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首页> 外文期刊>Fungal Ecology >A foliar endophyte increases the diversity of phosphorus-solubilizing rhizospheric fungi and mycorrhizal colonization in the wild grass Bromus auleticus
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A foliar endophyte increases the diversity of phosphorus-solubilizing rhizospheric fungi and mycorrhizal colonization in the wild grass Bromus auleticus

机译:叶内生菌增加了野草布鲁姆氏菌溶磷根际真菌的多样性和菌根定殖

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摘要

Asexual Epichloe endophytes establish mutualistic symbioses with grasses, improve fitness of their hosts and modify the surrounding environment. To test the hypothesis that this symbiotic association increases the abundance and diversity of phosphate-solubilizing fungi (PSF), a pot experiment was conducted combining two endophytic statuses: Epichloe-infected (E+) and non-infected (E-) Bromus auleticus plants, and two soil types collected from agricultural (A) and non-agricultural (NA) fields. Soil fungi were isolated at the beginning of the experiment and 12 months after the introduction of B. auleticus, and tested for their inorganic P (Pi)-solubilizing capability. Arbuscular mycorrhizal colonization in B. auleticus roots of E+ and E- plants was also analyzed. PSF abundance was affected by the endophytic status and by the type of soil; the highest value was detected in the E-NA treatment, followed by the E+A treatment. PSF diversity was higher in NA than in A soils and higher in soils treated with E+ than in those treated with E-. Arbuscular rnycorrhizal fungi colonization was higher in E+ plants. We hypothesize that the positive association between Epichloe endophytes and mycorrhizal fungi with an increase in the PSF diversity would generate an increase in the phosphorus (P) available to plants. (C) 2015 Elsevier Ltd and The British Mycological Society. All rights reserved.
机译:无性Epichloe内生植物与草建立了共生共生体,提高了它们的寄主的适应能力,并改变了周围的环境。为了检验这种共生关系增加了磷酸盐增溶真菌(PSF)的丰度和多样性的假设,进行了盆栽实验,结合了两种内生状态:埃希克洛氏菌感染(E +)和未感染(E-)布鲁姆氏菌,以及从农业(A)和非农业(NA)领域收集的两种土壤类型。在实验开始时和引入金黄色葡萄球菌后12个月,分离土壤真菌,并测试其对无机P(Pi)的增溶能力。还分析了E +和E-植物的B. auleticus根中的丛枝菌根定植。 PSF的丰度受内生状况和土壤类型的影响;在E-NA处理中检测到最高值,然后是E + A处理。在NA中,PSF多样性高于A土壤,而用E +处理的土壤中PSF多样性高于用E-处理的土壤。 E +植物中丛枝菌根真菌定植率较高。我们假设埃希克洛内生菌和菌根真菌之间的正相关性与PSF多样性的增加会增加植物可用的磷(P)。 (C)2015 Elsevier Ltd和英国Mycological Society。版权所有。

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