城市/工业污水长期灌溉土壤中分离的黑曲霉和地曲霉对镉胁迫的适应性评价

IF 4 2区 生物学 Q2 MICROBIOLOGY
A Metwally Rabab, S Taha Asmaa, H Mohamed Asmaa, A Soliman Shereen
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引用次数: 0

摘要

重金属污染是工业和采矿过程以及其他人类活动产生的一个主要问题。真菌从环境中清除细菌的能力引起了人们的注意。然而,真菌保护环境免受镉(Cd)等重金属有害影响的主要过程尚不清楚。本研究从hms污染的土壤中分离到了一些真菌。测定了各菌株的最低抑菌浓度(mic)和对Cd的耐受性指标。此外,对最耐受性的真菌分离株(黑曲霉和A. terreus)进行了分子鉴定,并存入GenBank NCBI数据库。结果表明,随着Cd浓度的增加,黑田鼠和地田鼠的菌落直径逐渐减小。此外,所有测试参数均受Cd浓度的影响。脂质过氧化(MDA)含量在50 ~ 200 mg/L范围内逐渐升高,黑曲霉升高12.95 ~ 105.95%,土曲霉升高17.27 ~ 85.38%。在Cd的存在下,PPO、APX和POD酶升高,从而说明了氧化应激作用的出现。200 mg/L Cd处理下,与未处理的黑曲霉相比,POD和PPO活性分别提高了92.00和104.24%,APX活性提高了58.12%。对黑曲霉和地曲霉的去除效率和微生物积累能力也进行了评价。HPLC分析显示,与对照(无Cd)相比,在200 mg/L Cd处理下,黑曲霉和土曲霉的琥珀酸和苹果酸产量增加。这些发现有助于我们推测黑曲霉和土曲霉可能是缓解镉污染的潜在微修复菌。通过进一步的研究,我们可以进一步了解这些真菌分离株对不同ms的抗性机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptability assessment of Aspergillus niger and Aspergillus terreus isolated from long-term municipal/industrial effluent-irrigated soils to cadmium stress.

Heavy metals (HMs) contamination is a major issue produced by industrial and mining processes, among other human activities. The capacity of fungi to eliminate HMs from the environment has drawn attention. However, the main process by which fungi protect the environment against the damaging effects of these HMs, such as cadmium (Cd), is still unknown. In this study, some fungi were isolated from HMs-polluted soil. The minimum inhibitory concentrations (MICs) and the tolerance indices of the tested isolates against Cd were evaluated. Moreover, molecular identification of the most tolerant fungal isolates (Aspergillus niger and A. terreus) was done and deposited in the GenBank NCBI database. The results showed that the colony diameter of A. niger and A. terreus was decreased gradually by the increase of Cd concentration. Also, all the tested parameters were influenced by Cd concentration. Lipid peroxidation (MDA content) was progressively increased by 12.95-105.95% (A. niger) and 17.27-85.38% (A. terreus), respectively, from 50 to 200 mg/L. PPO, APX, and POD enzymes were elevated in the presence of Cd, thus illustrating the appearance of an oxidative stress action. Compared to the non-stressed A. niger, the POD and PPO activities were enhanced by 92.00 and 104.24% at 200 mg/L Cd. Also, APX activity was increased by 58.12% at 200 mg/L. Removal efficiency and microbial accumulation capacities of A. niger and A. terreus have also been assessed. Production of succinic and malic acids by A. niger and A. terreus was increased in response to 200 mg/L Cd, in contrast to their controls (Cd-free), as revealed by HPLC analysis. These findings helped us to suggest A. niger and A. terreus as the potential mycoremediation microbes that alleviate Cd contamination. We can learn more about these fungal isolates' resistance mechanisms against different HMs through further studies.

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来源期刊
BMC Microbiology
BMC Microbiology 生物-微生物学
CiteScore
7.20
自引率
0.00%
发文量
280
审稿时长
3 months
期刊介绍: BMC Microbiology is an open access, peer-reviewed journal that considers articles on analytical and functional studies of prokaryotic and eukaryotic microorganisms, viruses and small parasites, as well as host and therapeutic responses to them and their interaction with the environment.
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