Arid
DOI10.1111/j.1574-6941.2012.01320.x
Contrasted resistance of stone-dwelling Geodermatophilaceae species to stresses known to give rise to reactive oxygen species
Gtari, Maher1,2; Essoussi, Imen1,2; Maaoui, Radhi1,2; Sghaier, Haitham3; Boujmil, Rabeb1,2; Gury, Jerome4; Pujic, Petar5; Brusetti, Lorenzo6; Chouaia, Bessem7; Crotti, Elena7; Daffonchio, Daniele7; Boudabous, Abdellatif1,2; Normand, Philippe5
通讯作者Gtari, Maher
来源期刊FEMS MICROBIOLOGY ECOLOGY
ISSN0168-6496
EISSN1574-6941
出版年2012
卷号80期号:3页码:566-577
英文摘要

Stones in arid environments are inhabited by actinobacteria of the family Geodermatophilaceae like the genera Blastococcus and Modestobacter frequently isolated from altered calcarenites. Their habitat requires adaptation to light-induced and other stresses that generate reactive oxygen species. Here, we show that representative members of the species Blastococcus saxobsidens, Geodermatophilus obscurus, and Modestobacter multiseptatus are differentially adapted to stresses associated with arid environments. Whereas B. saxobsidens was found to be sensitive to gamma radiation (D10 = 900 Gy; 10% survival at 900 Gy), M. multiseptatus was moderately (D10 = 6000 Gy) and G. obscurus was highly tolerant (D10 = 9000 Gy). A difference in resistance to high-frequency (? value = 254 nm) UV was shown by B. saxobsidens, M. multiseptatus, and G. obscurus, being sensitive, tolerant, and highly tolerant (D10 of 6, 900, and > 3500 kJ m-2, respectively). Tolerance to desiccation, mitomycin C and hydrogen peroxide correlated with the ionizing radiation and UV resistance profiles of the three species and were correlated with the pigments synthesized. Resistance to heavy metals/metalloids did not follow the same pattern, with resistance to Ag2+ and Pb2+ being similar for B. saxobsidens, M. multiseptatus, and G. obscurus, whereas resistance to AsO4 3-, Cr2+, or Cu2+ was greater for B. saxobsidens than for the other two species. The stress resistance profiles of M. multiseptatus and B. saxobsidens were reflected in different calcarenite colonization patterns. While M. multiseptatus was predominantly isolated from the first two millimeters of stone surface, B. saxobsidens was predominantly isolated from the deeper part of the stone where it is better protected from sun irradiation, suggesting that the response to light- and desiccation-induced oxidative stress is an important driver for niche colonization in the stone biotope.


英文关键词gamma radiation Geodermatophilaceae heavy metals ionizing radiation UV reactive oxygen species-generating stresses
类型Article
语种英语
国家Tunisia ; France ; Italy
收录类别SCI-E
WOS记录号WOS:000303761900005
WOS关键词EXTREME RADIATION-RESISTANCE ; SAHARA DESERT STONES ; DEINOCOCCUS-RADIODURANS ; IONIZING-RADIATION ; ESCHERICHIA-COLI ; GENETIC DIVERSITY ; PROTEIN OXIDATION ; COMPLETE GENOME ; SALT TOLERANCE ; SP NOV.
WOS类目Microbiology
WOS研究方向Microbiology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/172332
作者单位1.Univ Tunis Elmanar FST, Lab Microorganismes & Biomol Act, Tunis 2092, Tunisia;
2.Univ Carthage ISSTE, Tunis 2092, Tunisia;
3.Ctr Natl Sci & Technol Nucl CNSTN, Unite Microbiol & Biol Mol, Sidi Thabet, Tunisia;
4.Univ Pau & Pays Adour, IBEAS UFR Sci & Tech, UMR 5254, IPREM,CNRS, Pau, France;
5.Univ Lyon 1, Ctr Natl Rech Sci, UMR 5557, Villeurbanne, France;
6.Free Univ Bozen Bolzano, Fac Sci & Technol, Bolzano, Italy;
7.Univ Milan, Dipartimento Sci & Tecnol Alimentari & Microbiol, Milan, Italy
推荐引用方式
GB/T 7714
Gtari, Maher,Essoussi, Imen,Maaoui, Radhi,et al. Contrasted resistance of stone-dwelling Geodermatophilaceae species to stresses known to give rise to reactive oxygen species[J],2012,80(3):566-577.
APA Gtari, Maher.,Essoussi, Imen.,Maaoui, Radhi.,Sghaier, Haitham.,Boujmil, Rabeb.,...&Normand, Philippe.(2012).Contrasted resistance of stone-dwelling Geodermatophilaceae species to stresses known to give rise to reactive oxygen species.FEMS MICROBIOLOGY ECOLOGY,80(3),566-577.
MLA Gtari, Maher,et al."Contrasted resistance of stone-dwelling Geodermatophilaceae species to stresses known to give rise to reactive oxygen species".FEMS MICROBIOLOGY ECOLOGY 80.3(2012):566-577.
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