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Cloning and Molecular Characterization of the phlD Gene Involved in the Biosynthesis of "Phloroglucinol", a Compound with Antibiotic Properties from Plant Growth Promoting Bacteria Pseudomonas spp.
被引:5
|作者:
Gupta, Payal
[1
]
Dash, Prasanta K.
[1
]
Sanjay, Tenkabailu Dharmanna
[1
]
Pradhan, Sharat Kumar
[2
,3
]
Sreevathsa, Rohini
[1
]
Rai, Rhitu
[1
]
机构:
[1] Natl Inst Plant Biotechnol, ICAR, Pusa Campus, New Delhi 110012, India
[2] Natl Rice Res Inst, ICAR, Cuttack 753006, India
[3] Indian Council Agr Res, New Delhi 110001, India
来源:
关键词:
phloroglucinol;
polyketide;
DAPG;
phlD;
Ramachandran plot;
PMDB;
BLACK ROOT-ROT;
POLYKETIDE SYNTHASE;
FLUORESCENT PSEUDOMONADS;
PROTEIN STRUCTURES;
2,4-DIACETYLPHLOROGLUCINOL;
BIOCONTROL;
RHIZOSPHERE;
SPP;
CLASSIFICATION;
IDENTIFICATION;
D O I:
10.3390/antibiotics12020260
中图分类号:
R51 [传染病];
学科分类号:
100401 ;
摘要:
phlD is a novel kind of polyketide synthase involved in the biosynthesis of non-volatile metabolite phloroglucinol by iteratively condensing and cyclizing three molecules of malonyl-CoA as substrate. Phloroglucinol or 2,4-diacetylphloroglucinol (DAPG) is an ecologically important rhizospheric antibiotic produced by pseudomonads; it exhibits broad spectrum anti-bacterial and anti-fungal properties, leading to disease suppression in the rhizosphere. Additionally, DAPG triggers systemic resistance in plants, stimulates root exudation, as well as induces phyto-enhancing activities in other rhizobacteria. Here, we report the cloning and analysis of the phlD gene from soil-borne gram-negative bacteria-Pseudomonas. The full-length phlD gene (from 1078 nucleotides) was successfully cloned and the structural details of the PHLD protein were analyzed in-depth via a three-dimensional topology and a refined three-dimensional model for the PHLD protein was predicted. Additionally, the stereochemical properties of the PHLD protein were analyzed by the Ramachandran plot, based on which, 94.3% of residues fell in the favored region and 5.7% in the allowed region. The generated model was validated by secondary structure prediction using PDBsum. The present study aimed to clone and characterize the DAPG-producing phlD gene to be deployed in the development of broad-spectrum biopesticides for the biocontrol of rhizospheric pathogens.
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页数:16
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