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Progress in Chemistry 1999, Vol. 11 Issue (02): 119- Previous Articles   Next Articles

• Review •

Biomineralized Nanostructured Materials and Plant Silicon Nutrition

Wang Lijun;Guo Zhongman;Li Tiejin;LiMin   

  1. Department of Chemistry, Jilin University, Changchun 130023, China College of Resources and Environmental Sciences,China Agricultural University, Beijing 100094, China"
  • Received: Revised: Online: Published:
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The chemical processes of the synthesis and assembly of nanos ructured SiO2 by cellmembrane and cellwall templates are elaborated on the basis of developments of biomineralized nanostructured materials chemistry. The studies on biomineralized SiO2 are not only of significance for nanochemistry, but also provide a powerful clue to elucidate the mechanism of Sinutrition for increasing the ability of plant to tolerate the environmental stresses.

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[1 ] Mann S, Perry C C, Silicon Biochemistry , Ciba Foundation Symposium 121, John Wiley & Sons,1986, 40—122.
[2 ] 何基保(He J B) , 温树林(Wen S L ) , 自然杂志(Nature J. ) , 1997, 19 (5) , 272.
[3 ] Berman A , Hanson J , Leiserowitz L , Koetzle T F, Science , 1990, 250, 664.
[4 ] Weiner S, Addadi L , J. Mater. Chem. , 1997, 7, 689.
[5 ] Samuel I S, PaulV B, Science, 1997, 277, 1242.
[6 ] Lawn B, Fracture of Brittle Solids, Cambridge Univ. Press, Cambridge, 1993.
[7 ] Harrison C C, Phytochemisty , 1996, 41, 37.
[8 ] Aizenberg J , Lambert G, Addadi L , Weiner S, Ad v. Mater. , 1996, 8, 222.
[9 ] Becker G L , Chen C H, Greenwalt J W , Lehninger L , J. Cell Biol. , 1974, 61, 316.
[10 ] Blackmore R P, Frankel R B, Sci. Am. , 1981, 245, 42.
[11 ] Schultze-Lam S. , Harauz G, Beveridge T J , J. Bacteriol. , 1992, 174, 7971.
[12 ] AddadiL , Weiner S, Proc. Natl. Acad. Sci. , 1985, 82, 4110.
[13 ] Addadi L , Moradian J , Shay E, Maroudas N G, Weiner S, Proc. Natl. Acad. Sci. , 1987, 84,2732.
[14 ] Mann S, Nature , 1988, 332, 119.
[15 ] Mann S, Hannington J P, Williams R J P, Nature , 1986, 324, 565.
[16 ] Lowenstam H A , Science, 1981, 211, 1126.
[17 ] Mann S, Archibald D D, Didymus J M , Douglas T , Science , 1993, 261, 1286.
[18 ] Bunker B C, Science, 1994, 264, 48.
[19 ] Ziolo R F, Science, 1992, 257, 219.
[20 ] Mann S, Hannington J P, J. Colloid Interface Sci. , 1988, 122, 326.
[21 ] Dalas E, Kallitsis J K, Koutsoukos P G, Langmuir, 1991, 7, 1822.
[22 ] Zhao X K, Fendler J H, J. Phys. Chem. , 1991, 95, 3716.
[23 ] Yang H, Coombs N , Ozin G A , Nature, 1997, 386, 692.
[24 ] Davis S A , Burkett S L , Mendelson N H, Mann S, Nature, 1997, 385, 420.
[25 ] Shenton W , Pum D, Steytr U B, Mann S, Nature, 1997, 389, 585.
[26 ] Berman A , Hanson J , Leiserowitz L , Koetzle T F, Weiner S, Addadi L , Science, 1993, 259, 776.
[27 ] Mann S, Ozin G A , Nature, 1996, 382, 313.
[28 ] Simpson T L , Volcani B E, Siliconand Siliceous Structures in Biological Systems, Springer, New York, 1981.
[29 ] Hecky R E, Mopper K, Kilham P, Degens E T , Mar. Biol. , 1973, 19, 323.
[30 ] Sullivan C W , J. Phycol. , 1980, 16, 321.
[31 ] Swift D W , Wheeler A P, J. Phycol. , 1992, 28, 202.
[32 ] Kroger N , Bergsdorf C, Sumper M , The EM BO J. , 1994, 19, 4676.
