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J Zhejiang Univ Sci B. 2024 Sep 15;25(9):773-788. doi: 10.1631/jzus.B2300449.
2
[Impact of Dicyandiamide (DCD) and 3,4-Dimethylpyrazole Phosphate (DMPP) on Ammonia-oxidizing Bacteria and Archaea in a Vegetable Planting Soil].[双氰胺(DCD)和3,4-二甲基吡唑磷酸盐(DMPP)对蔬菜种植土壤中氨氧化细菌和古菌的影响]
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Assessing the effectiveness of 3, 4-dimethylpyrazole phosphate (DMPP) inhibitor in mitigating NO emissions from contrasting Cd-contaminated soils.评估3,4-二甲基吡唑磷酸盐(DMPP)抑制剂在减轻不同镉污染土壤中氮氧化物排放方面的有效性。
Sci Total Environ. 2024 Feb 20;912:169105. doi: 10.1016/j.scitotenv.2023.169105. Epub 2023 Dec 7.
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[Effects of dicyandiamide on cadmium accumulation in pakchoi under instant soluble nitrogen fertilizers].[双氰胺对速溶氮肥条件下小白菜镉积累的影响]
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Environ Sci Pollut Res Int. 2018 Oct;25(28):28344-28354. doi: 10.1007/s11356-018-2873-6. Epub 2018 Aug 6.
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Comparative effects of 3,4-dimethylpyrazole phosphate (DMPP) and dicyandiamide (DCD) on ammonia-oxidizing bacteria and archaea in a vegetable soil.3,4-二甲基吡唑磷酸盐(DMPP)和双氰胺(DCD)对蔬菜土壤中氨氧化细菌和古菌的比较影响。
Appl Microbiol Biotechnol. 2015 Jan;99(1):477-87. doi: 10.1007/s00253-014-6026-7. Epub 2014 Aug 31.
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Influence of the nitrification inhibitor 3,4-dimethylpyrazole phosphate (DMPP) on ammonia-oxidizing bacteria and archaea in rhizosphere and bulk soil.硝化抑制剂 3,4-二甲基吡唑磷酸盐 (DMPP) 对根际和土壤中氨氧化细菌和古菌的影响。
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8
Effects of the Nitrification Inhibitor 3,4-Dimethylpyrazole Phosphate on Nitrification and Nitrifiers in Two Contrasting Agricultural Soils.硝化抑制剂3,4-二甲基吡唑磷酸盐对两种不同农业土壤硝化作用及硝化细菌的影响
Appl Environ Microbiol. 2016 Aug 15;82(17):5236-48. doi: 10.1128/AEM.01031-16. Print 2016 Sep 1.
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Efficiency of two nitrification inhibitors (dicyandiamide and 3, 4-dimethypyrazole phosphate) on soil nitrogen transformations and plant productivity: a meta-analysis.两种硝化抑制剂(双氰胺和3,4-二甲基吡唑磷酸盐)对土壤氮转化和植物生产力的影响:一项荟萃分析
Sci Rep. 2016 Feb 23;6:22075. doi: 10.1038/srep22075.
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Microbial N Transformations and N2O Emission after Simulated Grassland Cultivation: Effects of the Nitrification Inhibitor 3,4-Dimethylpyrazole Phosphate (DMPP).模拟草地开垦后的微生物氮转化与一氧化二氮排放:硝化抑制剂3,4-二甲基吡唑磷酸盐(DMPP)的影响
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本文引用的文献

