Plant Biol (Stuttg) 2002; 4(6): 682-687
DOI: 10.1055/s-2002-37403
Original Paper
Georg Thieme Verlag Stuttgart ·New York

Epiphytic Bacteria Associated with the Bryophyte Funaria hygrometrica: Effects of Methylobacterium Strains on Protonema Development

M. Hornschuh, R. Grotha, U. Kutschera
  • Fachbereich Biologie, Universität Kassel, Kassel, Germany
Weitere Informationen

Publikationsverlauf

Received: September 5, 2002

Accepted: December 3, 2002

Publikationsdatum:
24. Februar 2003 (online)

Abstract

Bacteria represent a substantial fraction of the microorganisms that inhabit leaf surfaces. We collected samples of the moss Funaria hygrometrica (L.) in the field and analysed the epiphytes on the gametophyte by the agar impression method and scanning electron/fluorescence microscopy. On the phylloid surface numerous bacteria were detected, notably in the grooves between adjacent lamina cells. Methanol-ammonium salts agar surfaces impressed with isolated phylloids of green gametophytes resulted in the growth of methylotrophic colonies. Two Methylobacterium strains (M. mesophilicum and M. sp., isolated from the Funaria phylloids) were found to simulate the well-known effect of cytokinin application on bud formation in Funaria protonemata. In addition, Methylobacterium inoculation promoted the growth of protonemal filaments. The significance of this novel Methylobacterium-land plant interaction is discussed.

Abbreviations

PPFMs: Pink-pigmented facultatively methylotrophic bacteria

References

  • 01 Ashby,  A. M.. (2000);  Biotrophy and the cytokinin conundrum.  Physiol. Mol. Plant Path.. 57 147-158
  • 02 Basile,  D. V.,, Slade,  L. L.,, and Corpe,  W. A.. (1969);  An association between a bacterium and a liverwort, Scapania nemorosa. .  Bull. Torr. Bot. Club. 96 711-714
  • 03 Bopp,  M., and Atzorn,  R.. (1992);  Hormonal regulation of moss development.  Naturwiss.. 79 337-346
  • 04 Corpe,  W. A.. (1985);  A method for detecting methylotrophic bacteria on solid surfaces.  J. Microbiol. Meth.. 3 215-221
  • 05 Frahm,  J.-P.. (1994);  Moose - lebende Fossilien.  Biologie i. u. Zeit. 24 120-124
  • 06 Green,  P. N.. (1992) Taxonomy of methylotrophic bacteria. Methane and methanol utilizers. Murrell, J.C. and Dalton, H., eds. New York; Plenum Press pp. 23-84
  • 07 Holland,  M. A.. (1997);  Methylobacterium and plants.  Rec. Res. Dev. Plant Physiol.. 1 207-213
  • 08 Ivanova,  E. G.,, Doronina,  N. V.,, Shepelyakovskaya,  A. O.,, Laman,  A. G.,, Brovko,  F. A.,, and Trotsenko,  Y. A.. (2000);  Facultative and obligate aerobic methylobacteria synthesize cytokinins.  Microbiology. 69 646-651
  • 09 Ivanova,  E. G.,, Doronina,  N. V.,, and Trotsenko,  Y. A.. (2001);  Aerobic methylobacteria are capable of synthesizing auxins.  Microbiology. 70 392-397
  • 10 Kakimoto,  T.. (2001);  Identification of plant cytokinin biosynthetic enzymes as dimethylallyl diphosphate: ATP/ADP isopentyltransferases.  Plant Cell Physiol.. 42 677-685
  • 11 Koenig,  R. L.,, Morris,  R. O.,, and Polacco,  J. C.. (2002);  tRNA is the source of low-level trans-zeatin production in Methylobacterium spp.  J. Bacteriol.. 184 1832-1842
  • 12 Kutschera,  U.. (2002);  Bacterial colonization of sunflower cotyledons during seed germination.  J. Appl. Bot.. 76 96-98
  • 13 Kutschera,  U.,, Koopmann,  V.,, and Grotha,  R.. (2002);  Plant development in the absence of epiphytic microorganisms.  Naturwiss.. 89 319-321
  • 14 Kutschera,  U.,, Siebert,  C.,, Masuda,  Y.,, and Sievers,  A.. (1990);  Effects of submergence on development and gravitropism in the coleoptile of Oryza sativa L.  Planta. 183 112-119
  • 15 Reutter,  K.,, Atzorn,  R.,, Hadeler,  B.,, Schmülling,  T.,, and Reski,  R.. (1998);  Expression of the bacterial ipt gene in Physomitrella rescues mutations in budding and in plastid division.  Planta. 206 196-203
  • 16 Reski,  R.. (1998);  Development, genetics and molecular biology of mosses.  Bot. Acta. 111 1-15
  • 17 Scherp,  P.,, Grotha,  R.,, and Kutschera,  U.. (2001);  Occurrence and phylogenetic significance of cytokinesis-related callose in green algae, ferns and seed plants.  Plant Cell Rep.. 20 143-149
  • 18 Takei,  K.,, Sakakibara,  H.,, and Sugiyama,  T.. (2001);  Identification of genes encoding adenylate isopentenyltransferase, a cytokinine biosynthesis enzyme, in Arabidopsis thaliana. .  J. Biol. Chem.. 276 26405-26410
  • 19 Trotsenko,  Y. A.,, Ivanova,  E. G.,, and Doronina,  N. V.. (2001);  Aerobic methylotrophic bacteria as phytosymbionts.  Microbiology. 70 623-632

U. Kutschera

Fachbereich Biologie
Universität Kassel

Heinrich-Plett-Straße 40
34109 Kassel
Germany

eMail: kut@uni-kassel.de

Section Editor: G. Thiel

    >