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Shift from complementarity to facilitation on P uptake by intercropped wheat neighboring with faba bean when available soil P is depleted

机译:当可利用的土壤P耗尽时与蚕豆相邻的间作小麦对P吸收的吸收从互补转变为促进

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摘要

Rhizosphere processes stimulate overyielding and facilitative phosphorus (P) uptake in cereal/legume intercropping systems. However, little is known about when and how rhizosphere alteration of legumes plays a role in improving P uptake by cereals. Wheat was grown isolated, monocropped or intercropped with faba bean in pots with low-P soil. The biomass, P content, carboxylates and phosphatases activity were measured in 15 destructive samplings. Intraspecific competition of the biomass and P uptake of monocropped wheat was not significant before 40 and 36 days after sowing (DAS), whereas there was interspecific competition of biomass of intercropped wheat before 66 DAS. However, afterwards, the increments of the biomass and P uptake of the intercropped wheat were 1.3–1.9 and 1.9–2.3 times of increment of monocropped wheat. Meanwhile, the concentrations of malate and citrate and the acid phosphatase activity in the rhizospheres of intercropped wheat were significantly increased, which suggested that wheat/faba bean intercropping is efficient in P utilization due to complementary P uptake in the early growth stage and the positive interactions of the rhizosphere processes when the soil P was depleted.
机译:根际过程刺激谷物/豆类间作系统中的过度增产和促进磷(P)的吸收。但是,关于何时以及如何改变豆类的根际作用对改善谷物对磷的吸收所起的作用知之甚少。在低磷土壤盆中将小麦与蚕豆隔离种植,单季种植或间作。在15个破坏性采样中测量了生物量,P含量,羧酸盐和磷酸酶的活性。播后40天和36天,单粒小麦的生物量竞争和磷吸收不显着,而66 DAS前间作小麦的生物量竞争却没有。然而,此后,间作小麦的生物量和磷吸收量的增量分别是单作小麦增量的1.3-1.9倍和1.9-2.3倍。同时,间作小麦的根际中苹果酸和柠檬酸的浓度以及酸性磷酸酶的活性显着增加,这表明小麦/蚕豆间作对磷的利用是有效的,这是由于早生阶段的互补磷吸收和正向相互作用土壤P枯竭时根际过程的变化

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