I. FEBS Lett 430:288–292

Ivanov AG, Hendrickson L, Krol M, Selstam E, Quist GO, Hurry V, Huner NPA (2006) Digalactosyl-diacylglycerol deficiency impairs the capacity for photosynthetic intersystem electron transport and state transitions in Arabidopsis thaliana due to photosystem I acceptor-side limitations. Plant Cell Physiol 47:1146–1157

Ivanov AG, Allakhverdiev SI, Huner NPA, Murata N (2012) Genetic decrease in fatty acid unsaturation of phosphatidylglycerol increased photoinhibition of photosystem I at low temperature in tobacco leaves. Biochim Biophys Acta 1817:1374–1379

Jin SH, Li XQ, Hu JY, Wang JG (2009) Cyclic electron flow around photosystem I is required for adaptation to high temperature in a subtropical forest tree, Ficus concinna. J Zhejiang Univ Sci B 10:784–790

Kalaji HM, Jajoo A, Oukarroum A, Brestic M, Zivcak M, Samborska IA, Cetner MD, Łukasik I, Goltsev V, Ladle RJ (2016) Chlorophyll a fluorescence as a tool to monitor physiological status of plants under abiotic stress conditions. Acta Physiol Plant 38:102

Klughammer C, Schreiber U (2008) Complementary PS II quantum yields calculated from simple fluorescence parameters measured by PAM fluorometry and the Saturation Pulse method. PAM Appl Notes 1:27–35

Komayama K, Khatoon M, Takenaka D, Horie J, Yamashita A, Yoshioka M, Nakayama Y, Yoshida M, Ohira S, Morita N, Velitchkova M, Enami I, Yamamoto Y (2007) Quality control of Photosystem II: cleavage and aggregation of heat-damaged D1 protein in spinach thylakoids. Biochim Biophys Acta 1767:838–846

Kramer DM, Johnson G, Kiirats O, Edwards GE (2004) New fluorescence parameters for the determination of QA redox state and excitation energy fluxes. Photosynth Res 79:209–218

Kreslavski V, Tatarinzev N, Shabnova N, Semenova G, Kosobryukhov A (2008) Characterization of the nature of photosynthetic recovery of wheat seedlings from short-term dark heat exposures and analysis of the mode of acclimation to different light intensities. J Plant Physiol 165:1592–1600

Kudoh H, Sonoike K (2002) Dark-chilling pretreatment protect PSI from light-chilling damage. J Photosci 9:59–62

Kuwabara T, Murata N (1982) Inactivation of photosynthetic oxygen evolution and concomitant release of three polypeptides from photosystem II particles of spinach chloroplasts. Plant Cell Physiol 23:533–539

Mathur S, Agrawal D, Jajoo A (2014) Photosynthesis: response to high temperature stress. J Photochem Photobiol B Biol 137:116–126

Porra RJ, Thompson WA, Kriedemann PE (1989) Determination of accurate extinction coefficients and simultaneous equations for assaying chlorophylls a and b extracted with four different solvents: verification of the concentration of chlorophyll standards by absorption spectroscopy. Biochim Biophys Acta 975:384–394

Pospišil P, Haumann M, Dittmer J, Sole VA, Dau H (2003) Stepwise titration of the titration of the Tetra-Manganese complex of photosystem II to a binuclear Mn2(µ-O)2 complex in response to a temperature jump: a time-resolved structural investigation employing X-ray absorption spectroscopy. Biophys J 84:1370–1386

Savitch LV, Ivanov AG, Savitch LG, Huner NPA, Simmonds J (2011) Cold stress effects on PSI photochemistry in Zea mays: differential increase of FQR-dependent cyclic electron flow and functional implications. Plant Cell Physiol 52:1042–1054

Sharkey TD (2005) Effects of moderate heat stress on photosynthesis: importance of thylakoid reactions, rubisco deactivation, reactive oxygen species, and thermotolerance provided by isoprene. Plant Cell Environ 28:269–277

Shikanai T (2007) Cyclic electron transport around photosystem I: genetic approaches. Annu Rev Plant Biol 58:19–217

Song Y, Chen Q, Ci D, Shao X, Zhang D (2014) Effects of high temperature on photosynthesis and related gene expression in poplar. BMC Plant Biol 14:111

Sundby C, Melis A, Mäenpää P, Andersson B (1986) Temperature dependent changes in the antenna size of photosystem II. Reversible conversion of photosystem IIα to photosystem IIβ. Biochim Biophys Acta 851:475–483

Tiwari A, Jajoo A, Bharti S (2008) Heat-induced changes in the EPR signal of tyrosine D (YOX): a possible role of Cytochrome b559. J Bioenerg Biomembr 40:237–243

Tomar RS, Jajoo A (2017) PSI becomes more tolerant to fluoranthene through the initiation of cyclic electron flow. Funct Plant Biol 44:978–984

Wada H, Gombos Z, Murata N (1994) Contribution of the membrane lipids to the ability of the photosynthetic machinery to tolerate temperature stress. Proc Natl Acad Sci USA 91:4273–4277

Wang P, Duan W, Takabayashi A, Endo T, Shikanai T, Ye JY, Mi HL (2006) Chloroplastic NAD(P)H dehydrogenase in tobacco leaves functions in alleviation of oxidative damage caused by temperature stress. Plant Physiol 141:465–474

Wang Q, Hall CL, Al-Adami MZ, He Q (2010) IsiA is required for the formation of photosystem I supercomplexes and for efficient state transition in Synechocystis PCC 6803. PLoS ONE 5:e10432

Wang QL, Chen JH, He NY, Guo FQ (2018) Metabolic reprogramming in chloroplasts under heat stress in plants. Int J Mol Sci 19:849. https://doi.org/10.3390/ijms19030849

Yamamoto Y, Aminaka R, Yoshioka M, Khatoon M, Komayama K, Takenaka D, Yamashita A, Nijo N, Inagawa K, Morita N, Sasaki T, Yamamoto Y (2008) Quality control of photosystem II: impact of light and heat stresses. Photosynth Res 98:589–608

Yan K, Chen P, Shao H, Zhang L, Xu G (2011) Effects of short-term high temperature on photosynthesis and photosystem II performance in Sorghum. J Agron Crop Sci 197:400–408

Yoshioka M, Uchida S, Mori H, Komayama K, Ohira S, Morita N, Nakanishi T, Yamamoto Y (2006) Quality control of photosystem II: cleavage of reaction center D1 protein in spinach thylakoids by FtsH protease under moderate heat stress. J Biol Chem 281:21660–21669