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尿素施肥对添加或不添加醋酸条件下不同镍(Ni)水平下的蚕豆(Vicia faba L.)生长的影响,使用 N 标记肥料。

Effect of urea fertilization on growth of broad bean (Vicia faba L.) under various nickel (Ni) levels with or without acetic acid addition, using N-labeled fertilizer.

机构信息

Soil and Water Research Department, Nuclear Research Center, Atomic Energy Authority, Abou-Zaabl, 13759, Egypt.

Key Laboratory of Agro-ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha, 410125, China.

出版信息

Environ Geochem Health. 2021 Jun;43(6):2423-2431. doi: 10.1007/s10653-020-00707-y. Epub 2020 Sep 14.

Abstract

Although nickel (Ni) has direct relationship with nitrogen metabolism of plants, the high dose of Ni fertilizer in broad bean plants may affect the nitrogen use efficiency (NUE), impair plant development and even cause Ni pollution in soil. Thus, a pot experiment was set up to study the effect of urea fertilization on N-uptake, root and shoots' Ni content as well as growth of broad bean plants under different levels of Ni, using N tracer technique. N-labeled urea (5% N atom excess) was added at three doses (0, 30 and 60 mg N kg soil). Nickel sulfate (NiSO) was also applied at three levels (0, 50 and 100 mg Ni kg soil). The experiment was laid out with or without acetic acid in randomized complete block design in three replicates. Treatment with the addition of 60 mg N + 50 mg Ni showed the highest values in dry weights of root and shoots, N-uptake by shoots, nitrogen derived from fertilizer (Ndff %) and NUE % by shoots in both with or without acetic acid solution. Higher rate of Ni addition can decrease shoot and root biomass by inhibiting the ability of the plant to uptake the nitrogen efficiently. However, addition of acetic acid solution induced the improvement of NUE % and Ndff % by shoot and root of broad bean plants. This study provides insight into how to improve plant yield without damaging the soil health and will be helpful to create a better world with sustainable agriculture.

摘要

尽管镍(Ni)与植物的氮代谢直接相关,但在蚕豆植株中施加高剂量的镍肥可能会影响氮利用效率(NUE),损害植物的生长发育,甚至导致土壤中的镍污染。因此,本研究采用氮示踪技术,通过盆栽实验设置不同镍水平,研究了在添加或不添加醋酸条件下,尿素施肥对不同镍水平下蚕豆植株氮吸收、根和地上部镍含量以及生长的影响。在 3 个剂量(0、30 和 60 mg N kg 土壤)下添加了 N 标记的尿素(5% N 原子过量)。同时还施加了 3 个水平的硫酸镍(NiSO)(0、50 和 100 mg Ni kg 土壤)。实验采用完全随机区组设计,醋酸添加与否 3 次重复。添加 60 mg N+50 mg Ni 的处理在根和地上部干重、地上部氮吸收量、氮肥贡献率(Ndff%)和地上部氮利用效率(NUE%)方面均表现出最高值,无论是否添加醋酸溶液。较高的镍添加率可能会通过抑制植物有效吸收氮的能力,降低地上部和地下部的生物量。然而,添加醋酸溶液可提高蚕豆地上部和地下部的 NUE%和 Ndff%。本研究深入探讨了如何在不损害土壤健康的情况下提高作物产量,将有助于创建可持续农业的美好世界。

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