The role of biotechnology in art preservation.
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[1] R. Petit,et al. Novel perspectives in wood certification and forensics: dry wood as a source of DNA , 2002, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[2] A. V. Humboldt,et al. Vom Orinoko zum Amazonas : Reise in die Äquinoktial-Gegenden des neuen Kontinents , 1959 .
[3] N. Duran,et al. Bioluminescent bacteria: lux genes as environmental biosensors , 2003 .
[4] C. Sorlini,et al. Biotechnology applied to cultural heritage: biorestoration of frescoes using viable bacterial cells and enzymes , 2005, Journal of applied microbiology.
[5] H. R. Whiteley,et al. Insecticidal crystal proteins of Bacillus thuringiensis. , 1989, Microbiological reviews.
[6] W. Lubitz,et al. Medieval wall paintings—a habitat for archaea: identification of archaea by denaturing gradient gel electrophoresis (DGGE) of PCR-amplified gene fragments coding for 16S rRNA in a medieval wall painting , 1998 .
[7] Felix Gugerli,et al. Ancient plant DNA: review and prospects. , 2005, The New phytologist.
[8] P Taberlet,et al. Amplification of oak DNA from ancient and modern wood , 1999, Molecular ecology.
[9] J. K. Grace,et al. Prospects for the biological control of subterranean termites (Isoptera: rhinotermitidae), with special reference to Coptotermes formosanus. , 2000, Bulletin of entomological research.
[10] Guadalupe Piñar,et al. Comparative analyses of the bacterial diversity on two different biodeteriorated wall paintings by DGGE and 16S rDNA sequence analysis , 2000 .
[11] C. Dubetz,et al. Microsatellite markers for individual tree genotyping: application in forest crime prosecutions. , 2000 .
[12] M. Deguilloux,et al. Checking the geographical origin of oak wood: molecular and statistical tools , 2003, Molecular ecology.
[13] John J. Lee,et al. Assessing biodeterioration in wood using ATP photometry. Part III. Estimation of the fungal biomass of Phanerochete chrysosporium in decayed wood using ATP and energy charge measurements , 1998 .
[14] R. Polanczyk,et al. Bacillus thuringiensis: uma breve revisão , 2003, Agrociencia.
[15] Lidia Mariana Fiuza,et al. Susceptibility of Nasutitermes ehrhardti (Isoptera: Termitidae) to Bacillus thuringiensis subspecies , 2002 .
[16] G. Muyzer,et al. Identification of bacteria in a biodegraded wall painting by denaturing gradient gel electrophoresis of PCR-amplified gene fragments coding for 16S rRNA , 1996, Applied and environmental microbiology.
[17] E. Magel,et al. Differences in genomic DNA extracted from bark and from wood of different zones in Robinia trees using RAPD-PCR , 1998, Trees.
[18] C. Sorlini,et al. Art‐loving bugs: The resurrection of Spinello Aretino from Pisa's cemetery , 2005, Proteomics.
[19] H. Hoag. Art conservation: Biology for art's sake , 2004, Nature.
[20] John J. Lee,et al. Assessing biodeterioration in wood using ATP photometry : Part I. Nucleotide extraction and wood interference , 1997 .
[21] E. Dasilva. Art, biotechnology and the culture of peace , 2004 .
[22] W. Lubitz,et al. Detection of Indigenous HalobacillusPopulations in Damaged Ancient Wall Paintings and Building Materials: Molecular Monitoring and Cultivation , 2001, Applied and Environmental Microbiology.