Back to Search Start Over

Major bacterial lineages are essentially devoid of CRISPR-Cas viral defence systems

Authors :
Burstein, D
Sun, CL
Brown, CT
Sharon, I
Anantharaman, K
Probst, AJ
Thomas, BC
Banfield, JF
Burstein, D
Sun, CL
Brown, CT
Sharon, I
Anantharaman, K
Probst, AJ
Thomas, BC
Banfield, JF
Publication Year :
2016

Abstract

Current understanding of microorganism-virus interactions, which shape the evolution and functioning of Earth's ecosystems, is based primarily on cultivated organisms. Here we investigate thousands of viral and microbial genomes recovered using a cultivation-independent approach to study the frequency, variety and taxonomic distribution of viral defence mechanisms. CRISPR-Cas systems that confer microorganisms with immunity to viruses are present in only 10% of 1,724 sampled microorganisms, compared with previous reports of 40% occurrence in bacteria and 81% in archaea. We attribute this large difference to the lack of CRISPR-Cas systems across major bacterial lineages that have no cultivated representatives. We correlate absence of CRISPR-Cas with lack of nucleotide biosynthesis capacity and a symbiotic lifestyle. Restriction systems are well represented in these lineages and might provide both non-specific viral defence and access to nucleotides.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1340020700
Document Type :
Electronic Resource