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Arbuscular mycorrhizal fungi in soil roots and rhizosphere of Medicago truncatula: diversity and heterogeneity under semi-arid conditions

机译:Medi藜苜蓿土壤根和根际的丛枝菌根真菌:半干旱条件下的多样性和异质性

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摘要

Mycorrhizal symbioses are considered indicators of ecosystem biodiversity. However, their diversity and relevance in arid and semi-arid ecosystems are poorly understood. This study addressed this subject, the main objective being to evaluate arbuscular mycorrhizal fungi (AMF) diversity and heterogeneity in a semi-arid region. Samples of bulk and rhizosphere soil and fine roots of Medicago truncatula were collected at four different sites with the same aridity index (6.1), in Bou-Hedma National Park, Tunisia, a semi-arid ecosystem. AMF taxa were assessed by 454- pyrosequencing and identified by BLAST matching of operational taxonomic units (OTUs) against the MaarjAM database, targeting AMF SSU rRNA gene diversity. Roots were the hotspots of AMF diversity (107 OTUs out of a total of 138). Of the 138 OTUs, 113 found correspondence in the MaarjAM database, with 32 AMF virtual taxa (VTX),>19 Site-exclusive (SE) and 13 common to at least two sites (Non-site exclusive, NSE); the remaining 25 OTUs grouped in 16 putative new AMF taxa (pNTX), each one consisting of OTUs sharing pairwise distances not higher than 3%. We found a high diversity and heterogeneity of AMF across the four sites, which showed, in a regression analysis, significant relation to six out of the eight environmental parameters evaluated: grazing activity and soil texture, electrical conductivity, organic matter, total phosphorus and total nitrogen. AMF colonization of plants also presented significant differences among the four sites, as well as spore density, microbial biomass and several enzymatic activities (dehydrogenase, β-glucosidase and phosphatase) evaluated in rhizosphere soils. The four sites clustered in two groups in a hierarchical clustering evaluation based on their AMF diversity (total numbers of OTU, VTX and pNTX) and the parameters referred above. The crucial role of abiotic factors, other than aridity index, on AMF community composition, was evidenced by the high heterogeneity found between AMF communities across sites under identical aridity conditions.
机译:菌根共生被认为是生态系统生物多样性的指标。但是,人们对它们在干旱和半干旱生态系统中的多样性和相关性了解得很少。这项研究解决了这个问题,主要目的是评估半干旱地区的丛枝菌根真菌(AMF)多样性和异质性。在半干旱生态系统突尼斯Bou-Hedma国家公园的四个具有相同干旱指数(6.1)的地点采集了大花苜蓿,根际土壤和细根的样品。通过454焦磷酸测序对AMF分类单元进行评估,并通过针对操作AMF SSU rRNA基因多样性的MaarjAM数据库的操作分类单元(OTU)进行BLAST匹配进行鉴定。根是AMF多样性的热点(总共138个OTU)。在138个OTU中,在MaarjAM数据库中发现了113个对应关系,其中包含32个AMF虚拟分类单元(VTX),> 19个站点专有(SE)和至少两个站点共有的13个站点(非站点专有, NSE);其余的25个OTU分为16个新的AMF分类单元(pNTX),每个单元由成对距离组成的OTU组成,不超过3%。我们在四个地点发现了AMF的高度多样性和异质性,这在回归分析中显示,与评估的八个环境参数中的六个有显着关系:放牧活动和土壤质地,电导率,有机质,总磷和总磷氮。植物的AMF定植在四个部位之间也表现出显着差异,在根际土壤中评估了孢子密度,微生物生物量和几种酶活性(脱氢酶,β-葡萄糖苷酶和磷酸酶)。四个站点根据它们的AMF多样性(OTU,VTX和pNTX的总数)和上述参数在两个层次中进行聚类评估。在相同的干旱条件下,跨地点的AMF群落之间存在高度异质性,这证明了非生物因子(除干旱指数以外)对AMF群落组成的关键作用。

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