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Fungal diversity and community composition of wheat rhizosphere and non-rhizosphere soils from three different agricultural production regions of South Africa

机译:南非三种不同农业生产区的小麦根际和非根际土壤的真菌多样性和社区组成

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Understanding complex interactions among plant genotypes, environmental conditions and microbiome structure provides crucial information for sustainable farming practices towards disease control in agriculture. In this study, fungal diversity and composition in wheat rhizosphere and non-rhizosphere soils were investigated. Special emphasis was placed on pathogenic and beneficial genera. Wheat rhizosphere and non-rhizosphere soil from three different wheat growing regions were analyzed using Illumina high-throughput sequencing. The analysis showed a significant decline in the fungal diversity and richness from non-rhizosphere to rhizosphere soils. Ascomycota and Basidiomycota were the dominant fungal phyla detected in both rhizosphere and non-rhizosphere soils across the three test sites. Genera known to include wheat pathogens detected included Fusarium, Phoma and Colletotrichum genera while, beneficial groups included Trichoderma, Aureobasidium and Acaulospora. The presence of Fusarium was observed to be inversely proportional to that of Aureobasidium, a well-known antagonist of the Fusarium spp. This information could provide new opportunities to explore the potential of manipulating natural fungal antagonistic microorganisms for use in controlling soil-borne pathogenic fungi in wheat.
机译:了解植物基因型中的复杂相互作用,环境条件和微生物组结构为农业疾病控制的可持续耕作实践提供了重要信息。在本研究中,研究了小麦根际和非根际土壤中的真菌多样性和组成。将特殊的重点放在病原和有益的属上。使用Illumina高通量测序分析来自三种不同小麦生长区域的小麦根茎和非根际土壤。该分析表明,非根际对根际土壤的真菌多样性和丰富性显着下降。 Ascomycota和Basidiomycota是在三个测试部位的根际和非根际土壤中检测到的主要真菌植物。已知包括检测到的小麦病原体的属,包括镰刀菌,phoma和colletotrichum属,而有益群体包括Trichoderma,金黄皂甙和Acaulospora。观察到镰刀菌的存在与镰刀虫SPP的众所周知的拮抗剂的阿魏巴己鎓成反比。这些信息可以提供新的机会,探讨操纵天然真菌拮抗微生物的潜力,用于控制小麦的土壤传播的致病真菌。

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