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Arbuscular Mycorrhizal Fungi Alter Plant Growth, Soil Aggregate Stability, and Rhizospheric Organic Carbon Pools of Citrus

机译:丛枝菌根真菌改变植物生长,土壤骨料稳定性和柑橘的根茎有机碳库

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The effects of an arbuscular mycorrhizal fungus, Glomus mosseae, on plant growth, soil aggregate stability, and rhizosphere carbon pools of young Citrus junos seedings were investigated with potted experiment in greenhouse. After three months of mycorrhizal inoculation, root colonization was 54.25%. Inoculation with G. mosseae significantly promoted plant height, stem diameter, leaf number, and shoot and root fresh weights. Colonization by G. mosseae significantly increased soil aggregate stability of the citrus rhizosphere through increase of mean weight diameter. G. mosseae could release a specific glycoprotein viz. glomalin into the rhizosphere as glomalin-related soil protein (GRSP). Meanwhile, mycorrhizal colonization was significantly positively correlated with two GRSP fractions. In stabilization of aggregate stability, in GRSP fractions only easy extractable -GRSP might contribute the role. The mycorrhizal symbiosis could increase soil organic carbon, hot-water extractable carbohydrates, and hydrolyzed carbohydrates concentrations, but the differences were not significant. Combined with the correlation analysis, it suggests that GRPS did not significantly regulate rhizospheric carbon pools, due to the short treated time (only 3 months).
机译:丛枝菌根真菌,球囊霉,对植物生长,土壤团聚体稳定性,和年轻的香橙幼苗根际土壤碳库的影响,在温室盆栽试验进行了调查。 3个月接种菌根后,根定植54.25%。接种G.霉显著促进植物高度,茎直径,叶数,芽和根鲜重。定植G.通过平均重量直径的增加霉显著增加了柑桔根际的土壤团粒稳定性。 G.霉会释放特定的糖蛋白即。到球囊霉素根际球囊霉素作为相关的土壤蛋白(GRSP)。同时,菌根定植显著正有两个GRSP分数相关。在团聚体稳定性的稳定,在GRSP分数不仅容易提取-GRSP可能有助于作用。菌根共生能增加土壤有机碳,热水提取碳水化合物和水解糖浓度,但差异不显著。与相关分析相结合,它表明,GRPS没有显著调节根际碳库,由于短期治疗时间(仅3个月)。

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