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Arbuscular mycorrhiza and kinetic parameters of phosphorus absorption by bean plants

机译:丛枝菌根和豆类植物吸收磷的动力学参数

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The mechanisms that determine greater P absorption by mycorrhizal plants are still not completely clear, and are attributed, in part, to an increase in the number of absorption sites promoted by the hyphae, and/or to a greater affinity of the colonized hypha or root carriers to P. The effect of mycorrhizae formed by Glomus etunicatum on the kinetic parameters of P absorption by the roots and on P influx in bean plants of the IAC-Carioca cultivar was evaluated, in two distinct plant development periods: at the onset of flowering and at the pod-filling stage (35 and 50 days after sowing, respectively). A mixture of sand and silica (9:1) was utilized as substrate and irrigated with nutrient solution. The kinetics assay was performed by the method of 32P depletion from the solution (depletion curve), using intact plants. Mycorrhization promoted greater growth and P absorption by bean plants, which was more conspicuously observed at the pod-filling stage. Mycorrhizal plants showed higher values of maximum ion uptake rate (Vmax) and net P influx at the flowering stage. Lower minimum ion concentration (Cmin) and Michaelis-Menten constant (Km) values were verified in mycorrhizal plants at the pod-filling stage. Mycorrhizal plants also presented higher net P influx per plant, in both stages. Cmin was the kinetic parameter more intimately related to P absorption, and a significant correlation was obtained between this parameter and shoot P content and accumulation in bean plants.
机译:决定菌根植物吸收更多P的机制仍不完全清楚,部分归因于菌丝促进的吸收位点数量增加,和/或定植的菌丝或根的亲和力更高。在两个不同的植物发育时期,评估了Glomus etunicatum形成的菌根对IAC-Carioca品种豆科植物根系吸收P的动力学参数和P流入的影响:在开花开始时和豆荚灌浆阶段(分别在播种后35天和50天)。使用沙子和二氧化硅的混合物(9:1)作为基质,并用营养液灌溉。使用完整的植物通过从溶液中消耗32 P的方法(消耗曲线)进行动力学测定。菌根促进了豆类植物的生长和磷吸收,这在豆荚灌浆阶段更为明显。菌根植物在开花期显示出较高的最大离子吸收率(Vmax)和净磷流入量。在豆荚灌装阶段,已在菌根植物中验证了较低的最低离子浓度(Cmin)和米氏-米森常数(Km)值。在这两个阶段中,菌根植物每株植物的净磷流入量也都较高。 Cmin是与磷吸收更密切相关的动力学参数,并且该参数与豆类植物苗中的磷含量和积累之间存在显着的相关性。

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