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Influence of early stages of arbuscular mycorrhiza on uptake of zinc and phosphorus by red clover from a low-phosphorus soil amended with zinc and phosphorus

机译:丛枝菌根早期对低磷土壤锌磷改良红三叶草吸收锌磷的影响

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In a pot experiment, red clover (Trifolium pratense) was grown in sterilized Zn-amended low available P soil (0, 50 or 400 mg Zn kg~(-1)) with or without 100 mg kg~(-1) added P and with or without inoculation with the arbuscular mycorrhizal (AM) fungus G. mosseae. When the plants were harvested after 40 days, AM colonization of the roots was still at an early stage, with only 14―38% of total root length colonized on average. AM colonization was highest in low-P soil, and was lowest in soil amended with 400 mg Zn kg~(-1). Shoot yields were highest in AM plants with added P, but root yields were unaffected by AM inoculation. Shoot and root yields were higher with 100 mg added P kg~(-1) soil, but lower with 400 mg Zn kg~(-1) than 50 mg Zn kg~(-1) or controls unamended with Zn. Shoot and root P concentrations were seldom higher in AM plants, but shoot P offtakes were higher in AM plants with added P. Concentrations of Zn and Cu were much higher in the foots than in the shoots. Shoot and root Zn and shoot Cu were lower, but root Cu was higher, in AM plants. Soil residual pH after plant growth was higher in AM treatments, and residual total Zn was also higher, indicating lower Zn uptake by AM plants. Soil solution pH was higher in AM treatments, and soil solution Zn was lower in the presence of mycorrhiza. The results are discussed in terms of AM protection of the plants against excessive shoot Zn uptake.
机译:在盆栽实验中,红三叶草(Trifolium pratense)在添加或不添加100 mg kg〜(-1)的无菌Zn改良的低速有效磷土壤(0、50或400 mg Zn kg〜(-1))中生长。以及接种或不接种丛枝菌根(AM)真菌G. mosseae。 40天后收获植物时,根的AM定植仍处于早期阶段,平均仅定植总根长的14%至38%。在低磷土壤中AM定殖最高,而在400 mg Zn kg〜(-1)修正的土壤中AM定殖最低。添加了P的AM植物的枝条产量最高,但AM接种不会影响根系产量。添加100 mg P kg〜(-1)土壤的地上部和根部产量较高,而添加400 mg Zn kg〜(-1)的地上部和根部的产量则低于50 mg Zn kg〜(-1)或未添加锌的对照。 AM植株的茎和根中P的含量很少较高,但是添加了P的AM植株中P的吸收量较高。脚上的Zn和Cu的浓度要比芽中的高得多。在AM植物中,枝条和根系Zn和枝条Cu较低,但根系Cu较高。在AM处理中,植物生长后的土壤残留pH较高,残留的总Zn也较高,表明AM植物吸收的锌较低。在AM处理中,土壤溶液的pH值较高,而在菌根的存在下,土壤溶液的Zn含量较低。讨论了植物的AM保护作用,以防止过量吸收枝条锌。

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