[33 ] Perry C C, Biomineralization, Chemicaland Biological Perspectives, VCH, Weinheim, 1989.
[34 ] Albeck S. Aizenberg J , Addadi L , Weiner S, J. Am. Chem. Soc. , 1993, 115, 11691.
[35 ] Iler R K, The Chemistryof Silica, JohnWiley, 1979, 7432744.
[36 ] Parry D W , Kelso M , Ann. Bot. , 1975, 39, 995.
[37 ] Sangster A G, Can. J. Bot. , 1976, 55, 880.
[38 ] Sangster A G, Can. J. Bot. , 1977, 56, 1074.
[39 ] Sangster A G, Ann. Bot. , 1977, 41, 341.
[40 ] Sangster A G, Amer. J. Bot. 1978, 65, 929.
[41 ] Montgomery D J , Parry D W , Ann. Bot. , 1979, 44, 79.
[42 ] Kaufman P B, Dayanandan P, Franklin C I, Takeoka Y J , Ann. Bot. , 1985, 55, 487.
[43 ] Leadbeater B S C, Protoplasma, 1979, 98, 241.
[44 ] Mann S, J. Chem. Soc. Chem. Commun. , 1983, 168, 12.
[45 ] Perry S, Proc. R. Soc. Lond B Biol. Sci. , 1984, 222, 439.
[46 ] Perry C C, Williams R J P, Fry S C, Phytochemistry , 1986, 34, 678.
[47 ] Blank G, Sullivan C W , Arch. Microbiol. , 1979, 123, 157.
[48 ] Blank G S, Sullivan C W , Eur. J. Cell Biol. , 1980, 22, 463.
[49 ] Schmid A M , Schulz D, Protoplasma, 1979, 100, 267.
[50 ] Pickett-Heaps J D, Biol. Cell, 1979, 35, 199.
[51 ] Blank G S, Sullivan C W , J. Phycol. , 1983, 19, 294.
[52 ] Schmid A M ,in Proc. 7th In. Diatom Symp. , Koeltz, Koenigstein, 1984.
[53 ] Craw ford R M , Protoplasma, 1981, 106, 157.
[54 ] Waterkeyn L , Bienfait A , Peeters A , Cell, 1982, 73, 267.
[55 ] Hansma H G, J. Structural Biol. , 1997, 119, 99.
[56 ] Epstein E, Proc. Natl. Acad. Sci. USA , 1994, 91, 11.
[57 ] Jones L H P, Handreck K A , Adv. Agron. , 1967, 19, 107.
[58 ] McNaughton S J , Proc. Natl. Acad. Sci. USA , 1983, 80, 790.
[59 ] Hodson M J , Sangster A G, Ann. Bot. , 1988, 62, 463.
[60 ] Boylston E K, J. Plant Nutr. , 1990, 13, 131.
[61 ] Zhou T S, Ann. Bot. , 1995, 75, 605.
[62 ] Williams D E, Vlamis J , J Plant Physiol. , 1957, 32, 404.
[63 ] Ma J , Takahashi E, Plant Soil, 1990, 126, 115.
[64 ] Marschner H, Plant Soil, 1990, 120, 211.
[65 ] Emadian S F, Newton R J , J. Plant Physiol. , 1989, 134, 98.
[66 ] Adatia M H, Besford R T O , Ann. Bot. , 1986, 58, 343.
[67 ] Gali H U , Smith C C, Am. J. Bot. , 1992, 79, 1259.
[68 ] Anderson D L , Snyder G H, Martin F G, Agron. J. , 1991, 83, 870.
[69 ] Rafi M M , Epstein E, Falk R H, J. Plant Physiol. , 1997, 151, 497.
[70 ] Raven J A , Biol. Rev. , 1983, 58, 170.
[71 ] Belanger R R, Bowen P A , Ehret D L , Menzies J G, Plant Dis. , 1995, 79, 329.
[72 ] Osuna-Canizales F G, Dedatta S K, Bonman J M , Plant Soil, 1991, 135, 223.
[73 ] Datnoff L E, Raid R N , Snyder G H, Jones D B, Plant Dis. , 1991, 75, 729.
[74 ] Datnoff L E, Snyder G H, Deren C W , Plant Dis. , 1992, 76, 1182.
[75 ] Savant N K, Snyder G H, Dantnoff L E, Adv. A gron. , 1997, 58, 151.
[76 ] Carver T G, Zeyen R J , Ahlstrand G G, Physiol. Mol. Plant Pathol. , 1987, 31, 133.
[77 ] Deren C W , Datnoff L E, Snyder G H, J. Plant Nutr. , 1992, 15, 2363.
[78 ] Deren C W , Datnoff L E, Snyder G H, Martin F G, Crop Sci. , 1994, 34, 733.
[79 ] Cherif M , Asselin A , Belenger R R, Phytopathology , 1994, 84, 236.
[80 ] Liang Y C, Shen Q , Shen Z, Ma T , J. Plant Nutr. , 1996, 19, 173.
[81 ] Horiguchi T , Soil Sci. Plant Nutr. , 1988, 34, 65.

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