首页> 外文期刊>South African Journal of Plant and Soil >Assessment of arbuscular mycorrhizal fungal spore density and viability in soil stockpiles of South African opencast coal mines
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Assessment of arbuscular mycorrhizal fungal spore density and viability in soil stockpiles of South African opencast coal mines

机译:南非露天煤矿土壤中丛枝菌根真菌孢子浓度和活力评估

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The symbioses between arbuscular mycorrhizal (AM) fungi and plant roots is essential for nutrient uptake and growth of most vascular plants. Soil condition and management influence the density and viability of arbuscular mycorrhizal fungal (AMF) spores. In this study, AMF spore density and viability in soil stockpiles obtained from three opencast coal mines were assessed. Soil samples were randomly collected from stockpiles and an unmined site at depths of <20 cm (topsoil) and >20 cm (subsoil) for enumeration of AMF spores and a mycorrhizal trap culture experiment using maize (Zea mays). Roots of trap-plants were assessed for mycorrhization by classical staining as well as detection of nuclear rRNA gene of the Glomeromycota phylum. Number of AMF spores was highest in topsoil from the unmined site and was significantly (p < 0.05) influenced by site x sampling depth interaction. DNA-based detection revealed that AMF colonisation was mostly associated with topsoil than with subsoil. Five operational taxonomic units (OTUs)/ species related to Paraglomus were identified; however, some of the OTUs were phylogenetically distant from defined Paraglomus species on the basis of sequences in the GenBank database. Overall, results suggest that AMF spore density in stockpiles do not differ from an unmined site, but viability may be influenced by soil depth.
机译:丛枝菌根(AM)真菌和植物根部之间的共同论对营养增生和大多数血管植物的生长至关重要。土壤条件与管理影响丛枝菌根真菌(AMF)孢子的密度和活力。在本研究中,评估了从三种露天煤矿获得的土壤库存中的AMF孢子密度和可行性。从库存和未在20厘米(TOPSOIL)和> 20cm(SECSOIL)的深度,用于枚举AMF孢子和使用玉米(ZEA MAYS)的菌根培养实验,将土壤样品随机收集。通过经典染色评估捕集植物的根源以及肾小球菌核RRNA基因的检测。从未定制的位点,表土中的AMF孢子数量最高,受到位点X​​采样深度相互作用的显着影响(P <0.05)。基于DNA的检测显示,AMF定植大多数与具有底层的表土相关。确定了五个与帕拉根有关的分类单位(OTUS)/物种;然而,一些Otus在Genbank数据库中的序列基于序列来保护距离定义的寄生物质。总体而言,结果表明库存中库存中的AMF孢子密度与未传输的位置没有不同,但可存活率可能受到土壤深度的影响。

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