221
Views
3
CrossRef citations to date
0
Altmetric
Original Papers: Plant Nutrition

Difference in response to aluminum among Japanese coniferous species

&
Pages 755-761 | Received 14 Apr 2004, Published online: 14 Sep 2011

References

  • Chang , Y-C , Yamamoto , Y and Matsumoto , H . 1999 . Enhancement of callose production by a combination of aluminum and iron in suspension-cultured tobacco (Nicotiana tabacum) cells . Soil Sci. Plant Nut. , 45 : 337 – 347 .
  • Degenhardt , J , Larsen , PB , Howell , SH and Kochian , LV . 1998 . Aluminum resistance in Arahidopsis mutant alr.-104 is caused by an aluminum-induced increase in rhizosphere pH . Plant Physiol. , 117 : 19 – 27 .
  • Delhaize , E and Ryan , PR . 1995 . Aluminum toxicity and tolerance in plants . Plant Physiol. , 107 : 315 – 321 .
  • Foy , CD , Chaney , RL and White , MC . 1978 . The physiology of metal toxicity in plants . Annu. Rev. Plant Physiol. , 29 : 511 – 566 .
  • Heim , A , Luster , J , Brunner , I , Frey , B and Frossard , E . 1999 . Effects of aluminium treatment on Norway spruce roots: Aluminium binding forms, element distribution, and release of organic substances . Plant Soil , 216 : 103 – 116 .
  • Horst , WJ , Asher , CJ , Cakmak , I , Szulkiewicz , P and Wissemeier , AH . 1992 . Short-term responses of soybean roots to aluminium . J. Plant Physiol. , 140 : 174 – 178 .
  • Horst , WJ , üschel , A-K and Schmohl N . 1997 . Induction of callose formation is a sensitive marker for genotypic aluminium sensitivity in maize . Plant Soil , 192 : 23 – 30 .
  • Kaneko , M , Yoshimura , E , Nishizawa , NK and Mori , S . 1999 . Time course study of aluminum-induced callose formation in barley roots as observed by digital microscopy and lowvacuum scanning electron microscopy . Soil Sci. Plant Nutr. , 45 : 701 – 712 .
  • Kauss , H . 1989 . “ Fluorometric measurement of callose and other l,3-\gB-glucans ” . In Modem Methods of Plant Analysis , Edited by: Linkens , HF and Jackson , JF . Vol. 10 , 127 – 137 . Berlin : Springer . Plant Fibers
  • Kauss , H . 1996 . “ Callose synthesis ” . In Membranes: Specialized Functions in Plants , Edited by: Smallwood , M , Knox , JP and Bowles , DJ . 77 – 92 . Oxford : Bios Scientific Publishers .
  • Keltjens , WG and Loenen , EV . 1989 . Effects of aluminium and mineral nutrition on growth and chemical composition of hydroponically grown seedlings of five different forest tree species . Plant Soil , 119 : 39 – 50 .
  • Kelly , JM , Schaedle , M , Thornton , FC and Joslin , JD . 1990 . Sensitivity of tree seedlings to aluminum: II. Red oak, sugar maple, and European beech . J. Environ. Qual. , 19 : 172 – 179 .
  • Kho , YO and Baer , J . 1968 . Observing pollen tubes by means of fluorescence . Euphytica , 17 : 298 – 302 .
  • Kinraide , TB , Ryan , PR and Kochian , LV . 1992 . Interactive effects of Al3+, H+, and other cations on root elongation considered in terms of cell-surface electrical potential . Plant Physiol. , 99 : 1461 – 1468 .
  • Kochian , LV . 1995 . Cellular mechanism of aluminum toxicity and resistance in plants . Annu. Rev. Plant Physiol. Plant Mol. Biol. , 46 : 237 – 260 .
  • Köhle , H , Jeblick , W , Poten , F , Blaschek , W and Kauss , H . 1985 . Chitosan-elicited callose synthesis in soybean cells as a Ca2+-dependent process . Plant Physiol. , 77 : 544 – 551 .
  • Kohno , Y , Matsumura , H and Kobayashi , T . 1995 . Effect of aluminum on the growth and nutrient uptake in Cryptomeria japonica D. Don and Chamaecyparis obtusa Sieb. et Zucco l . Jpn. Soc. Atmos. Environ. , 30 : 316 – 326 .
