Combined effect of bicarbonate and water in photosynthetic oxygen evolution and carbon neutrality

Springer Science and Business Media LLC - Tập 42 Số 1 - Trang 77-88 - 2023
Yanyou Wu1
1Institute of Geochemistry, Chinese Academy of Sciences

Tóm tắt

Từ khóa


Tài liệu tham khảo

Allen FL (1955) Photosynthetic evolution of oxygen by flashes of light. Arch Biochem Biophys 58(1):124–143

Bender M, Sowers T, Labeyrie L (1994) The dole effect and its variations during the last 130,000 years as measured in the Vostok ice core. Global Biogeochem Cycles 8(3):363–376

Bowden SJ, Hallahan BJ, Ruffle SV, Evans MCW, Nugent JHA (1991) Preparation and characterization of Photosystem II core particles with and without bound bicarbonate. BBA-Bioenergetics 1060(1):89–96

Cohen Y, Jørgensen BB, Padan ET, Shilo M (1975) Sulphide-dependent anoxygenic photosynthesis in the cyanobacterium Oscillatoria limnetica. Nature 257(5526):489–492

Dai X, Yu Y, Zhang R, Yu X, He P, Xu C (2001) Relationship among photosystem II carbonic anhydrase, extrinsic polypeptides and manganese cluster. Chin Sci Bull 46(5):406–408

Delosme R, Joliot P (2002) Period four oscillations in chlorophyll a fluorescence. Photosynth Res 73:165–168

Des Marais DJ (2000) When did photosynthesis emerge on Earth? Science 289(5485):1703–1705

Dismukes GC, Klimov VV, Baranov SV, Kozlov YN, DasGupta J, Tyryshkin A (2001) The origin of atmospheric oxygen on Earth: the innovation of oxygenic photosynthesis. P Nati Acad Sci USA 98(5):2170–2175

Ferreira KN (2004) Architecture of the photosynthetic oxygen-evolving center. Science 303(5665):1831–1838

Govindjee, Beatty JT, Gest H, Allen JF (2006) Discoveries in photosynthesis. Springer, Dordrecht, pp 63–105

Halevy I, Bachan A (2017) The geologic history of seawater pH. Science 355(6329):1069–1071

Hart MH (1978) The evolution of the atmosphere of the Earth. Icarus 33(1):23–39

Hill R (1937) Oxygen evolved by isolated chloroplasts. Nature 139(3525):881–882

Hillier W, McConnell I, Badger MR, Boussac A, Klimov VV, Dismukes GC, Wydrzynski T (2006) Quantitative assessment of intrinsic carbonic anhydrase activity and the capacity for bicarbonate oxidation in photosystem II. Biochemistry 45(7):2094–2102

Hoffmann G, Cuntz M, Weber C, Ciais P, Friedlingstein P, Heimann M, Jouzel J, Kaduk J, Maier-Reimer E, Seibt U, Six K (2004) A model of the Earth’s dole effect. Global Biogeochem Cycles 8(1):18 (GB1008)

Hogetsu D, Miyachi S (1979) Role of carbonic anhydrase in photosynthetic CO2 fixation in Chlorella. Plant Cell Physiol 20(4):747–756

Ignatova LK, Rudenko NN, Mudrik VA, Fedorchuk TP, Ivanov BN (2011) Carbonic anhydrase activity in Arabidopsis thaliana thylakoid membrane and fragments enriched with PSI or PSII. Photosynth Res 110:89–98

Joliot P (2003) Period-four oscillations of the flash-induced oxygen formation in photosynthesis. Photosynth Res 76(1):65–72

Kasting JF (1993) Earth’s early atmosphere. Science 259(5097):920–926

Khristin MS, Ignatova LK, Rudenko NN, Ivanov BN, Klimov VV (2004) Photosystem II associated carbonic anhydrase activity in higher plants is situated in core complex. FEBS Lett 577:305–308

Kok B, Forbusch B, McGloin M (1970) Cooperation of charges in photosynthetic O2 evolution-I. A linear four step mechanism. Photochem Photobiol 11:457–475

Koroidov S, Shevela D, Shutova T, Samuelsson G, Messinger J (2014) Mobile hydrogen carbonate acts as proton acceptor in photosynthetic water oxidation. P Nati Acad Sci USA 111(17):6299–6304

Lu YK, Stemler AJ (2007) Differing responses of the two forms of photosystem II carbonic anhydrase to chloride, cations, and pH. BBA-Bioenergetics 1767:633–638

Mader M, Schmidt C, van Geldern R, Barth JA (2017) Dissolved oxygen in water and its stable isotope effects: a review. Chem Geol 473:10–21

Metzner H (1975) Water decomposition in photosynthesis? A critical reconsideration. J Theor Bio 51(1):201–231

Moskvin OV, Shutova TV, Khristin MS, Ignatova LK, Villarejo A, Samuelsson G, Ivanov BN (2004) Carbonic anhydrase activities in pea thylakoids. Photosynth Res 79(1):93–100

Moubarak-Milad M, Stemler A (1994) Oxidation-reduction potential dependence of photosystem II carbonic anhydrase in maize thylakoids. Biochemistry 33(14):4432–4438

