Microbial and abiotic oxidation of phosphite (P(III)) in aquatic environments: pathways, controls, and ecosystem implications

Achary VMM, Ram B, Manna M, Datta D, Bhatt A, Reddy MK, Agrawal PK (2017) Phosphite: a novel P fertilizer for weed management and pathogen control. Plant Biotechnol J 15(12):1493–1508

Article  CAS  Google Scholar 

Adams F, Conrad JP (1953) Transition of phosphite to phosphate in soils. Soil Sci. https://doi.org/10.1097/00010694-195305000-00004

Article  Google Scholar 

Alam MM, Srinivasan V, Mueller AV, Gu AZ (2021) Status and advances in technologies for phosphorus species detection and characterization in natural environment—a comprehensive review. Talanta 233

Bains W, Petkowski JJ, Sousa-Silva C, Seager S (2019) New environmental model for thermodynamic ecology of biological phosphine production. Sci Total Environ 658:521–536

Article  CAS  Google Scholar 

Barco RA, Patil DG, Xu W, Ke L, Khachikian CS, Hanrahan G, Salmassi TM (2006) The development of iodide-based methods for batch and on-line determinations of phosphite in aqueous samples. Talanta 69(5):1292–1299

Article  CAS  Google Scholar 

Bar-Even A (2016) Formate assimilation: the metabolic architecture of natural and synthetic pathways. Biochemistry 55(28):3851–3863

Article  CAS  Google Scholar 

Benitez-Nelson C (2015) The missing link in oceanic phosphorus cycling? Science 348(6236):759–760

Article  CAS  Google Scholar 

Berkowitz O, Jost R, Pearse SJ, Lambers H, Finnegan PM, Hardy GESJ, O’Brien PA (2011) An enzymatic fluorescent assay for the quantification of phosphite in a microtiter plate format. Anal Biochem 412(1):74–78

Article  CAS  Google Scholar 

Bryant DE, Greenfield D, Walshaw RD, Johnson BRG, Herschy B, Smith C, Pasek MA, Telford R, Scowen I, Munshi T, Edwards HGM, Cousins CR, Crawford IA, Kee TP (2013) Hydrothermal modification of the Sikhote-Alin iron meteorite under low pH geothermal environments. A plausibly prebiotic route to activated phosphorus on the early Earth. Geochim Cosmochim Acta 109:90–112

Article  CAS  Google Scholar 

Buchberger WW (2000) Detection techniques in ion analysis: what are our choices? J Chromatogr A 884(1):3–22

Article  CAS  Google Scholar 

Buckel W (2013) Bacterial methanogenesis proceeds by a radical mechanism. Angew Chem Int Ed Engl 52(33):8507–8509

Article  CAS  Google Scholar 

Cao RX, Geng JJ, Gu XY, Wang HJ, Wang XR (2012) Screening, identification and degradation characteristic of a phosphite degrading microorganism. Zhongguo Huan Jing Ke Xue 32:311–317

CAS  Google Scholar 

Chen J, Xu H, Seven J, Zilla T, Dippold MA, Kuzyakov Y (2024) Microbial phosphorus recycling in soil by intra- and extracellular mechanisms. ISME Commun 3(1):135

Article  Google Scholar 

Da Pozzo A, Petrucci E (2015) Sequential use of Fenton and electro-Fenton process for the oxidation of an effluent-containing hypophosphite and phosphite. Desalin Water Treat 53(5):1352–1360

Article  Google Scholar 

Dametto PR, Franzini VP, Neto JAG (2007) Phosphite determination in fertilizers after online sequential sample preparation in a flow injection system. J Agric Food Chem 55(15):5980–5983

Article  CAS  Google Scholar 

Dann E, McLeod A (2020) Phosphonic acid: a long-standing and versatile crop protectant. Pest Manag Sci 77(5):2197–2208

Article  Google Scholar 

Danova-Alt R, Dijkema COR, De Waard P, KÖCk M (2008) Transport and compartmentation of phosphite in higher plant cells - kinetic and 31P nuclear magnetic resonance studies. Plant Cell Environ 31(10):1510–1521

Article  CAS  Google Scholar 

De Graaf RM, Schwartz AW (2000) Reduction and activation of phosphate on the primitive earth. Orig Life Evol Biosph 30(5):405–410

Article  Google Scholar 

Dévai I, Felföldy L, Wittner I, Plósz S (1988) Detection of phosphine: new aspects of the phosphorus cycle in the hydrosphere. Nature 333(6171):343–345

Article  Google Scholar 

D’Hondt S, Jørgensen BB, Miller DJ, Batzke A, Blake R, Cragg BA, Cypionka H, Dickens GR, Ferdelman T, Hinrichs K-U, Holm NG, Mitterer R, Spivack A, Wang G, Bekins B, Engelen B, Ford K, Gettemy G, Rutherford SD, Sass H, Skilbeck CG, Aiello IW, Guèrin G, House CH, Inagaki F, Meister P, Naehr T, Niitsuma S, Parkes RJ, Schippers A, Smith DC, Teske A, Wiegel J, Padilla CN, Acosta JLS (2004) Distributions of microbial activities in deep subseafloor sediments. Science 306(5705):2216–2221