  • Larsen , PB , Tai , C-Y , Kochian , LV and Howell , SH . 1996 . Arabidopsis mutants with increased sensitivity to aluminum . Plant Physiol. , 110 : 743 – 751 .
  • Lucas , WJ , Ding , B and Schoot , CVD . 1993 . Plasmodesmata and the supracellular nature of plants . New Phytol. , 125 : 433 – 476 .
  • Ma , JF . 2000 . Role of organic acids in detoxification of aluminum in higher plants . Plant Cell Physiol. , 41 : 383 – 390 .
  • Martell , AE and Motekaitis , RJ . 1989 . “ Coordination chemistry and specification of Al (III) in aqueous solution ” . In In Environmental Chemistry and Toxicology of Aluminum , Edited by: Lewis , TE . 3 – 17 . Chelsea : Lewis Publishers .
  • Miyake , H , Kamei , S , Izuta , T and Totsuka , T . 1991 . Effects of aluminium on the growth of hydroponically grown seedlings of Cryptomeria japonica D . Don. Man Environ. , 17 : 10 – 16 .
  • Ofei-Manu , P , Wagatsuma , T , Ishikawa , S and Tawaraya , K . 2001 . The plasma membrane strength of the root tip cells and root phenolic compounds are correlated with Al tolerance in several common woody plants . Soil Sci. Plant Nutr. , 47 : 359 – 375 .
  • Parker , DR , Norvell , WA and Chaney , RL . 1995 . “ GEOCHEM-PC: A chemical speciation program for IBM and compatible personal computers ” . In Chemical Equibrium and Reaction Models , Edited by: Loeppert , RH , Schwab , AP and Goldberg , S . 253 – 269 . Madison : Soil Sci. Soc. America .
  • Persson , H and Majdi , H . 1995 . Effects of acid deposition on tree roots in Swedish forest stands . Water, Air, Soil Pollut. , 85 : 1287 – 1292 .
  • Ryan , PJ , Gessel , SP and Zasoski , RJ . 1986 . Acid tolerance of Pacific Northwest conifers in solution culture. II. Effect of varying aluminium concentration at constant pH . Plant Soil , 96 : 259 – 272 .
  • Saigusa , M . 1994 . “ Chemistry of aluminum in acid soil ” . In In Low pH Soil and Plant , Edited by: Inoue , K and Mori , S . 8 – 42 . Tokyo : Hakuyuusha .
  • Sivaguru , M , Fujiwara , T , \>Samaj , J , Balu\>ska , F , Yang , Z , OsawavH , Maeda , T , Mori , T , Volkman , D and Matsumoto , H . 2000 . Aluminum-induced 1≽3-\gB-D-glucan inhibits cell to cell trafficking of molecules through plasmodesmata. A new mechanism of aluminum toxicity in plants . Plant Physiol. , 124 : 991 – 1005 .
  • Thornton , FC , Schaedle , M and Raynal , DJ . 1986 . Effects of aluminum on growth, development, and nutrient composition of honeylocust (Gleditsia triacanthos L.) seedlings . Tree Physiol. , 2 : 307 – 316 .
  • Tsutsumi , T . 1962 . Basic study about nutrient and fertilization of Japanese main afforest tree species . Bull. Govern. For. Exp. Stn. , 137 : 27 – 32 .
  • Wissemeier , AH , Diening , A , Hergenröder , A , Horst , WJ and Mix-Wagner , G . 1992 . Callose formation as parameter for assessing genotypical plant tolerance of aluminium and manganese . Plant Soil , 146 : 67 – 75 .
  • Wissemeier , AH , Hahn , G and Marschner , H . 1998 . Callose in roots of Norway spruce (Picea abies (L.) Karst.) is a sensitive parameter for aluminium supply at a forest site (Hoglwald) . Plant Soil , 199 : 53 – 57 .
  • Yoneda , Y , Shibata , E , Sumi , T and Wada , Y . 1995 . Characteristic of throughfall and stemflow in Cryptomeria japonica, Chamaecyparis obtusa, and Quercus serrata stands and their effect on surface soil . Nihon Ringakkai Kannsai Siron , 4 : 47 – 50 .
  • Zhang , G , Hoddinott , J and Taylor , GJ . 1994 . Characterization of 1,3-\gB-D-glucan (callose) synthesis in roots of Triticum aestivum in response to aluminum . J. Plant Physiol. , 144 : 229 – 234 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.