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BIOANALYTICAL

Silicon Isotope Fractionation in Maize and its Biogeochemical Significance

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Pages 2475-2490 | Received 07 Dec 2016, Accepted 11 Feb 2017, Published online: 19 Sep 2017

References

  • Alexandre, A., J. D. Meaner, F. Colin, and J. M. Koud. 1997. Plant impact on the biogeochemical cycle of silicon and related weathering processes. Geochimica et Cosmochimica Acta 61 (3):677–82. doi:10.1016/s0016-7037(97)00001-x
  • Bern, C. R., M. A. Brzezinski, C. Beucher, K. Ziegler, and O. A. Chadwick. 2010. Weathering, dust, and biocycling effects on soil silicon isotope ratios. Geochimica et Cosmochimica Acta 74:876–89. doi:10.1016/j.gca.2009.10.046
  • Blecker, S. W., S. L. King, L. A. Derry, O. A. Chadwick, J. A. Ippolito, and E. F. Kelly. 2007. The ratio of germanium to silicon in plant phytoliths: Quantification of biological discrimination under controlled experimental conditions. Biogeochemistry 86:189–99. doi:10.1007/s10533-007-9154-7
  • Carneiro, J. M. T., L. A. Oliveira, A. L. R. M. Rossete, C. H. Abreu, and J. A. Bendassolli. 2010. Accumulation and translocation of silicon in rice and bean plants using the 30Si stable isotope. Journal of Plant Nutrition 33 (9):1374–83. doi:10.1080/01904167.2010.484097
  • Carnelli, A. L., M. Madella, J. P. Theurillat, and B. Ammann. 2002. Aluminum in the opal silica reticule of phytoliths: A new tool in palaeoecological studies. American Journal of Botany 89:346–51. doi:10.3732/ajb.89.2.346
  • Conley, D. J. 2002. Terrestrial ecosystems and the global biogeochemical silica cycle. Global Biogeochemical Cycles 16 (4):1121. doi:10.1029/2002gb001894
  • Dansgaard, W. 1964. Stable isotopes in precipitation. Tellus 16:436–38. doi:10.3402/tellusa.v16i4.8993
  • Delstanche, S., S. Opfergelt, D. Cardinal, F. Elsass, L. André, and B. Delvaux. 2009. Silicon isotopic fractionation during adsorption of aqueous monosilicic acid onto iron oxide. Geochimica et Cosmochimica Acta 73:923–34. doi:10.1016/j.gca.2008.11.014
  • Ding, T. P., G. R. Ma, M. X. Shui, D. F. Wan, and R. H. Li. 2005a. Silicon isotope study on rice plants from the Zhejiang province, China. Chemical Geology 218:41–50. doi:10.1016/j.chemgeo.2005.01.018
  • Ding, T. P., G. R. Ma, S. H. Tian, and J. F. Gao. 2005b. Effect of rice growth on geochemical circle of silicon: Silicon isotope study on rice plants grew in field and laboratory. Geochimica et Cosmochimica Acta 69 (10):A551.
  • Ding, T. P., S. H. Tian, L. Sun, L. H. Wu, J. X. Zhou, and Z. Y. Chen. 2008. Silicon isotope fractionation between rice plants and nutrient solution and its significance to the study of the silicon cycle. Geochimica et Cosmochimica Acta 72:5600–15.
  • Ding, T. P., D. Wan, R. Bai, Z. Zhang, Y. Shen, and R. Meng. 2005c. Silicon isotope abundance ratios and atomic weights of NBS-28 and other reference materials. Geochimica et Cosmochimica Acta 69 (10):5487–94.
  • Ding, T. P., D. Wan, C. Wang, and F. Zhang. 2004. Silicon isotope composition of dissolved silicon and suspended matter in the Yangtze River, China. Geochimica et Cosmochimica Acta 68 (2):205–16. doi:10.1016/s0016-7037(03)00264-3
  • Ding, T. P., C. Y. Wang, F. Zhang, and D. F. Wan. 2003. Large and systematic silicon isotope fractionation discovered in single sticks of bamboo. Geochimica et Cosmochimica Acta 67 (18):A79.
  • Ding, T. P., J. X. Zhou, D. F. Wan, Z. Y. Chen, C. Y. Wang, and F. Zhang. 2009. Silicon isotope fractionation in bamboo and its significance to the biogeochemical cycle of silicon. Geochimica et Cosmochimica Acta 72:1381–95.
  • Elburg, M., P. Vroon, B. van der Wagt, and A. Tchalikian. 2005. Sr and Pb isotopic composition of five USGS glasses (BHVO-2G, BIR-1G, BCR-2G, TB-1G, NKT-1G). Chemical Geology 223:196–207. doi:10.1016/j.chemgeo.2005.07.001
