戴宏博, 陈克云, 杨京民, 刘丹丹, 王欣, 戴亚南, 吴珂萌, 李翔鸿, 彭渤. 富硅稻壳灰施用对土壤镉活性和不同品种水稻镉积累的影响[J]. 农业工程学报, 2023, 39(4): 200-207. DOI: 10.11975/j.issn.1002-6819.202209073
    引用本文: 戴宏博, 陈克云, 杨京民, 刘丹丹, 王欣, 戴亚南, 吴珂萌, 李翔鸿, 彭渤. 富硅稻壳灰施用对土壤镉活性和不同品种水稻镉积累的影响[J]. 农业工程学报, 2023, 39(4): 200-207. DOI: 10.11975/j.issn.1002-6819.202209073
    DAI Hongbo, CHEN Keyun, YANG Jingmin, LIU Dandan, WANG Xin, DAI Yanan, WU Kemeng, LI Xianghong, PENG Bo. Effects of silica-rich rice husk ash on soil Cd activity and Cd accumulation in different varieties of rice[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2023, 39(4): 200-207. DOI: 10.11975/j.issn.1002-6819.202209073
    Citation: DAI Hongbo, CHEN Keyun, YANG Jingmin, LIU Dandan, WANG Xin, DAI Yanan, WU Kemeng, LI Xianghong, PENG Bo. Effects of silica-rich rice husk ash on soil Cd activity and Cd accumulation in different varieties of rice[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2023, 39(4): 200-207. DOI: 10.11975/j.issn.1002-6819.202209073

    富硅稻壳灰施用对土壤镉活性和不同品种水稻镉积累的影响

    Effects of silica-rich rice husk ash on soil Cd activity and Cd accumulation in different varieties of rice

    • 摘要: 施硅(Si)可以有效减少水稻镉(Cd)积累,但稻壳灰(rice hull ash,RHA)作为一种广泛易得的富Si材料能否减控水稻Cd积累尚未清楚。为探究RHA对水稻Cd积累的影响,寻找一种可应用到田间的低成本富Si控Cd材料,该试验按土壤质量比分别添加0.2%、1%、4%的RHA,种植湘晚籼(低Cd积累品种)和玉针香(高Cd积累品种)两种水稻,探究RHA对两个水稻品种Cd积累的影响。结果显示,施加RHA提高了土壤Cd活性,促使铁锰氧化物结合态Cd向可交换态Cd和碳酸盐结合态Cd转换。RHA对水稻Cd积累的影响因水稻品种而异,施加RHA可抑制湘晚籼体内Cd转运,使秸秆Cd含量降低25%~44%,由白根至秸秆、节点I至节间I、节点I至旗叶的转移系数分别降低42%~48%、 2%~55%、30%~70%;RHA对玉针香吸收与转运Cd则无抑制作用。该研究结果揭示了RHA对水稻Cd积累的差异影响,为减控水稻Cd吸收提供了一种低成本的富Si材料。

       

      Abstract: Abstract: Root-applied silicon(Si) fertilizer can reduce cadmium(Cd) accumulation in rice by elevating soil pH, decreasing available Cd, down-regulating the expression of Cd transporter genes as well as forming Si-hemicellulose matrix Cd complex within the cell wall. However, current Si fertilizers for field application have a generally high price with low availability. Therefore, it is necessary to explore an alternative Si source that should be affordable and readily available to most farmers and can enhance soil available Si efficiently. Rice hull ash (RHA) is a low-cost Si-rich material prepared from rice husk. With significantly low crystallinity relative to the original husk, RHA can release sustainably a high level of Si in soil porewater. It has been employed successfully for inhibiting rice arsenic (As) accumulation, decreasing inorganic As in white rice from 0.36 mg/kg to 0.17 mg/kg. The control of RHA on rice Cd accumulation is yet to be clarified. In this study, the effect of RHA on Cd accumulation in rice grains was investigated with pot experiments. RHA was added at four dosages of 0, 0.2%, 1% and 4% (w/w), respectively. A low Cd- accumulating variety (Xiangwanxian)and a high Cd-accumulating variety (Yuzhenxiang) were employed. To identify chemical changes in the rice rhizosphere through its whole growing period, porewater was extracted weekly for analysis of Cd, Fe and Si concentrations, and soil pH and Eh values were measured in situ. Following harvest, the availability of Si and Cd in rhizosphere soil, and Cd concentrations in different soil fractions and rice tissues were determined, as well as Zn, Si, Fe, and Mn concentrations in white roots and straw. The results showed that the application of RHA increased soil Cd availability, due mainly to the enhanced Fe dissolution. With RHA applied, porewater Fe levels increased by up to 449 fold in Xiangwanxian and 386 fold in Yuzhenxiang, resulting in a substantial transformation of Fe/Mn oxides- bound Cd to an easily exchangeable fraction with much elevated Cd bioavailability. The effect of RHA on Cd accumulation in rice differed between varieties. It inhibited Cd accumulation and translocation in low Cd-accumulating variety (Xiangwanxian), reducing Cd concentration in straw by 25%-44%. Correspondingly, translocation from root to straw, from internode I to node I, and from node I to flag leaf decreased consistently by 42%-48%, 2%-55%, and 30%-70%, respectively. By contrast, RHA had no inhibitory effect on the high Cd-accumulating variety of Yuzhenxiang. The results of this work unraveled the differential effect of RHA on rice Cd accumulation and provided a cost-effective Si-rich material for mitigating Cd uptake by rice.

       

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