Article  CAS  Google Scholar 

Dormatey R, Sun C, Ali K, Fiaz S, Xu D, Calderón-Urrea A, Bi Z, Zhang J, Bai J (2021) ptxD/Phi as alternative selectable marker system for genetic transformation for bio-safety concerns: a review. PeerJ 9:e11809

Article  Google Scholar 

Duhamel S (2024) The microbial phosphorus cycle in aquatic ecosystems. Nat Rev Microbiol 23(4):239–255

Article  Google Scholar 

Edwards KJ, Bach W, McCollom TM (2005) Geomicrobiology in oceanography: microbe–mineral interactions at and below the seafloor. Trends Microbiol 13(9):449–456

Article  CAS  Google Scholar 

El Attar I, Hnini M, Taha K, Aurag J (2022) Phosphorus availability and its sustainable use. J Soil Sci Plant Nutr 22(4):5036–5048

Article  Google Scholar 

Ewens SD, Gomberg AFS, Barnum TP, Borton MA, Carlson HK, Wrighton KC, Coates JD (2021) The diversity and evolution of microbial dissimilatory phosphite oxidation. Proc Natl Acad Sci 118(11):e2020024118

Article  CAS  Google Scholar 

Feldman ML, Guzzo MC, Machinandiarena MF, Rey-Burusco MF, Beligni MV, Di Rienzo J, Castellote MA, Daleo GR, Andreu AB (2020) New insights into the molecular basis of induced resistance triggered by potassium phosphite in potato. Physiol Mol Plant Pathol. https://doi.org/10.1016/j.pmpp.2019.101452

Article  Google Scholar 

Feng Z, Song X, Yu Z (2008) Seasonal and spatial distribution of matrix-bound phosphine and its relationship with the environment in the Changjiang River Estuary, China. Mar Pollut Bull 56(9):1630–1636

Article  CAS  Google Scholar 

Figueroa IA, Coates JD (2017) Microbial phosphite oxidation and its potential role in the global phosphorus and carbon cycles. Adv Appl Microbiol 98:93–117

Article  CAS  Google Scholar 

Figueroa IA, Barnum TP, Somasekhar PY, Carlström CI, Engelbrektson AL, Coates JD (2017) Metagenomics-guided analysis of microbial chemolithoautotrophic phosphite oxidation yields evidence of a seventh natural CO2 fixation pathway. Proceed Nat Acad Sci 115(1):E92–E101

Google Scholar 

Fu W, Zhang X (2020) Global phosphorus dynamics in terms of phosphine. Npj Clim Atmos Sci 3(1):51

Article  CAS  Google Scholar 

Fu M, Song X, Yu Z, Liu Y (2013) Responses of phosphate transporter gene and alkaline phosphatase in Thalassiosira pseudonana to phosphine. PLoS ONE 8(3):e59770

Article  CAS  Google Scholar 

Gulick A (1955) Phosphorus as a factor in the origin of life. Am Sci 43(3):479–489

CAS  Google Scholar 

Han C, Geng J, Xie X, Wang X, Ren H, Gao S (2012) Determination of phosphite in a eutrophic freshwater lake by suppressed conductivity ion chromatography. Environ Sci Technol 46(19):10667–10674

Article  CAS  Google Scholar 

Han C, Geng J, Ren H, Gao S, Xie X, Wang X (2013) Phosphite in sedimentary interstitial water of Lake Taihu, a large eutrophic shallow lake in China. Environ Sci Technol 47(11):5679–5685

Article  CAS  Google Scholar 

Han C, Williams PN, Ren J, Wang Z, Fang X, Xu D, Xie X, Geng J, Ma LQ, Luo J (2018) In situ sampling and speciation method for measuring dissolved phosphite at ultratrace concentrations in the natural environment. Water Res 137:281–289

Article  CAS  Google Scholar 

Han C, Ren J, Wang B, Wang Z, Yin H, Ke F, Xu D, Zhang L, Si X, Shen Q (2022) Ignored effects of phosphite (P(+III)) on the growth responses of three typical algae species. Environ Pollut 294:118672

Article  CAS  Google Scholar 

Hancke K, Sorell BK, Lund-Hansen LC, Larsen M, Hancke T, Glud RN (2014) Effects of temperature and irradiance on a benthic microalgal community: a combined two-dimensional oxygen and fluorescence imaging approach. Limnol Oceanogr 59(5):1599–1611

Article  CAS  Google Scholar 

Hanrahan G, Salmassi T, Khachikian C, Foster K (2005) Reduced inorganic phosphorus in the natural environment: significance, speciation and determination. Talanta 66(2):435–444

Article  CAS  Google Scholar 

Hao L, Michaelsen TY, Singleton CM, Dottorini G, Kirkegaard RH, Albertsen M, Nielsen PH, Dueholm MS (2020) Novel syntrophic bacteria in full-scale anaerobic digesters revealed by genome-centric metatranscriptomics. ISME J 14(4):906–918

Article  CAS  Google Scholar 

Hashizume M, Yoshida M, Demura M, Watanabe MM (2020) Culture study on utilization of phosphite by green microalgae. J Appl Phycol 32(2):889–899

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