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Assessment of the Diversity of Fungal Community Composition Associated With Vachellia pachyceras and Its Rhizosphere Soil From Kuwait Desert

机译:评估与vachellia pachyceras相关的真菌群落组成的多样性以及科威特沙漠的根际土壤

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摘要

This research examined the general soil fungi and AM fungal communities associated with a Lonely Tree species (Vachellia pachyceras) existing in the Sabah Al-Ahmad Natural Reserve located at the Kuwait desert. The goals of the study were to describe the general fungal and AM fungal communities present in the rhizospheric, non-rhizospheric soils and roots of V. pachyceras, respectively, as well as local and non-local V. pachyceras seedlings when grown under standard nursery growing environments. Soil and root samples were analyzed for an array of characteristics including soil physicochemical composition, and culture-independent method termed PCR-cloning, intermediate variable region of rDNA, the large subunit (LSU) and internal transcribed spacer (ITS) region sequence identifications. The results reveal that the fungal phylotypes were classified in four major fungal phyla namely Ascomycota, Basidiomycota, Chytridiomycota, and Zygomycota. The largest assemblage of fungal analyses showed communities dominated by members of the phylum Ascomycota. The assays also revealed a wealth of incertae sedis fungi, mostly affiliated to uncultured fungi from diverse environmental conditions. Striking difference between rhizosphere and bulk soils communities, with more fungal diversities and Operational Taxonomic Units (OTUs) richness associated with both the field and nursery rhizosphere soils. In contrast, a less diverse fungal community was found in the bulk soil samples. The characterization of AM fungi from the root system demonstrated that the most abundant and diversified group belongs to the family Glomeraceae, with the common genus Rhizophagus (5 phylotypes) and another unclassified taxonomic group (5 phylotypes). Despite the harsh climate that prevails in the Kuwait desert, studied roots displayed the existence of considerable number of AM fungal biota. The present work thus provides a baseline of the fungal and mycorrhizal community associated with rhizosphere and non-rhizosphere soils and roots of only surviving V. pachyceras tree from the Kuwaiti desert and seedlings under nursery growing environments.
机译:这项研究调查了一般土壤真菌和AM与现有在位于科威特沙漠萨巴赫·艾哈迈德自然保护区一棵孤独的树物种(Vachellia pachyceras)相关的真菌社区。这项研究的目标是描述一般真菌和AM存在于根际真菌社区,非根际土壤和V. pachyceras,分别,以及本地和非本地五pachyceras幼苗根系时在标准苗圃种植生长环境。土壤和根样品分析的特性,包括土壤理化组成的阵列,和非培养方法称为PCR克隆,rDNA的ITS中间可变区,大亚基(LSU)和内转录间隔区(ITS)区序列的标识。结果表明,真菌种系型被列为四大门类真菌子囊菌即,担子菌门,壶和接合菌。真菌分析的最大组合显示由子囊菌门的成员为主的社区。该试验还透露了一个丰富的地位未定真菌,大多附属于来自不同的环境条件下不可培养的真菌。根际和大部分土壤社区之间显着的差异,更多的真菌多样性和与场和苗圃二者相关联的操作分类单元(的OTU)丰富根际。相反,多元化程度较低真菌群落的大部分土壤样品中被发现。从根系统AM真菌的表征证实了最丰富的和多样化组属于家庭Glomeraceae与共同属Rhizophagus(5种系型)和另一未分类的分类群(5种系型)。尽管气候恶劣,在科威特沙漠中占据上风,研究显示根系的相当数量的AM真菌生物的存在。目前的工作从而提供了根际和非根际土壤和只在苗圃生长环境科威特沙漠和幼苗存活五pachyceras树根相关的真菌和菌根社区的基线。

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