In vitro biodegradation potential of airborne Aspergilli and Penicillia
Само за регистроване кориснике
2019
Аутори
Savković, Zeljko
Stupar, Milos
Unković, Nikola
Ivanović, Žarko

Blagojević, Jovana
Vukojević, Jelena

Ljaljević-Grbić, Milica
Чланак у часопису (Објављена верзија)

Метаподаци
Приказ свих података о документуАпстракт
The study addresses in vitro degradation potential of airborne Aspergillus and Penicillium/Talarmyces species originating from cultural heritage conservation premises. A series of rapid, cost effective biodegradation assays were performed to assess production of extracellular pigments, acids, and enzymes. Most of the isolates have demonstrated positive growth in at least one of the preformed tests. Strongest overall degradation potential was demonstrated for Penicillium brevicompactum, P. glabrum, and Talaromyces sayulitensis while Aspergillus domesticus, A. penicillioides, A. pseudoglaucus, and A. ruber did not exhibit positive reaction in any of the employed assays. Majority of isolates exhibited proteolytic and cellulolytic activity while carbonate dissolution was observed for only five tested fungi. Highest alteration of pH value in liquid media was documented for T. sayulitensis while A. niger and P. expansum exhibited strongest acid production on CREA. Certain isolates, mostly Pe...nicillium species, displayed production of extracellular pigments. The results imply that many of the tested fungi have significant biodegradation capacity, indicating their potential to inflict structural and esthetic alterations on cultural heritage objects.
Кључне речи:
Acidic metabolites / Aspergillus / Biodegradation / Enzyme production / Extracellular pigments / PenicilliumИзвор:
Science of Nature, 2019, 106, 3-4Издавач:
- Springer Heidelberg, Heidelberg
Финансирање / пројекти:
DOI: 10.1007/s00114-019-1603-3
ISSN: 0028-1042
PubMed: 30734872
WoS: 000458197500001
Scopus: 2-s2.0-85061204105
Институција/група
IZBISTY - JOUR AU - Savković, Zeljko AU - Stupar, Milos AU - Unković, Nikola AU - Ivanović, Žarko AU - Blagojević, Jovana AU - Vukojević, Jelena AU - Ljaljević-Grbić, Milica PY - 2019 UR - https://plantarum.izbis.bg.ac.rs/handle/123456789/568 AB - The study addresses in vitro degradation potential of airborne Aspergillus and Penicillium/Talarmyces species originating from cultural heritage conservation premises. A series of rapid, cost effective biodegradation assays were performed to assess production of extracellular pigments, acids, and enzymes. Most of the isolates have demonstrated positive growth in at least one of the preformed tests. Strongest overall degradation potential was demonstrated for Penicillium brevicompactum, P. glabrum, and Talaromyces sayulitensis while Aspergillus domesticus, A. penicillioides, A. pseudoglaucus, and A. ruber did not exhibit positive reaction in any of the employed assays. Majority of isolates exhibited proteolytic and cellulolytic activity while carbonate dissolution was observed for only five tested fungi. Highest alteration of pH value in liquid media was documented for T. sayulitensis while A. niger and P. expansum exhibited strongest acid production on CREA. Certain isolates, mostly Penicillium species, displayed production of extracellular pigments. The results imply that many of the tested fungi have significant biodegradation capacity, indicating their potential to inflict structural and esthetic alterations on cultural heritage objects. PB - Springer Heidelberg, Heidelberg T2 - Science of Nature T1 - In vitro biodegradation potential of airborne Aspergilli and Penicillia IS - 3-4 VL - 106 DO - 10.1007/s00114-019-1603-3 ER -
@article{ author = "Savković, Zeljko and Stupar, Milos and Unković, Nikola and Ivanović, Žarko and Blagojević, Jovana and Vukojević, Jelena and Ljaljević-Grbić, Milica", year = "2019", abstract = "The study addresses in vitro degradation potential of airborne Aspergillus and Penicillium/Talarmyces species originating from cultural heritage conservation premises. A series of rapid, cost effective biodegradation assays were performed to assess production of extracellular pigments, acids, and enzymes. Most of the isolates have demonstrated positive growth in at least one of the preformed tests. Strongest overall degradation potential was demonstrated for Penicillium brevicompactum, P. glabrum, and Talaromyces sayulitensis while Aspergillus domesticus, A. penicillioides, A. pseudoglaucus, and A. ruber did not exhibit positive reaction in any of the employed assays. Majority of isolates exhibited proteolytic and cellulolytic activity while carbonate dissolution was observed for only five tested fungi. Highest alteration of pH value in liquid media was documented for T. sayulitensis while A. niger and P. expansum exhibited strongest acid production on CREA. Certain isolates, mostly Penicillium species, displayed production of extracellular pigments. The results imply that many of the tested fungi have significant biodegradation capacity, indicating their potential to inflict structural and esthetic alterations on cultural heritage objects.", publisher = "Springer Heidelberg, Heidelberg", journal = "Science of Nature", title = "In vitro biodegradation potential of airborne Aspergilli and Penicillia", number = "3-4", volume = "106", doi = "10.1007/s00114-019-1603-3" }
Savković, Z., Stupar, M., Unković, N., Ivanović, Ž., Blagojević, J., Vukojević, J.,& Ljaljević-Grbić, M.. (2019). In vitro biodegradation potential of airborne Aspergilli and Penicillia. in Science of Nature Springer Heidelberg, Heidelberg., 106(3-4). https://doi.org/10.1007/s00114-019-1603-3
Savković Z, Stupar M, Unković N, Ivanović Ž, Blagojević J, Vukojević J, Ljaljević-Grbić M. In vitro biodegradation potential of airborne Aspergilli and Penicillia. in Science of Nature. 2019;106(3-4). doi:10.1007/s00114-019-1603-3 .
Savković, Zeljko, Stupar, Milos, Unković, Nikola, Ivanović, Žarko, Blagojević, Jovana, Vukojević, Jelena, Ljaljević-Grbić, Milica, "In vitro biodegradation potential of airborne Aspergilli and Penicillia" in Science of Nature, 106, no. 3-4 (2019), https://doi.org/10.1007/s00114-019-1603-3 . .