玉米和小麦真菌群落结构的分子分析

Kainat Hussain, M. Waseem, Iqra Mumtaz, S. Riaz
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摘要

根际真菌通过提供营养和拮抗病原体与植物生长和健康密切相关。在商业上,真菌在饮料、食品和药品等多个领域有多种用途。本研究旨在揭示两种主要谷类作物玉米(Zea mays L.)和小麦(Triticum aestivum L.)的核心真菌群落结构,通过形态学、生物化学和内部转录间隔(ITS)宏基因组学对根际真菌群落进行了探索。根据菌种形态,将检索到的真菌不精确地分为子囊菌门和颧菌门。通过宏观和显微镜鉴定出酵母菌、加利福尼亚植物炎、匍匐茎霉、柔嫩互花霉、地曲霉、黄曲霉、灰曲霉、黑曲霉和犬小孢子菌等菌种。此外,生物化学表征描述了真菌在促进植物生长中的作用。大多数菌株具有过氧化氢酶活性、吲哚生成、磷酸盐增溶、氨生成、氮酶活性和脲酶活性。利用ITS区扩增子测序进行宏基因组学分析,发现805个操作分类单元(otu),其中玉米647个,小麦620个。玉米和小麦根际真菌门类为子囊菌门、担子菌门、合菌门、壶菌门、英氏菌门。玉米(Zea mays L.)和小麦(Triticum aestivum L.)根际分类真菌中,子囊菌分别占93%和95%。玉米根际土壤的优势种为复杂赤霉素、月曲霉、烟灰鳞片菌、玉米叶线虫和疣密菌。
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Molecular characterization of Deciphering Fungal Community structure in Zea mays L. and Triticum Aestivum L
Rhizosphere fungi are strongly associated with plant growth and health by providing nutrients and antagonizing pathogens. Commercially, fungus has multipurpose applications in several sectors including beverages, food items and in medicines. Current study aimed to reveal the core fungal community structure of the two leading cereal crops that are Zea mays L. and Triticum aestivum L. The rhizosphere fungal community was explored via morphology, biochemistry and internal transcribe spacer (ITS) metagenomics. On the basis of morphology, the retrieved fungal strains were imprecisely classified into Ascomycota and Zygomycota. The species including Yeast, Botyritis californica, Rhizopus stolonifer, Alternaria tenuissima, Aspergillus terreus, Aspergillus flavus, Aspergillus nidulans, Aspergillus niger and Microsporum canis were identified on the basis of macroscopy and microscope. Moreover, the biochemical characterization depicted the role of fungi in promotion of plant growth. Majority of the isolates depicted catalase activity, indole production, phosphate solubilization, ammonia production, nitrogenase activity and urease activity. Metagenomics using amplicon sequencing of ITS region revealed the presence of 805 Operational Taxonomic Units (OTUs) with 647 OTUs in Zea mays and 620 OTUs in Triticum aestivum. The fungal phyla found in the rhizosphere of Zea mays L. and Triticum aestivum L. were Ascomycota, Basidiomycota, Zygomycota, Chytridiomycota, Incertae sedis fungi. Ascomycota accounted for 93% and 95% of classified fungi in rhizosphere of Zea mays L. and Triticum aestivum L. respectively. The dominant species found in the rhizosphere soil of Zea mays were Gibberella intricans, Curvularia lunata, Lepidosphaeria nicotiae, Edenia gomezpompae and Myrothecium verrucaria.
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