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首页> 外文期刊>Plant and Soil >Plant growth, nutrient acquisition and mycorrhizal symbioses of a waterlogging tolerant legume (Lotus glaber Mill.) in a saline-sodic soil
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Plant growth, nutrient acquisition and mycorrhizal symbioses of a waterlogging tolerant legume (Lotus glaber Mill.) in a saline-sodic soil

机译:盐碱土壤中耐涝豆科植物(Lotus glaber Mill。)的植物生长,养分获取和菌根共生

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Seedlings of Lotus glaberMill., were grown in a native saline-sodic soil in a greenhouse for 50 days and then subjected to waterlogging for an additional period of 40 days. The effect of soil waterlogging was evaluated by measuring plant growth allocation, mineral nutrition and soil chemical properties. Rhizobiumnodules and mycorrhizal colonisation in L. glaberroots were measured before and after waterlogging. Compared to control plants, waterlogged plants had decreased root/shoot ratio, lower number of stems per plant, lower specific root length and less allocation of P and N to roots. Waterlogged plants showed increased N and P concentrations in plant tissues, larger root crown diameter and longer internodes. Available N and P and organic P, pH and amorphous iron increased in waterlogged soil, but total N, EC and exchangeable sodium were not changed. Soil waterlogging decreased root length colonised by arbuscular mycorrhizal (AM) fungi, arbuscular colonisation and number of entry points per unit of root length colonised. Waterlogging also increased vesicle colonisation and Rhizobium nodules on roots. AM fungal spore density was lower at the end of the experiment in non-waterlogged soil but was not reduced under waterlogging. The results indicate that L. glaber can grow, become nodulated by Rhizobium and colonised by mycorrhizas under waterlogged condition. The responses of L. glaber may be related its ability to form aerenchyma.
机译:Lotus glaberMill的幼苗在温室的天然盐碱土壤中生长50天,然后再进行40天的涝渍处理。通过测量植物生长分配,矿物质营养和土壤化学性质来评估土壤涝的影响。在浸水之前和之后测量了紫苏的根瘤菌根和菌根定植。与对照植物相比,淹水的植物降低了根/茎比,降低了每株植物的茎数,降低了比根的长度,并减少了磷和氮对根的分配。涝渍的植物显示出植物组织中氮和磷的浓度增加,根冠直径更大,节间更长。淹水土壤中有效氮和磷以及有机磷,pH和无定形铁增加,但总氮,EC和可交换钠不变。土壤淹水减少了丛枝菌根(AM)真菌定植的根长,丛枝定植和每单位定植根长的进入点数。渍水还增加了根部的囊泡定植和根瘤根瘤。在实验结束时,在非涝渍土壤中AM真菌孢子密度较低,但在渍涝条件下并未降低。结果表明,在淹水条件下,欧洲落叶松可以生长,被根瘤菌根瘤和被菌根定植。 glaber glaber的反应可能与其形成气孔的能力有关。

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