Javascript must be enabled to continue!
The whole-genome shotgun sequence of a chitinolytic actinomycete, Streptomyces californicus TBG-201, and the in-silico studies of its chitinase-19 genes
View through CrossRef
Abstract
Streptomyces species are reported to have family-19 chitinases, similar to plant chitinase-C. Streptomyces griseus HUT6037 is the first Streptomyces spp. found to produce family-19 chitinase. Chitinolytic Streptomyces have been reported to have antifungal activity against phytopathogenic fungi. Chitinase-19 (GH-19) has received much attention in recent decades because of its potential use in the biocontrol of phytopathogens like insects and fungi. According to reports, chitinase C has a significantly higher specific hydrolyzing activity than the common bacterial family-18 chitinases. This study presents the whole genome sequence of a chitinolytic isolate, S. californicus TBG-201. The genome is 7.99 Mb, with 72.60% G + C content, 6683 protein-coding genes, 31 rRNAs, 66 tRNAs, and 116 pseudogenes. Genome annotation using Glimmer, PGAP, and dbCAN provides insights into its chitinolytic activity. Multiple genes in the genome are involved in chitin degradation; based on this, a chitin degradation mechanism for S. californicus TBG-201 is presented. There are 35 biosynthetic gene clusters predicted from the whole genome sequence using the antiSMASH tool. The study further focused on the in-silico analysis of chitinase-19 genes, including phylogenetic analysis, physicochemical characterization, and functional studies. Homology modeling using the SWISS-MODEL server followed by docking studies has a better understood the enzyme structure and ligand binding features. The insights gathered from in-silico investigations would greatly assist in elucidating the in vitro characteristics of S. californicus chitinase-19.
Springer Science and Business Media LLC
Title: The whole-genome shotgun sequence of a chitinolytic actinomycete, Streptomyces californicus TBG-201, and the in-silico studies of its chitinase-19 genes
Description:
Abstract
Streptomyces species are reported to have family-19 chitinases, similar to plant chitinase-C.
Streptomyces griseus HUT6037 is the first Streptomyces spp.
found to produce family-19 chitinase.
Chitinolytic Streptomyces have been reported to have antifungal activity against phytopathogenic fungi.
Chitinase-19 (GH-19) has received much attention in recent decades because of its potential use in the biocontrol of phytopathogens like insects and fungi.
According to reports, chitinase C has a significantly higher specific hydrolyzing activity than the common bacterial family-18 chitinases.
This study presents the whole genome sequence of a chitinolytic isolate, S.
californicus TBG-201.
The genome is 7.
99 Mb, with 72.
60% G + C content, 6683 protein-coding genes, 31 rRNAs, 66 tRNAs, and 116 pseudogenes.
Genome annotation using Glimmer, PGAP, and dbCAN provides insights into its chitinolytic activity.
Multiple genes in the genome are involved in chitin degradation; based on this, a chitin degradation mechanism for S.
californicus TBG-201 is presented.
There are 35 biosynthetic gene clusters predicted from the whole genome sequence using the antiSMASH tool.
The study further focused on the in-silico analysis of chitinase-19 genes, including phylogenetic analysis, physicochemical characterization, and functional studies.
Homology modeling using the SWISS-MODEL server followed by docking studies has a better understood the enzyme structure and ligand binding features.
The insights gathered from in-silico investigations would greatly assist in elucidating the in vitro characteristics of S.
californicus chitinase-19.
Related Results
Exploring twisted bilayer graphene with nano-optics
Exploring twisted bilayer graphene with nano-optics
Nano-optics studies the behaviour of light on the nanoscale. In particular, it probes the interaction of light with objects, often of nanometre-size, and reveals fine details of th...
Adjektiivin ja adverbin erosta
Adjektiivin ja adverbin erosta
On the limit between adjectives and adverbs in Finnish (englanti)Kielenaineksetaikaisin (kieli: suomi, sivulla: 208)enimmin (kieli: suomi, sivulla: 201)eniten (kieli: suomi, sivull...
Optical investigation of 2D materials with in-plane engineering: exciton confinement and chirality sensing
Optical investigation of 2D materials with in-plane engineering: exciton confinement and chirality sensing
(English) Two-dimensional (2D) materials provide a powerful platform for nanoscale engineering and control of geometry and energy landscapes without directly modifying the material...
IMPROVING THE CHITINOLYTIC ACTIVITY OF STREPTOMYCES GRISEORUBENS E44G BY MUTAGENESIS
IMPROVING THE CHITINOLYTIC ACTIVITY OF STREPTOMYCES GRISEORUBENS E44G BY MUTAGENESIS
Genetic improvement trials of the chitinolytic activity of Streptomyces griseorubens E44G were made by using physical, chemical and site-directed mutagenesis. Although the UV radia...
Trypanosoma brucei gambiense
group 2 experimental
in vivo
life cycle: from procyclic to bloodstream form
Trypanosoma brucei gambiense
group 2 experimental
in vivo
life cycle: from procyclic to bloodstream form
Abstract
Trypanosoma brucei gambiense
(
Tbg
) group 2 is a subgroup of trypanosomes able to...
Production and Screening of Streptomyces-Extracellular Chitinase
Production and Screening of Streptomyces-Extracellular Chitinase
The aim of this research was to produce Streptomyces-extracellular chitinase and screen its antifungal activity on a clinically isolated Candida albicans. The Streptomyces were iso...
Streptomyces
wuyuanensis sp. nov., an actinomycete from soil
Streptomyces
wuyuanensis sp. nov., an actinomycete from soil
A novel actinomycete, strain FX61T, was isolated from a saline sample collected from the Inner Mongolian Autonomous Region in China and subjected to a taxonomic study using a polyp...
Genome mining reveals chitin degradation potential of \(\textit{Streptomyces parvulus}\) VCCM 22513
Genome mining reveals chitin degradation potential of \(\textit{Streptomyces parvulus}\) VCCM 22513
The genus Streptomyces is not only known as a natural producer of antibiotics but also a prolific source of chitinolytic enzymes that digest recalcitrant chitin to chitooligosaccha...

