药用植物 Abutilon indicum 的耐压活性和内生真菌的多样性

IF 2.5 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Environmental Research Communications Pub Date : 2024-07-10 DOI:10.1088/2515-7620/ad61c5
Haseena M, S. Arumugam, Suresh Gopal, Saleh H. Salmen, Hossam M Aljawdah, Murugan A. Munusamy
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引用次数: 0

摘要

本研究旨在利用形态学和分子技术评估从苘麻中分离的内生真菌的多样性。分离的真菌暴露于不同程度的盐度、温度和重金属,包括浓度为 3.6 和 11.5 mM 的 Ag2+ 和 Zn2+。从每种植物中分离出 30 个根段,并在马铃薯葡萄糖琼脂平板上进行培养。从受感染的根段中随机分离出四种内生真菌,分别属于曲霉属、梅洛兹菌属和青霉属。系统进化分析表明,韦氏曲霉属、吲哚曲霉属、鲤鱼曲霉属和柠檬青霉属的分离物之间存在显著的多样性,其序列相似度高达 99%。大多数分离菌株都能在盐胁迫条件下生长,NaCl 浓度分别为 200 mM(26%)、400 mM(24%)、600 mM(21%)、800 mM(13%)和 1000 mM(16%)。对温度的耐受性,内生菌可在 25°C 至 35°C 的范围内存活,但在 50°C 以上则无法存活。89% 的内生真菌分离物对重金属具有耐受性,当暴露于 Ag2+ 时,其生物量显著下降。内生真菌分离物对 Zn2+ 的敏感性降低,但 33% 至 60% 的分离物在高浓度 Zn2+ 条件下生长旺盛。这些研究结果表明,当暴露在各种胁迫条件下时,A. welwitschiae 的内生真菌会促进其生长。我们的研究结果表明,在不同的胁迫条件下,真菌内生菌的存在会导致显著的生长,这可能有助于植物修复目的。
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Stress tolerance activity and Diversification of Endophytic fungi from the medicinal plant Abutilon indicum
This study aimed to assess the diversity of endophytic fungi isolated from Abutilon indicum using morphological and molecular techniques. The isolates were exposed to various levels of salinity, temperatures, and heavy metals, including Ag2+ and Zn2+, at concentrations of 3.6 and 11.5 mM. Thirty root segments were isolated from each plant and cultured on potato dextrose agar plates. Four endophytic fungi were randomly isolated from infected root segments, belonging to the genera Aspergillus, Meyerozyma, and Penicillium. The phylogenetic analysis revealed significant diversity among the isolates of Aspergillus welwitschiae, Aspergillus indologenus, Meyerozyma carpophila, and Penicillium citrinum, with a 99% similarity in their sequences. Most isolates were able to thrive under salt stress conditions at NaCl concentrations of 200 mM (26%), 400 mM (24%), 600 mM (21%), 800 mM (13%), and 1000 mM (16%). Tolerant to temperature, endophytes could survive in the range of 25°C to 35°C but could not survive above 50°C. Heavy metals tolerance of 89% of these isolates led to a significant decrease in biomass production when exposed to Ag2+. Endophytic fungal isolates showed decreased sensitivity to Zn2+, but between 33% and 60% showed strong growth in conditions with high levels of Zn2+. These findings revealed that endophytic fungi of A. welwitschiae enhanced growth when exposed to various stress conditions. Our findings indicate that the presence of fungal endophytes in different stress conditions leads to significant growth, and this could be useful for phytoremediation purposes.
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来源期刊
Environmental Research Communications
Environmental Research Communications ENVIRONMENTAL SCIENCES-
CiteScore
3.50
自引率
0.00%
发文量
136
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