1
The mechanism of the cadmium-induced toxicity and cellular response in the liver.镉诱导的肝脏毒性及细胞反应机制。
Toxicology. 2022 Oct;480:153339. doi: 10.1016/j.tox.2022.153339. Epub 2022 Sep 24.
2
Ammonia-oxidizing archaea possess a wide range of cellular ammonia affinities.氨氧化古菌具有广泛的细胞氨亲和力。
ISME J. 2022 Jan;16(1):272-283. doi: 10.1038/s41396-021-01064-z. Epub 2021 Jul 27.
3
Phytoremediation of cadmium-contaminated sediment using Hydrilla verticillata and Elodea canadensis harbor two same keystone rhizobacteria Pedosphaeraceae and Parasegetibacter.利用水鳖和穗状狐尾藻对镉污染沉积物进行植物修复,两者都含有同一关键根际细菌门 Pedosphaeraceae 和 Parasegetibacter。
Chemosphere. 2022 Jan;286(Pt 1):131648. doi: 10.1016/j.chemosphere.2021.131648. Epub 2021 Jul 22.
4
Cd bioavailability and nitrogen cycling microbes interaction affected by mixed amendments under paddy-pak choi continued planting.在水稻-白菜连续种植条件下,混合改良剂对镉生物有效性及氮循环微生物的影响。
Environ Pollut. 2021 Apr 15;275:116542. doi: 10.1016/j.envpol.2021.116542. Epub 2021 Feb 6.
5
Microbial communities in the rhizosphere of different willow genotypes affect phytoremediation potential in Cd contaminated soil.不同柳树基因型根际的微生物群落影响 Cd 污染土壤的植物修复潜力。
Sci Total Environ. 2021 May 15;769:145224. doi: 10.1016/j.scitotenv.2021.145224. Epub 2021 Jan 16.
6
[Effects of dicyandiamide on cadmium accumulation in pakchoi under instant soluble nitrogen fertilizers].[双氰胺对速溶氮肥条件下小白菜镉积累的影响]
Ying Yong Sheng Tai Xue Bao. 2020 Sep 15;31(9):3093-3100. doi: 10.13287/j.1001-9332.202009.035.
7
Comparison of Novel and Established Nitrification Inhibitors Relevant to Agriculture on Soil Ammonia- and Nitrite-Oxidizing Isolates.与农业相关的新型和已有的硝化抑制剂对土壤氨氧化和亚硝酸盐氧化分离菌的比较
Front Microbiol. 2020 Nov 4;11:581283. doi: 10.3389/fmicb.2020.581283. eCollection 2020.
8
Cadmium: Mitigation strategies to reduce dietary exposure.镉:减少膳食暴露的缓解策略。
J Food Sci. 2020 Feb;85(2):260-267. doi: 10.1111/1750-3841.14997. Epub 2020 Jan 20.
9
Regulatory mechanisms of nitrogen (N) on cadmium (Cd) uptake and accumulation in plants: A review.氮(N)对植物镉(Cd)吸收和积累的调控机制:综述。
Sci Total Environ. 2020 Mar 15;708:135186. doi: 10.1016/j.scitotenv.2019.135186. Epub 2019 Nov 22.
10
Knockdown of BTS may provide a new strategy to improve cadmium-phytoremediation efficiency by improving iron status in plants.敲低 BTS 可能通过改善植物铁营养状况为提高植物镉修复效率提供新策略。
J Hazard Mater. 2020 Feb 15;384:121473. doi: 10.1016/j.jhazmat.2019.121473. Epub 2019 Oct 14.

比较硝化抑制剂对减轻小白菜镉积累的效果及其相关微生物机制。

Comparison of nitrification inhibitors for mitigating cadmium accumulation in pakchoi and their associated microbial mechanisms.

机构信息

State Key Laboratory of Plant Environmental Resilience, Zhejiang University, Hangzhou 310058, China.

出版信息

J Zhejiang Univ Sci B. 2024 Sep 15;25(9):773-788. doi: 10.1631/jzus.B2300449.

DOI:10.1631/jzus.B2300449
PMID:39308067
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11422795/
Abstract

The use of nitrification inhibitors has been suggested as a strategy to decrease cadmium (Cd) accumulation in crops. However, the most efficient nitrification inhibitor for mitigating crop Cd accumulation remains to be elucidated, and whether and how changes in soil microbial structure are involved in this process also remains unclear. To address these questions, this study applied three commercial nitrification inhibitors, namely, dicyandiamide (DCD), 3,4-dimethylpyrazole phosphate (DMPP), and nitrapyrin (NP), to pakchoi. The results showed that both DCD and DMPP (but not NP) could efficiently decrease Cd concentrations in pakchoi in urea- and ammonium-fertilized soils. In addition, among the three tested nitrification inhibitors, DMPP was the most efficient in decreasing the Cd concentration in pakchoi. The nitrification inhibitors decreased pakchoi Cd concentrations by suppressing acidification-induced Cd availability and reshaping the soil microbial structure; the most effective nitrification inhibitor was DMPP. Ammonia oxidation generates the most protons during nitrification and is inhibited by nitrification inhibitors. Changes in environmental factors and predatory bacterial abundance caused by the nitrification inhibitors changed the soil microbial structure and increased the potential participants in plant Cd accumulation. In summary, our study identified DMPP as the most efficient nitrification inhibitor for mitigating crop Cd contamination and observed that the soil microbial structural changes caused by the nitrification inhibitors contributed to decreasing Cd concentration in pakchoi.

摘要

硝化抑制剂的使用被认为是减少作物中镉(Cd)积累的一种策略。然而,最有效的硝化抑制剂来减轻作物 Cd 积累仍有待阐明,并且土壤微生物结构的变化是否以及如何参与这一过程也不清楚。为了解决这些问题,本研究将三种商业硝化抑制剂,即双氰胺(DCD)、3,4-二甲基吡唑磷酸盐(DMPP)和硝基吡啶(NP)应用于小白菜。结果表明,DCD 和 DMPP(但不是 NP)都能有效地降低尿素和铵肥土壤中小白菜的 Cd 浓度。此外,在三种测试的硝化抑制剂中,DMPP 是降低小白菜 Cd 浓度最有效的一种。硝化抑制剂通过抑制酸化诱导的 Cd 可用性和重塑土壤微生物结构来降低小白菜的 Cd 浓度;最有效的硝化抑制剂是 DMPP。硝化作用在硝化过程中产生最多的质子,并被硝化抑制剂抑制。硝化抑制剂引起的环境因素和捕食性细菌丰度的变化改变了土壤微生物结构,并增加了植物 Cd 积累的潜在参与者。总之,我们的研究确定 DMPP 是减轻作物 Cd 污染最有效的硝化抑制剂,并观察到硝化抑制剂引起的土壤微生物结构变化有助于降低小白菜中的 Cd 浓度。