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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Arbuscular mycorrhizal symbiosis and dark septate endophytes under contrasting grazing modes in the Magellanic steppe of Tierra del Fuego
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Arbuscular mycorrhizal symbiosis and dark septate endophytes under contrasting grazing modes in the Magellanic steppe of Tierra del Fuego

机译:放牧模式下麦哲伦草原放牧模式下丛枝菌根共生和深色隔生内生菌

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摘要

The impact of the mode and intensity of sheep grazing on the co-occurrence of AM fungi and DSE in Poa rigidifolia and Deschampsia flexuosa roots and their associations with N and Pin plant tissue was studied in a range of degraded grasslands from Tierra del Fuego (Argentina). Under different grazing modes. AM colonization was always higher in Deschampsia (36.8%) than in Poa (24.5%), whereas DSE colonization was similar in both species (28% in Deschampsia and 27% in Poa). High DSE colonization was associated with soils of low fertility and subjected to grazing associated with an intense grassland disturbance. In contrast, AM colonization was associated with more fertile soils and low grassland disturbance. An opposite response of AM and DSE colonization was observed in low or absence of grazing. Nutrients in the plant tissue were always higher in Deschampsia than in Poa. Nitrogen concentration in both plants was positively correlated with AM and negatively with DSE colonization, whereas P concentration showed no correlation with AM or DSE. The highest AM colonization indexes and nutrients in tissue may explain why Deschampsia is much better adapted to the acid, xeric conditions and low fertility of the soils of these grasslands than Poa
机译:研究了绵羊放牧方式和强度对刚硬叶菜和挠性去皮草根中AM真菌和DSE共存的影响以及它们与N和Pin植物组织的关系)。在不同的放牧模式下。在德尚(AM)的定居率始终高于(36.8%)在波阿(24.5%),而DSE的定居在两个物种中都相似(德尚(28%)和波阿(27%)。高DSE殖民地与低肥力的土壤有关,并因强烈的草原干扰而遭受放牧。相反,AM的定殖与更肥沃的土壤和较低的草原干扰有关。在低放牧或不放牧的情况下,观察到AM和DSE定植的相反反应。在去schampsia中,植物组织中的营养总是高于在Poa中。两种植物中的氮浓度与AM呈正相关,与DSE定殖呈负相关,而P浓度与AM或DSE无相关性。最高的AM定植指数和组织中的养分可以解释为什么Deschampsia比Poa更好地适应了这些草原的酸,干燥条件和低肥力

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