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等离子体活化水对纤维素酶产生菌A32的影响。

Effect of Plasma-Activated Water on the Cellulase-Producing Strain A32.

作者信息

Song Zhiqing, Jiang Yingwei, Chen Chan, Ding Changjiang, Chen Hao

机构信息

College of Electric Power, Inner Mongolia University of Technology, Hohhot 010080, China.

Application Laboratory for Discharge Plasma & Functional Materials, Inner Mongolia University of Technology, Hohhot 010051, China.

出版信息

J Fungi (Basel). 2024 Aug 12;10(8):568. doi: 10.3390/jof10080568.

Abstract

To investigate the effect and mechanism of plasma-activated water (PAW) on , PAW was prepared using a needle array-plate dielectric barrier discharge plasma system. The concentrations of long-lived reactive oxygen and nitrogen species (RONS), namely, HO, NO, and NO, in the PAW were 48.76 mg/L, 0.046 mg/L, and 172.36 mg/L, respectively. Chemically activated water (CAW) with the same concentration of long-lived RONS was also prepared for comparison. A32 was treated with PAW and CAW. After treatment, the treated strains were observed and analyzed with scanning electron microscopy (SEM) and transmission electron microscopy (TEM) to screen probable mutants. The results indicated that the pH, conductivity, and ORP values of PAW were 2.42, 1935 μS/cm, and 517.07 mV, respectively. In contrast, the pH and ORP values of CAW were 6.15 and 301.73 mV, respectively, which differed significantly from those of PAW. In addition, the conductivity of CAW showed no change. SEM and TEM analyses revealed that A32 treated with CAW exhibited less damage compared with the control. In contrast, A32 treated with PAW showed significant shrinkage, deformation, and exudate attachment over time. Following PAW treatment, after four passages, a high cellulase-producing stable mutant strain A-WW5 was screened, exhibiting a filter paper enzyme activity of 29.66 U/mL, a cellulose endonuclease activity of 13.79 U/mL, and a β-glucosidase activity of 27.13 U/mL. These values were found to be 33%, 38%, and 2.1% higher than those of the original fungus sample, respectively. In total, 116 SNPs and 61 InDels were present in the genome of the mutant strain A-WW5. The above findings indicate that the impact of PAW on is not only attributed to long-lasting HO, NO, and NO particles but also to other short-lived active particles; PAW is expected to become a new microbial breeding mutagen.

摘要

为研究等离子体活化水(PAW)对[具体对象未提及]的影响及作用机制,使用针阵列 - 平板介质阻挡放电等离子体系统制备了PAW。PAW中长寿命活性氧和氮物种(RONS),即·OH、NO和NO₂的浓度分别为48.76 mg/L、0.046 mg/L和172.36 mg/L。还制备了具有相同浓度长寿命RONS的化学活化水(CAW)用于比较。用PAW和CAW处理A32。处理后,用扫描电子显微镜(SEM)和透射电子显微镜(TEM)观察和分析处理后的菌株以筛选可能的突变体。结果表明,PAW的pH值、电导率和氧化还原电位(ORP)分别为2.42、1935 μS/cm和517.07 mV。相比之下,CAW的pH值和ORP值分别为6.15和301.73 mV,与PAW有显著差异。此外,CAW的电导率无变化。SEM和TEM分析表明,与对照相比,用CAW处理的A32损伤较小。相反,用PAW处理的A32随时间显示出明显的收缩、变形和渗出物附着。PAW处理后,经过四代传代,筛选出了一种高产纤维素酶的稳定突变菌株A - WW5,其滤纸酶活性为29.66 U/mL,内切纤维素酶活性为13.79 U/mL,β - 葡萄糖苷酶活性为27.13 U/mL。发现这些值分别比原始真菌样品高33%、38%和2.1%。突变菌株A - WW5的基因组中总共存在116个单核苷酸多态性(SNP)和61个插入缺失(InDel)。上述发现表明,PAW对[具体对象未提及]的影响不仅归因于持久的·OH、NO和NO₂粒子,还归因于其他短寿命活性粒子;PAW有望成为一种新的微生物育种诱变剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de3f/11355511/5eea26aa2db3/jof-10-00568-g001.jpg

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