433
Views
11
CrossRef citations to date
0
Altmetric
Article Addendum

Boron dependent membrane glycoproteins in symbiosome development and nodule organogenesis

A model for a common role of boron in organogenesis

, , &
Pages 298-300 | Received 05 Nov 2007, Accepted 08 Nov 2007, Published online: 01 May 2008

References

  • Warington K. The effect of boric acid and borax on the broad been and certain other plants. Ann Bot 1923; 37:629 - 672
  • Brown PH, Bellaloui N, Wimmer MA, Bassil ES, Ruiz J, Hu H, Pfeffer H, Dannel F, Römheld V. Boron in plant biology. Plant Biol 2002; 4:205 - 223
  • Xu F, Goldbac HE, Brown PH, Bell RW, Fujiwara T, Hunt CD, Goldberg S, Shi L. Advances in Plant and Animal Boron Nutrition 2007; Dordrecht Springer
  • O'Neill MA, Ishii T, Albersheim P, Darvill AG. Rhamnogalacturonan II: Structure and function of a borate crosslinked cell wall pectic polysaccharide. Annu Rev Plant Biol 2004; 55:109 - 139
  • Chen X, Schauder S, Potier N, Van Dorsselaer A, Pelczer I, Bassler B, Hughson FM. Structural identification of a bacterial quorum-sensing signal containing boron. Nature 2002; 415:545 - 549
  • García-González M, Mateo P, Bonilla I. Boron requirement for envelope structure and function in Anabaena PCC 7119 heterocysts. J Exp Botany 1991; 42:925 - 929
  • Bolaños L, Redondo-Nieto M, Bonilla I, Wall LG. Boron requirement in the Discaria trinervis (Rhamnaceae) and Frankia symbiotic relationship. Its essentiality for Frankia BCU110501 growth and nitrogen fixation. Physiol Plant 2002; 115:563 - 570
  • Bolaños L, Lukaszewski K, Bonilla I, Blevins D. Why boron?. Plant Physiol and Biochem 2004; 42:907 - 912
  • Stougaard J. Regulators and regulation of legume root nodule development. Plant Physiol 2000; 24:531 - 540
  • Perotto S, VandenBosch KA, Butcher GW, Brewin NJ. Molecular composition and development of the plant glycocalyx associated with the peribacteroid membrane of pea root nodules. Development 1991; 112:763 - 773
  • Robertson JG, Lyttleton P. Division of peribacteroid membranes in root nodules of white clover. J Cell Sci 1984; 69:147 - 157
  • Bolaños L, Brewin NJ, Bonilla I. Effects of boron on Rhizobium-legume cell-surface interactions and nodule development. Plant Physiology 1996; 110:1249 - 1256
  • Redondo-Nieto M, Pulido L, Reguera M, Bonilla I, Bolaños L. Developmentally regulated membrane glycoproteins sharing antigenicity with rhamnogalacturonan II are not detected in nodulated boron deficient Pisum sativum. Plant Cell Environm 2007; 30:1436 - 1443
  • Bolaños L, Cebrián A, Redondo-Nieto M, Rivilla R, Bonilla I. Lectin-like glycoprotein PsNLEC-1 is not correctly glycosylated and targeted in boron deficient pea nodules. Mol Plant-Microbe Interact 2001; 14:663 - 670
  • Bolaños L, Redondo-Nieto M, Rivilla R, Brewin NJ, Bonilla I. Cell surface interactions of Rhizobium and other bacterial strains with symbiosomal and peribacteroid membrane components from pea nodules. Mol Plant-Microbe Interact 2004; 17:216 - 223
  • Sherrier DJ, Borisov AY, Tikhonovich IA, Brewin NJ. Immunocytological evidence for abnormal symbiosome development in nodules of the pea mutant line Sprint2Fix− (sym31). Protoplasma 1997; 199:57 - 68
  • Perotto S, Brewin NJ, Kannenberg EL. Cytological evidence for a host defense response that reduces cell and tissue invasion in pea nodules by lipopolysaccharide-defective mutants of Rhizobium leguminosartim strain 3841. Mol Plant-Microbe Interact 1994; 7:99 - 112
  • Goldbach HE. A critical review of current hypotheses concerning the role of boron in higher plants: Suggestion for further research and its methodological requirements. J Trace Microprobe Tech 1997; 15:51 - 92
  • Yu Q, Hlavacka A, Matoh T, Volkmann D, Menzel D, Goldbach HE, Baluska F. Short-term boron deprivation inhibits endocytosis of cell wall pectins in meristematic cells of maize and wheat root apices. Plant Physiol 2002; 130:415 - 421
  • Bonilla I, Mergold-Villaseñor C, Campos ME, Sánchez N, Pérez H, López L, Castrejón L, Sánchez F, Cassab GI. The aberrant cell walls of boron-deficient bean root nodules have no covalently bound hydroxyprolin-/proline-rich proteins. Plant Physiol 1997; 115:1329 - 1340
  • Redondo-Nieto M, Wilmot A, El-Hamdaoui A, Bonilla I, Bolaños L. Relationship between boron and calcium in the N2-fixing legume-rhizobia symbiosis. Plant Cell Environm 2003; 26:1905 - 1915
  • Eckhert CD. Boron stimulates embryonic trout growth. J Nutr 1998; 128:2488 - 2493
  • Fort DJ, Stover EL, Strong PL, Murray FJ, Keen CL. Chronic feeding of a low boron diet adversely affects reproduction and development in Xenopus laevis. J Nutr 1999; 129:2055 - 2060
  • Rowe RI, Eckhert CD. Boron is required for zebrafish embryogenesis. J Exp Biol 1999; 202:1649 - 1654
  • Meacham S, Elwell KE, Ziegler S, Carper SW. Xu F, Goldbac HE, Brown PH, Bell RW, Fujiwara T, Hunt CD, Goldberg S, Shi L. Boric acid inhibits cell growth in breast and prostate cancer cell line. Advances in Plant and Animal Boron Nutrition 2007; Dordrecht Springer 299 - 306

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.