Gupta Payal, Dash Prasanta K, Sanjay Tenkabailu Dharmanna, Pradhan Sharat Kumar, Sreevathsa Rohini, Rai Rhitu
ICAR-National Institute for Plant Biotechnology, Pusa Campus, New Delhi 110012, India.
ICAR-National Rice Research Institute, Cuttack 753006, India.
Antibiotics (Basel). 2023 Jan 28;12(2):260. doi: 10.3390/antibiotics12020260.
D 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 D gene from soil-borne gram-negative bacteria-. The full-length D 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 D gene to be deployed in the development of broad-spectrum biopesticides for the biocontrol of rhizospheric pathogens.
D是一种新型聚酮合酶,通过迭代缩合和环化三分子丙二酰辅酶A作为底物参与非挥发性代谢物间苯三酚的生物合成。间苯三酚或2,4 - 二乙酰基间苯三酚(DAPG)是由假单胞菌产生的一种具有重要生态意义的根际抗生素;它具有广谱抗菌和抗真菌特性,可抑制根际病害。此外,DAPG可引发植物的系统抗性,刺激根系分泌物,还能诱导其他根际细菌的植物增强活性。在此,我们报告了从土壤革兰氏阴性细菌中克隆和分析D基因的情况。成功克隆了全长D基因(1078个核苷酸),并通过三维拓扑结构深入分析了PHLD蛋白的结构细节,预测了PHLD蛋白的精细三维模型。此外,通过拉氏图分析了PHLD蛋白的立体化学性质,基于此,94.3%的残基落在有利区域,5.7%落在允许区域。使用PDBsum通过二级结构预测对生成的模型进行了验证。本研究旨在克隆和表征产生DAPG的D基因,以便用于开发用于根际病原体生物防治的广谱生物农药。