Okrasav K, Kazlauskas RJ (2006) Manganese-substituted carbonic anhydrase as a new peroxidase. Chem-Eur J 12(6):1587–1596

Pronina NA, Allakhverdiev SI, Kupriyanova EV, Klyachko-Gurvich GL, Klimov VV (2002) Carbonic anhydrase in subchloroplast particles of pea plants. Russ J Plant Phys 49(3):303–310

Radmer R, Ollinger O (1980) Isotopic composition of photosynthetic O2 flash yields in the presence of H218O and HC18O3–. FEBS Lett 110(1):57–61

Rao S, Wu Y (2017) Root-derived bicarbonate assimilation in response to variable water deficit in Camptotheca acuminate seedlings. Photosynth Res 134(1):59–70

Rodionova MV, Zharmukhamedov SK, Karacan MS, Venedik KB, Allakhverdiev SI (2017) Evaluation of new cu(II) complexes as a novel class of inhibitors against plant carbonic anhydrase, glutathione reductase, and photosynthetic activity in photosystem II. Photosynth Res 133(1):1–15

Ruben S, Randall M, Kamen M, Hyde JL (1941) Heavy oxygen (O18) as a tracer in the study of photosynthesis. J Am Chem Soc 63(3):877–879

Rudenko NN, Ignatova LK, Kamornitskaya VB, Ivanov BN (2006) Pea leaf thylakoids contain several carbonic anhydrases. Dokl Biochem Biophys 408(1):155–157

Rudenko NN, Ignatova LK, Ivanov BN (2007) Multiple sources of carbonic anhydrase activity in pea thylakoids: soluble and membrane-bound forms. Photosynth Res 91(1):81–89

Rudenko NN, Ignatova LK, Fedorchuk TP, Ivanov BN (2015) Carbonic anhydrases in photosynthetic cells of higher plants. Biochem Moscow 80(6):674–687

Shevela D, Eaton-Rye JJ, Shen JR, Govindjee (2012) Photosystem II and the unique role of bicarbonate: a historical perspective. BBA-Bioenergetics 1817(8):1134–1151

Shevela D, Do HN, Fantuzzi A, Rutherford AW, Messinger J (2020) Bicarbonate-mediated CO2 formation on both sides of photosystem II. Biochemistry 59(26):2442–2449

Shitov AV, Zharmukhamedov SK, Shutova TV, Allakhverdiev SI, Samuelsson G, Klimov VV (2011) A carbonic anhydrase inhibitor induces bicarbonate-reversible suppression of electron transfer in pea photosystem 2 membrane fragments. J Photoch Photobio B 104(1–2):366–371

Shitov AV, Terentyev VV, Zharmukhamedov SK, Rodionova MV, Karacan M, Karacan N, Klimov VV, Allakhverdiev SI (2018) Is carbonic anhydrase activity of photosystem II required for its maximum electron transport rate? BBA Ioenergetics 1859(4):292–299

Stemler A (1980) Inhibition of photosystem II by formate: possible evidence for a direct role of bicarbonate in photosynthetic oxygen evolution. BBA-Bioenergetics 593:103–112

Stemler AJ (2002) The bicarbonate effect, oxygen evolution and the shadow of Otto Warburg. Photosynth Res 73:177–183

Stemler A, Radmer R (1975) Source of photosynthetic oxygen in bicarbonate-stimulated Hill reaction. Science 190(4213):457–458

Tikhonov K, Shevela D, Klimov VV, Messinger J (2018) Quantification of bound bicarbonate in photosystem II. Photosynthetica 56(1):210–216

Umena Y, Kawakami K, Shen JR, Kamiya N (2011) Crystal structure of oxygen-evolving photosystem â·¡ at a resolution of 1.9 Ã. Nature 473(7345):55–60

Van Rensen JJS, Vermaas WFJ (1981) Action of bicarbonate and photosystem II inhibiting herbicides on electron transport in pea grana and in thylakoids of a blue-green alga. Physiol Plant 51:106–110

Van Rensen JJS, Xu C, Govindjee (1999) Role of bicarbonate in photosystem II, the water-plastoquinone oxido‐reductase of plant photosynthesis. Physiol Plant 105(3):585–592

Warburg O, Krippahl G (1958) Hill-reaktionen. Z Naturforsch B 13(8):509–514

Warburg O, Krippahl G, Jetschmann C (1965) Widerlegung der photolyse des wassers und beweis der photolyse der kohlensäure nach versuchen mit lebender Chlorella und den Hill-reagentien nitrat und K3Fe(CN)6. Z Naturforsch B 20(10):993–996

Wu Y (2021a) Is bicarbonate directly used as substrate to participate in photosynthetic oxygen evolution. Acta Geochim 40(4):650–658

Wu Y (2021b) Bicarbonate use and carbon dioxide concentrating mechanisms in photosynthetic organisms. Acta Geochim 40(5):846–853

Wu Y (2022) The increase in the karstification–photosynthesis coupled carbon sink and its implication for carbon neutrality. Agronomy 12:2147