  • Epstein, E. 1999. Silicon. Annual Review of Plant Physiology and Plant Molecular Biology 50:641–64. doi:10.1146/annurev.arplant.50.1.641
  • Farmer, V. C., E. Delbos, and J. D. Miller. 2005. The role of phytolith formation and dissolution in controlling concentrations of silica in soil solutions and streams. Geoderma 127:71–79. doi:10.1016/j.geoderma.2004.11.014
  • Friedmen, E. L. 1971. Light and scanning electron microscopy of the endolithic desert algal habitat. Phycologia 10:441–28.
  • Fu, F. F., T. Akagi, and K. Shinotsuka. 1998. Distribution pattern of rare earth elements in fern–Implication for intake of fresh silicate particles by plants. Biological Trace Element Research 64:13–26. doi:10.1007/bf02783321
  • Guerriero, G., J. F. Hausman, and S. Legay. 2016. Silicon and the plant extracellular matrix. Frontiers in Plant Sciences 7:463. doi:10.3389/fpls.2016.00463
  • Gugel, I. L., G. Grupe, and K. H. Kunzelmann. 2001. Simulation of dental microware: Characteristic traces by opal phytoliths give clues to ancient human dietary behavior. American Journal of Physical Anthropology 114:124–38. doi:10.1002/1096-8644(200102)114:2<124::aid-ajpa1012>3.0.co;2-s
  • Guo, F. S., Z. L. Song, L. Sullivan, H. L. Wang, X. Y. Liu, X. D. Wang, Z. M. Li, and Y. Y. Zhao. 2015. Enhancing phytolith carbon sequestration in rice ecosystems through basalt powder amendment. Science Bulletin 60:591–97. doi:10.1007/s11434-015-0729-8
  • Hamilton, E. W., S. A. Heckathorn, P. Joshi, D. Wang, and D. Barua. 2008. Interactive effects of elevated CO2 and growth temperature on the tolerance of photosynthesis to acute heat stress in C3 and C4 specie. Journal of Integrative Plant Biology 50:1375–87. doi:10.1111/j.1744-7909.2008.00747.x
  • He, C. W., J. Ma, and L. J. Wang. 2015. A hemicellulose-bound form of silicon with potential to improve the mechanical properties and regeneration of the cell wall of rice. New Phytologist 206:1051–62. doi:10.1111/nph.13282
  • Hendry, K. R., M. J. Leng, L. F. Robinson, H. J. Sloane, J. Blusztjan, R. E. M. Rickaby, R. B. Georg, and A. N. Halliday. 2011. Silicon isotopes in Antarctic sponges: An interlaboratory comparison. Antarctic Science 23:34–42. doi:10.1017/s0954102010000593
  • Hinsinger, P., O. N. F. Barros, M. F. Benedetti, Y. Noack, and G. Callot. 2001. Plant-induced weathering of a basaltic rock: Experimental evidence. Geochimica Et Cosmochimica Acta 65:137–52. doi:10.1016/s0016-7037(00)00524-x
  • Hodson, M. J., A. G. Parker, M. J. Leng, and H. J. Sloane. 2008. Silicon, oxygen and carbon isotope composition of wheat (Triticum aestivum L.) phytoliths: Implications for palaeoecology and archaeology. Journal of Quaternary Science 23 (4):331–39. doi:10.1002/jqs.1176
  • Hughes, H. J., F. Sondag, C. Cocquyt, A. Laraque, A. Pandi, L. Andre, and D. Cardinal. 2011. Effect of seasonal biogenic silica variations on dissolved silicon fluxes and isotopic signatures in the Congo River. Limnology and Oceanography 56 (2):551–61. doi:10.4319/lo.2011.56.2.0551
  • Inanaga, S., A. Okasaka, and S. Tanaka. 1995. Does silicon exist in association with organic compounds in rice plants? Soil Science and Plant Nutrition 41:111–17. doi:10.1080/00380768.1995.10419564
  • Li, Z. M., Z. L. Song, J. F. Parr, and H. L. Wang. 2013. Occluded C in rice phytoliths: Implications to biogeochemical carbon sequestration. Plant Soil 370:615–23. doi:10.1007/s11104-013-1661-9
  • Ma, J. F., A. Higashitani, K. Sato, and K. Takeda. 2003. Genotypic variation in silicon concentration of barley grain. Plant Soil 249 (2):383–87.
  • Ma, J. F., K. Tamai, M. Ichii, and G. F. Wu. 2002. A rice mutant defective in Si uptake. Plant Physiology 130 (4):2111–17. doi:10.1104/pp.010348
