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利用农业工业废弃物对RHNK22产抗真菌iturin A进行统计优化。

Statistical optimization of antifungal iturin A production from RHNK22 using agro-industrial wastes.

作者信息

Narendra Kumar P, Swapna T H, Khan Mohamed Yahya, Reddy Gopal, Hameeda Bee

机构信息

Dept of Microbiology, University College of Science, Osmania University, Hyderabad 500 007, India.

出版信息

Saudi J Biol Sci. 2017 Nov;24(7):1722-1740. doi: 10.1016/j.sjbs.2015.09.014. Epub 2015 Oct 14.

Abstract

Biosurfactants are secondary metabolites with surface active properties and have wide application in agriculture, industrial and therapeutic products. The present study was aimed to screen bacteria for the production of biosurfactant, its characterization and development of a cost effective media formulation for iturin A production. A total of 100 bacterial isolates were isolated from different rhizosphere soil samples by enrichment culture method and screened for biosurfactant activity. Twenty isolates were selected for further studies based on their biosurfactant activity [emulsification index (EI%), emulsification assay (EA), surface tension (ST) reduction] and antagonistic activity. Among them one potential isolate sp. RHNK22 showed good EI% and EA with different hydrocarbons tested in this study. Using biochemical methods and 16S rRNA gene sequence, it was identified as Presence of iturin A in RHNK22 was identified by gene specific primers and confirmed as iturin A by FTIR and HPLC. RHNK22 exhibited good surface active properties and antifungal activity against and For cost-effective production of iturin A, 16 different agro-industrial wastes were screened as substrates, and Sunflower oil cake (SOC) was favouring high iturin A production. Further, using response surface methodology (RSM) model, there was a 3-fold increase in iturin A production (using SOC 4%, inoculum size 1%, at pH 6.0 and 37 °C temperature in 48 h). This is the first report on using SOC as a substrate for iturin A production.

摘要

生物表面活性剂是具有表面活性特性的次生代谢产物,在农业、工业和治疗产品中具有广泛应用。本研究旨在筛选产生物表面活性剂的细菌,对其进行表征,并开发一种用于iturin A生产的经济高效培养基配方。通过富集培养法从不同根际土壤样品中总共分离出100株细菌分离物,并筛选其生物表面活性剂活性。基于它们的生物表面活性剂活性[乳化指数(EI%)、乳化测定(EA)、表面张力(ST)降低]和拮抗活性,选择了20株分离物进行进一步研究。其中一个潜在分离物sp. RHNK22在本研究中对不同碳氢化合物表现出良好的EI%和EA。使用生化方法和16S rRNA基因序列,将其鉴定为 通过基因特异性引物鉴定了RHNK22中iturin A的存在,并通过傅里叶变换红外光谱(FTIR)和高效液相色谱(HPLC)确认为iturin A。RHNK22表现出良好的表面活性特性和对 和 的抗真菌活性。为了经济高效地生产iturin A,筛选了16种不同的农业工业废弃物作为底物,向日葵油饼(SOC)有利于iturin A的高产。此外,使用响应面法(RSM)模型,iturin A的产量提高了3倍(使用4%的SOC、1%的接种量、pH 6.0和37°C温度,在48小时内)。这是关于使用SOC作为iturin A生产底物的首次报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cca/6169434/a4286ae37e63/gr1.jpg

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