TY - JOUR
T1 - Cold adaptive traits revealed by comparative genomic analysis of the eurypsychrophile Rhodococcus sp. JG3 isolated from high elevation McMurdo Dry Valley permafrost, Antarctica
AU - Goordial, Jacqueline
AU - Raymond-Bouchard, Isabelle
AU - Zolotarov, Yevgen
AU - de Bethencourt, Luis
AU - Ronholm, Jennifer
AU - Shapiro, Nicole
AU - Woyke, Tanja
AU - Stromvik, Martina
AU - Greer, Charles W.
AU - Bakermans, Corien
AU - Whyte, Lyle
N1 - Publisher Copyright:
© FEMS 2015. All rights reserved.
PY - 2016/1/7
Y1 - 2016/1/7
N2 - The permafrost soils of the high elevation McMurdo Dry Valleys are the most cold, desiccating and oligotrophic on Earth. Rhodococcus sp. JG3 is one of very few bacterial isolates from Antarctic Dry Valley permafrost, and displays subzero growth down to -5°C. To understand how Rhodococcus sp. JG3 is able to survive extreme permafrost conditions and be metabolically active at subzero temperatures, we sequenced its genome and compared it to the genomes of 14 mesophilic rhodococci. Rhodococcus sp. JG3 possessed a higher copy number of genes for general stress response, UV protection and protection from cold shock, osmotic stress and oxidative stress. We characterized genome wide molecular adaptations to cold, and identified genes that had amino acid compositions favourable for increased flexibility and functionality at low temperatures. Rhodococcus sp. JG3 possesses multiple complimentary strategies which may enable its survival in some of the harshest permafrost on Earth.
AB - The permafrost soils of the high elevation McMurdo Dry Valleys are the most cold, desiccating and oligotrophic on Earth. Rhodococcus sp. JG3 is one of very few bacterial isolates from Antarctic Dry Valley permafrost, and displays subzero growth down to -5°C. To understand how Rhodococcus sp. JG3 is able to survive extreme permafrost conditions and be metabolically active at subzero temperatures, we sequenced its genome and compared it to the genomes of 14 mesophilic rhodococci. Rhodococcus sp. JG3 possessed a higher copy number of genes for general stress response, UV protection and protection from cold shock, osmotic stress and oxidative stress. We characterized genome wide molecular adaptations to cold, and identified genes that had amino acid compositions favourable for increased flexibility and functionality at low temperatures. Rhodococcus sp. JG3 possesses multiple complimentary strategies which may enable its survival in some of the harshest permafrost on Earth.
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U2 - 10.1093/femsec/fiv154
DO - 10.1093/femsec/fiv154
M3 - Article
C2 - 26637477
AN - SCOPUS:85001830120
SN - 0168-6496
VL - 92
SP - 1
EP - 11
JO - FEMS microbiology ecology
JF - FEMS microbiology ecology
IS - 2
ER -