Cunninghamella sp.分离株壳聚糖和几丁质的制备及提取。

Q3 Agricultural and Biological Sciences
A. F. Chagas Júnior, L. F. B. Chagas, G. N. Scheidt, V. Chapla, B. S. O. Colonia, M. Souza, Albert Lennon Lima Martins
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引用次数: 0

摘要

利用真菌制备甲壳素和壳聚糖,在处理、提取、生产控制等方面具有优势,可制得高质量的壳聚糖。本研究旨在分离和鉴定Cunninghamella spp.菌株,并评估其生物量、几丁质和壳聚糖的产量。我们测定了菌丝生长速率指数、葡萄糖和氮的消耗、pH变化、生物量、几丁质和壳聚糖的产量等宏观和微观表型指标。在评估菌丝生长速度指数后,考虑到快,我们发现UFT-Ce08和UFT-Ce09分离株的生长速度更高。因此,我们对分离菌株的产孢量进行了评估,在96小时内,所有分离菌株的孢子浓度均达到106孢子mL-1。YPD被认为是生物质生产的理想选择,因为它促进了微生物对有机化合物的有效消耗和合成。对9株分离菌株和参考菌株的生物量、甲壳素和壳聚糖产率进行了评价,结果表明,分离菌株UFT-Ce08的生物量最高,UFT-Ce11的甲壳素产率最高,UFT-Ce09的生物量次之,但壳聚糖产率最高。7株分离菌株的壳聚糖产率均高于对照菌株。因此,可以进一步优化该真菌生产壳聚糖的工艺,以提高规模化生产的产量。进一步优化该菌壳聚糖的生产工艺,可在规模化生产中提高产量
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chitosan and chitin production and extraction in isolates of Cunninghamella sp.
The use of fungi to obtain chitin and chitosan has advantages such as handling, extraction, and production control, thus allowing to generate high quality chitosan. This study aimed to isolate and identify strains of Cunninghamella spp., and assess the production of biomass, chitin, and chitosan. We determined the macroscopic and microscopic phenotypic aspects of the superiors, mycelial growth rate index, consumption of glucose and nitrogen, as well as the pH variation, and the production of biomass, chitin, and chitosan. After assessing the mycelial growth speed index, considered fast, we found that the UFT-Ce08 and UFT-Ce09 isolates showed a higher growth speed. Therefore, we assessed the sporulation of the isolates, and all of them reached the concentration of 106 spores mL-1 in the period of 96 hours. The YPD was considered ideal for biomass production because it promotes an efficient consumption and synthesis of organic compounds by microorganisms. The assessment of the biomass production and the chitin and chitosan yield of nine isolates and the reference strain showed that the UFT-Ce08 isolate had the highest amount of biomass, the UFT-Ce11 isolate had the highest chitin yield, and despite having the second smallest biomass, the UFT-Ce09 isolate had the highest chitosan yield. Seven isolates showed higher chitosan yield than the reference strain. Therefore, chitosan production from this fungus can be further optimized to improve yield on a large-scale production. Chitosan production from this fungus can be further optimized to improve yield in large-scale production
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来源期刊
Acta Scientiarum. Biological Sciences
Acta Scientiarum. Biological Sciences Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.00
自引率
0.00%
发文量
45
审稿时长
38 weeks
期刊介绍: The journal publishes original articles in all areas of Biological Sciences, including anatomy, bacteriology, molecular biology, biochemistry, botany, cytology and cell biology, animal behavior, ecology, limnology, embryology, and histology, morpho-physiology, genetics, microbiology, parasitology and zoology.
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