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novel salt-tolerant chitobiosidase discovered by genetic screening of a metagenomic library derived from chitin-amended agricultural soil
by
van Elsas, Jan Dirk
, Kielak, Anna Maria
, Cretoiu, Mariana Silvia
, Marinelli, Flavia
, Berini, Francesca
in
Acidobacterium
/ Aeromonas veronii
/ Agricultural land
/ agricultural soils
/ Agriculture
/ Analysis
/ Annotations
/ Bacteria
/ Bacteria - chemistry
/ Bacteria - enzymology
/ Bacteria - genetics
/ Bacterial Proteins - chemistry
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Base Sequence
/ Biomedical and Life Sciences
/ Biotechnology
/ Burkholderia
/ Chitin
/ Chitin - metabolism
/ Chitin deacetylase
/ Chitinase
/ Chitinases - chemistry
/ Chitinases - genetics
/ Chitinases - metabolism
/ Cloning, Molecular
/ Cycle protein
/ Deoxyribonucleic acid
/ DNA
/ E coli
/ Ecology
/ Environmental Biotechnology
/ Enzyme Stability
/ Enzymes
/ Escherichia coli
/ Gene Library
/ Gene sequencing
/ Genes
/ Genetic screening
/ Genetic testing
/ genomic libraries
/ Genomics
/ Hydrogen-Ion Concentration
/ Life Sciences
/ Metagenomics
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ molecular cloning
/ Molecular Sequence Data
/ Open reading frames
/ Phylogeny
/ Physiological aspects
/ Polymerase chain reaction
/ Proteins
/ Salinity tolerance
/ salt tolerance
/ screening
/ Sodium Chloride - metabolism
/ Soil - chemistry
/ Soil Microbiology
/ soil microorganisms
/ Soils
/ Stenotrophomonas maltophilia
/ Studies
2015
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novel salt-tolerant chitobiosidase discovered by genetic screening of a metagenomic library derived from chitin-amended agricultural soil
by
van Elsas, Jan Dirk
, Kielak, Anna Maria
, Cretoiu, Mariana Silvia
, Marinelli, Flavia
, Berini, Francesca
in
Acidobacterium
/ Aeromonas veronii
/ Agricultural land
/ agricultural soils
/ Agriculture
/ Analysis
/ Annotations
/ Bacteria
/ Bacteria - chemistry
/ Bacteria - enzymology
/ Bacteria - genetics
/ Bacterial Proteins - chemistry
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Base Sequence
/ Biomedical and Life Sciences
/ Biotechnology
/ Burkholderia
/ Chitin
/ Chitin - metabolism
/ Chitin deacetylase
/ Chitinase
/ Chitinases - chemistry
/ Chitinases - genetics
/ Chitinases - metabolism
/ Cloning, Molecular
/ Cycle protein
/ Deoxyribonucleic acid
/ DNA
/ E coli
/ Ecology
/ Environmental Biotechnology
/ Enzyme Stability
/ Enzymes
/ Escherichia coli
/ Gene Library
/ Gene sequencing
/ Genes
/ Genetic screening
/ Genetic testing
/ genomic libraries
/ Genomics
/ Hydrogen-Ion Concentration
/ Life Sciences
/ Metagenomics
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ molecular cloning
/ Molecular Sequence Data
/ Open reading frames
/ Phylogeny
/ Physiological aspects
/ Polymerase chain reaction
/ Proteins
/ Salinity tolerance
/ salt tolerance
/ screening
/ Sodium Chloride - metabolism
/ Soil - chemistry
/ Soil Microbiology
/ soil microorganisms
/ Soils
/ Stenotrophomonas maltophilia
/ Studies
2015
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novel salt-tolerant chitobiosidase discovered by genetic screening of a metagenomic library derived from chitin-amended agricultural soil
by
van Elsas, Jan Dirk
, Kielak, Anna Maria
, Cretoiu, Mariana Silvia
, Marinelli, Flavia
, Berini, Francesca
in
Acidobacterium
/ Aeromonas veronii
/ Agricultural land
/ agricultural soils
/ Agriculture
/ Analysis
/ Annotations
/ Bacteria
/ Bacteria - chemistry
/ Bacteria - enzymology
/ Bacteria - genetics
/ Bacterial Proteins - chemistry
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Base Sequence
/ Biomedical and Life Sciences
/ Biotechnology
/ Burkholderia
/ Chitin
/ Chitin - metabolism
/ Chitin deacetylase
/ Chitinase
/ Chitinases - chemistry
/ Chitinases - genetics
/ Chitinases - metabolism
/ Cloning, Molecular
/ Cycle protein