  • Marin-Carbonne, J., F. Robert, and M. Chaussidon. 2014. The silicon and oxygen isotope composition of Precambrian cherts: A record of oceanic paleo-temperatures? Precambrian Research 247:223–34. doi:10.1016/j.precamres.2014.03.016
  • Mitani, N., and J. F. Ma. 2005. Uptake system of silicon in different plant species. Journal of Experimental Botany 56 (414):1255–61. doi:10.1093/jxb/eri121
  • Nonaka, K., and K. Takahashi. 1988. A method of measuring available silicates in paddy soils. Japan Agricultural Research Quarterly 22:91–95.
  • Opfergelt, S., D. Cardinal, C. Henriet, L. André, and B. Delvaux. 2006a. Silicon isotope fractionation between plant parts in banana: In situ vs. in vitro. Journal of Geochemical Exploration 88:224–27.
  • Opfergelt, S., D. Cardinal, C. Henriet, L. André, and B. Delvaux. 2006b. Silicon isotopic fractionation by banana (Musa spp.) grown in a continuous nutrient flow device. Plant Soil 285:333–45.
  • Opfergelt, S., B. Delvaux, L. André, and D. Cardinal. 2008. Plant silicon isotopic signature might reflect soil weathering degree. Biogeochemistry 91:163–75. doi:10.1007/s10533-008-9278-4
  • Pajchel, L., P. Nykiel, and W. Kolodziejski. 2011. Elemental and structural analysis of silicon forms in herbal drugs using silicon-29 MAS NMR and WD-XRF spectroscopic methods. Journal of Pharmaceutical and Biomedical Analysis 56 (4):846–50. doi:10.1016/j.jpba.2011.06.024
  • Proost, J., R. Santoro, S. Abu Jeriban, and I. Guiot. 2008. Spectrophotometric determination of silicon in ultrapure, dilute hydrofluoric acid solutions. Microchemical Journal 89:48–51. doi:10.1016/j.microc.2007.11.004
  • Sangster, A. G., and M. J. Hodson. 1986. Silica in higher plants. In Silicon Biochemistry. Ciba Foundation Symposium, Wiley, Chichester, vol. 121, 140–59.
  • Sun, L., L. H. Wu, T. P. Ding, and S. H. Tian. 2008. Silicon isotope fractionation in rice plants, an experimental study on rice growth under hydroponic conditions. Plant Soil 304:291–300. doi:10.1007/s11104-008-9552-1
  • Tréguer, P. J., and C. L. De La Rocha. 2013. The world ocean silica cycle. Annual Review of Marine Science 5:477–501. doi:10.1146/annurev-marine-121211-172346
  • van den Boorn, S. H. J. M., P. Z. Vroon, C. C. van Belle, B. van der Wagt, J. Schwieters, and M. J. van Bergen. 2006. Determination of silicon isotope ratios in silicate materials by high-resolution MC-ICP-MS using a sodium hydroxide sample digestion method. Journal of Analytical Atomic Spectrometry 21:734–42. doi:10.1039/b600933f
  • Wang, J., Z. W. Liao, and L. M. Shuman. 1994. Interaction of silicon, iron, and manganese in rice (Oryza-Sativa L.) rhizosphere at low pH in relation to rice growth. Journal of Plant Nutrition 17 (5):775–85. doi:10.1080/01904169409364766
  • Wang, W. M., J. L. Liu, and X. D. Zhou. 2003. Climate indexes of phytoliths from Homo erectus’ cave deposits in Nanjing. Chinese Science Bulletin 48:2005–2009. doi:10.1007/bf03183995
  • Weyer, S., and J. B. Schwieters. 2003. High precision Fe isotope measurements with high mass resolution MC-ICP-MS. International Journal of Mass Spectrometry 226:355–68. doi:10.1016/s1387-3806(03)00078-2
  • Yamaji, N., G. Sakurai, N. Mitani-Ueno, and J. F. Ma. 2015. Orchestration of three transporters and distinct vascular structures in node for intervascular transfer of silicon in rice. Proceedings of the National Academy of Sciences USA 112 (36):11401–06. doi:10.1073/pnas.1508987112
  • Ziegler, K., O. A. Chadwick, M. A. Brzezinski, and E. F. Kelly. 2005. Natural variations of δ30Si ratios during progressive basalt weathering, Hawaiian Islands. Geochimica et Cosmochimica Acta 69 (19):4597–610.

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