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Statistical optimization of medium components for chitinase production by Pseudomonas fluorescens strain HN1205: role of chitinase on egg hatching inhibition of root-knot nematode

机译:统计优化的荧光假单胞菌菌株HN1205生产几丁质酶的培养基成分:几丁质酶在抑制卵根结线虫孵化中的作用

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In the present research, statistical Plackett?¢????Burman design (PBD) and central composite design (CCD) were used to optimize the medium's components in order to enhance the chitinase activity of Pseudomonas fluorescens strain HN1205. Among the seven nutritional elements that were studied, crab shell powder, CaCl 2 ???·2H 2 O and yeast extract were proved using PBD to have significant effect on chitinase activity. An optimal medium was obtained by applying a three-factor central composite design, which consisted of crab shell powder (1.0 g/L), CaCl 2 (0.5 g/L) and yeast extract (0.5 g/L), with the highest chitinase activity of 1.03 U/mL. This value was 2.87-fold higher than the activity obtained in the lowest productive medium in the design matrix. The chitinase produced by the HN1205 strain was partially purified with 80% ammonium sulphate and anion-exchange chromatography and assessed for inhibition of hatching of nematode eggs. The partially purified chitinase significantly reduced the hatch of Meloidogyne incognita eggs (8.1%), as compared to the effect of 10 mmol/L Tris-HCl buffer (pH 8.0) (49.4%) and boiled chitinase (54.7%). This study demonstrated the role of chitinolytic enzymes produced by P. fluorescens strain HN1205. The obtained optimal activity proved that the enzymes could be potential biological control agents.
机译:在本研究中,为了增强荧光假单胞菌菌株HN1205的几丁质酶活性,采用统计学的PlackettTM Burman设计(PBD)和中央复合设计(CCD)优化培养基的成分。在研究的七个营养元素中,使用PBD证明蟹壳粉,CaCl 2·2H 2 O和酵母提取物对几丁质酶活性具有显着影响。通过应用三因素中心复合设计获得了最佳培养基,该组合由蟹壳粉(1.0 g / L),CaCl 2(0.5 g / L)和酵母提取物(0.5 g / L)组成,几丁质酶最高活性为1.03 U / mL。该值比设计矩阵中最低生产率的培养基中获得的活性高2.87倍。由HN1205菌株产生的几丁质酶用80%硫酸铵和阴离子交换色谱法部分纯化,并评估其对线虫卵孵化的抑制作用。与10 mmol / L Tris-HCl缓冲液(pH 8.0)(49.4%)和煮沸的几丁质酶(54.7%)的作用相比,部分纯化的几丁质酶显着减少了南方根结线虫卵的孵化率(8.1%)。这项研究证明了荧光假单胞菌菌株HN1205产生的几丁质分解酶的作用。获得的最佳活性证明了这些酶可能是潜在的生物防治剂。

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