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23 Visualisation of Rhizosphere Interactions 447<br />

Silo-suh LA, Lethbridge BJ, Raffel SJ, He H, Clardy J, Handelsman J (1994) Biological<br />

activities of two fungistatic antibiotics produced by Bacillus cereus UW85. Appl Environ<br />

Microbiol 60:2023–2030<br />

Simons M, van der Bij AJ, Brand J, de Weger LA, Wijffelman CA, Lugtenberg BJJ (1996)<br />

Gnotobiotic system for studying rhizosphere colonization by <strong>plant</strong> growth-promoting<br />

Pseudomonas bacteria. Mol Plant-Microbe Interact 9:600–607<br />

Steidle A, Sigl K, Schuhegger R, Ihring A, Schmid M, Gantner S, Stoffels M, Riedel K,<br />

Givskov M, Hartmann A, Langebartels C, Eberl L (2001) Visualization of N-acylhomoserine<br />

lactone-mediated cell-cell communication between bacteria colonizing the<br />

tomato rhizosphere. Appl Environ Microbiol 67:5761–5770<br />

Stretton S, Techkarnjanaruk S, McLennan AM, Goodman AE (1998) Use of green fluorescent<br />

protein to tag and investigate gene expression in marine bacteria. Appl Environ<br />

Microbiol 64:2554–2559<br />

Stutz EW, Defago G, Kern H (1986) Naturally occurring fluorescent pseudomonads<br />

involved in the suppression of black root rot of tobacco. Phytopathology 76:181–185<br />

Stuurman N, Bras CP, Schlaman HR, Wijfjes AH, Bloemberg G, Spaink HP (2000) Use of<br />

green fluorescent protein color variants expressed on stable broad-host-range vectors<br />

to visualize rhizobia interacting with <strong>plant</strong>s. Mol Plant Microbe Interact 13:1163–1169<br />

Suarez A, Guttler A, Stratz M, Staendner LH, Timmis KN, Guzman CA (1997) Green fluorescent<br />

protein-based reporter systems for genetic analysis of bacteria including<br />

monocopy applications. Gene 196:69–74<br />

Tilburn J, Scazzocchio C, Taylor GG, Zabicky-Zissman JH, Lockington RA, Davies RW<br />

(1983) Transformation by integration in Aspergillus nidulans. Gene 26:205–221<br />

Tombolini R, Unge A, Davey ME, deBruijn FJ, Jansson JK (1997) Flow cytometric and<br />

microscopic analysis of GFP-tagged Pseudomonas fluorescens bacteria. FEMS Microbiol<br />

Ecol 22:17–28<br />

Tombolini R, van der Gaag DJ, Gerhardson B, Jansson JK (1999) Colonization pattern of<br />

the biocontrol strain Pseudomonas chlororaphis MA 342 on barley seeds visualized by<br />

using green fluorescent protein. Appl Environ Microbiol 65:3674–3680<br />

Tyagi JS, Kinger AK (1992) Identification of the 10Sa RNA structural gene of Mycobacterium<br />

tuberculosis. Nucleic Acids Res 20:138<br />

Unge A, Tombolini R, Davey ME, de Bruijn FJ, Jansson JK (1998) GFP as a marker gene.<br />

In: Akkermans AD, van Elsas JD, de Bruijn FJ (eds) Molecular microbial ecology manual.<br />

Kluwer, Dordrecht, pp 1–16<br />

Unge A, Tombolini R, Molbak L, Jansson JK (1999) Simultaneous monitoring of cell<br />

number and metabolic activity of specific bacterial populations with a dual gfpluxAB<br />

marker system. Appl Environ Microbiol 65:813–821<br />

Ushida C, Himeno H, Watanabe T, Muto A (1994) tRNA-like structures in 10Sa RNAs of<br />

Mycoplasma capricolum and Bacillus subtilis. Nucleic Acids Res 22:3392–3396<br />

Valdivia RH, Falkow S (1996) Bacterial genetics by flow cytometry: rapid isolation of Salmonella<br />

typhimurium acid-inducible promoters by differential fluorescence induction.<br />

Mol Microbiol 22:367–378<br />

Valdivia RH, Hromockyj AE, Monack D, Ramakrishnan L, Falkow S (1996) Applications<br />

for green fluorescent protein (GFP) in the study of host–pathogen interactions. Gene<br />

173:47–52<br />

Vaneechoutte M, Boerlin P, Tichy HV, Bannerman E, Jager B, Bille J (1998) Comparison of<br />

PCR-based DNA fingerprinting techniques for the identification of Listeria species<br />

and their use for atypical Listeria isolates. Int J Syst Bacteriol 48:127–139<br />

Ward DM (1989) Molecular probes for analysis of microbial communities. In: Characklis<br />

WG, Wilderer PA (eds) Structure and function of biofilms. Wiley, New York, pp<br />

145–155

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