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生长培养基中的硅/砷比例会影响水稻(Oryza sativa)对砷的吸收、亚砷酸盐外流及亚砷酸盐的转运吗?

Do Si/As ratios in growth medium affect arsenic uptake, arsenite efflux and translocation of arsenite in rice (Oryza sativa)?

作者信息

Zhang Min, Zhao Quanli, Xue Peiying, Zhang Shijie, Li Bowen, Liu Wenju

机构信息

College of Resources and Environmental Science, Hebei Agricultural University, Baoding, Hebei Province 071000, China; Key Laboratory for Farmland Eco-environment of Hebei Province, Baoding, Hebei Province 071000, China.

The Teaching and Experimental Station, Hebei Agricultural University, Baoding, Hebei Province 071000, China.

出版信息

Environ Pollut. 2017 Oct;229:647-654. doi: 10.1016/j.envpol.2017.06.078. Epub 2017 Jul 7.

Abstract

Silicon (Si) may decrease the uptake and accumulation of arsenic (As) in rice. However, the effects of Si/As ratios in growth medium on arsenic uptake, arsenite efflux to the external medium and translocation of arsenite in rice are currently unclear. Rice seedlings (Oryza sativa L.) were exposed to nutrient solutions with 10 μM arsenite [As(III)] or 10 μM arsenate [As(V)] to explore the influence of different silicic acid concentrations (0, 10, 100, 1000 μM) on arsenic uptake and translocation of arsenite with or without 91 μM phosphate for 24 h. Arsenic speciation was determined in nutrient solutions, roots, and shoots. In the arsenite treatments, different Si/As ratios (1:1, 10:1, 100:1) did not affect As(III) uptake by rice roots, however they did inhibit translocation of As(III) from roots to shoots significantly (P < 0.001) in the absence of P. In the arsenate treatments, a Si/As ratio of 100:1 significantly decreased As(V) uptake and As(III) efflux compared with the control (Si/As at 0:1), accounting for decreases of 27.4% and 15.1% for -P treatment and 47.8% and 61.1% for + P treatment, respectively. As(III) is the predominant species of arsenic in rice roots and shoots. A Si/As ratio of 100:1 reduced As(III) translocation from roots to shoots markedly without phosphate. When phosphate was supplied, As(III) translocation from roots to shoots was significantly inhibited by Si/As ratios of 10:1 and 100:1. The results indicated that in the presence of P, different silicic acid concentrations did not impact arsenite uptake and transport in rice when arsenite was supplied. However, a Si/As ratio of 100:1 inhibited As(V) uptake, as well as As(III) efflux and translocation from roots to shoots when arsenate was supplied.

摘要

硅(Si)可能会减少水稻对砷(As)的吸收和积累。然而,生长介质中硅/砷比例对水稻砷吸收、亚砷酸盐向外部介质的外排以及亚砷酸盐在水稻体内的转运的影响目前尚不清楚。将水稻幼苗(Oryza sativa L.)暴露于含有10 μM亚砷酸盐[As(III)]或10 μM砷酸盐[As(V)]的营养液中,以探究不同硅酸浓度(0、10、100、1000 μM)对砷吸收以及在有或无91 μM磷酸盐存在情况下亚砷酸盐转运的影响,处理时间为24小时。测定了营养液、根和地上部中的砷形态。在亚砷酸盐处理中,不同的硅/砷比例(1:1、10:1、100:1)不影响水稻根对As(III)的吸收,但在无磷情况下,它们显著抑制了As(III)从根向地上部的转运(P < 0.001)。在砷酸盐处理中,与对照(硅/砷比例为0:1)相比,100:1的硅/砷比例显著降低了As(V)的吸收和As(III)的外排,对于无磷处理分别降低了27.4%和15.1%,对于加磷处理分别降低了47.8%和61.1%。As(III)是水稻根和地上部中砷的主要形态。100:1的硅/砷比例在无磷酸盐时显著降低了As(III)从根向地上部的转运。当供应磷酸盐时,10:1和100:1的硅/砷比例显著抑制了As(III)从根向地上部的转运。结果表明,在供应磷的情况下,当供应亚砷酸盐时,不同的硅酸浓度不影响水稻中亚砷酸盐的吸收和运输。然而,当供应砷酸盐时,100:1的硅/砷比例抑制了As(V)的吸收以及As(III)的外排和从根向地上部的转运。

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