/ Deoxyribonucleic acid
/ DNA
/ E coli
/ Ecology
/ Environmental Biotechnology
/ Enzyme Stability
/ Enzymes
/ Escherichia coli
/ Gene Library
/ Gene sequencing
/ Genes
/ Genetic screening
/ Genetic testing
/ genomic libraries
/ Genomics
/ Hydrogen-Ion Concentration
/ Life Sciences
/ Metagenomics
/ Microbial Genetics and Genomics
/ Microbiology
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ molecular cloning
/ Molecular Sequence Data
/ Open reading frames
/ Phylogeny
/ Physiological aspects
/ Polymerase chain reaction
/ Proteins
/ Salinity tolerance
/ salt tolerance
/ screening
/ Sodium Chloride - metabolism
/ Soil - chemistry
/ Soil Microbiology
/ soil microorganisms
/ Soils
/ Stenotrophomonas maltophilia
/ Studies
2015
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novel salt-tolerant chitobiosidase discovered by genetic screening of a metagenomic library derived from chitin-amended agricultural soil
Journal Article
novel salt-tolerant chitobiosidase discovered by genetic screening of a metagenomic library derived from chitin-amended agricultural soil
2015
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Overview
Here, we report on the construction of a metagenomic library from a chitin-amended disease-suppressive agricultural soil and its screening for genes that encode novel chitinolytic enzymes. The library, constructed in fosmids in an Escherichia coli host, comprised 145,000 clones containing inserts of sizes of 21 to 40 kb, yielding a total of approximately 5.8 GB of cloned soil DNA. Using genetic screenings by repeated PCR cycles aimed to detect gene sequences of the bacterial chitinase A-class (hereby named chi A genes), we identified and characterized five fosmids carrying candidate genes for chitinolytic enzymes. The analysis thus allowed access to the genomic (fosmid-borne) context of these genes. Using the chiA-targeted PCR, which is based on degenerate primers, the five fosmids all produced amplicons, of which the sequences were related to predicted chitinolytic enzyme-encoding genes of four different host organisms, including Stenotrophomonas maltophilia. Sequencing and de novo annotation of the fosmid inserts confirmed that each one of these carried one or more open reading frames that were predicted to encode enzymes active on chitin, including one for a chitin deacetylase. Moreover, the genetic contexts in which the putative chitinolytic enzyme-encoding genes were located were unique per fosmid. Specifically, inserts from organisms related to Burkholderia sp., Acidobacterium sp., Aeromonas veronii, and the chloroflexi Nitrolancetus hollandicus and/or Ktedonobacter racemifer were obtained. Remarkably, the S. maltophilia chiA-like gene was found to occur in two different genetic contexts (related to N. hollandicus/K. racemifer), indicating the historical occurrence of genetic reshufflings in this part of the soil microbiota. One fosmid containing the insert composed of DNA from the N. hollandicus-like organism (denoted 53D1) was selected for further work. Using subcloning procedures, its putative gene for a chitinolytic enzyme was successfully brought to expression in an E. coli host. On the basis of purified protein preparations, the produced protein was characterized as a chitobiosidase of 43.6 kDa, with a pI of 4.83. Given its activity spectrum, it can be typified as a halotolerant chitobiosidase.
Publisher
Springer Berlin Heidelberg,Springer,Springer Nature B.V
Subject
/ Analysis
/ Bacteria
/ Bacterial Proteins - chemistry
/ Bacterial Proteins - genetics
/ Bacterial Proteins - metabolism
/ Biomedical and Life Sciences
/ Chitin
/ DNA
/ E coli
/ Ecology
/ Enzymes
/ Genes
/ Genomics
/ Microbial Genetics and Genomics
/ Microbiota (Symbiotic organisms)
/ Proteins
/ Sodium Chloride - metabolism
/ Soils
/ Stenotrophomonas maltophilia
/ Studies
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