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在虾壳粉堆肥过程中了解铜和锌与氮代谢的关系。

Insights into the associations of copper and zinc with nitrogen metabolism during manure composting with shrimp shell powder.

机构信息

College of the Environment & Ecology, Xiamen University, Xiamen 361102, PR China.

College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi 712100, PR China.

出版信息

Bioresour Technol. 2022 Apr;349:126431. doi: 10.1016/j.biortech.2021.126431. Epub 2021 Nov 30.

Abstract

The application of shrimp shell powder (SSP) in manure composting can promote the maturation of compost and reduce the associated environmental risk. This study investigated the response of adding SSP at different levels (CK: 0, L: 5%, M: 10%, and H: 15%) on heavy metal resistance genes (MRGs), nitrogen functional genes, enzymes, and microorganisms. SSP inhibited nitrification and denitrification via decreasing the abundances of functional genes and key enzymes related to Cu, Zn, and MRGs. The nitrate reductase and nitrous-oxide reductase in the denitrification pathway were lower under H. Phylogenetic trees indicated that Burkholderiales sp. had strong relationships with OTU396 and OTU333, with important roles in the nitrogen cycle and plant growth. Redundancy analysis and structural equation modeling showed the complex response between heavy metal and nitrogen that bio-Cu and bio-Zn had positive significantly relationships with nirK-type and amoA-type bacteria, and amoA-type bacteria might be hotspot of cueO.

摘要

虾壳粉(SSP)在堆肥中的应用可以促进堆肥的成熟,并降低相关的环境风险。本研究探讨了添加 SSP 不同水平(CK:0、L:5%、M:10%和 H:15%)对重金属抗性基因(MRGs)、氮功能基因、酶和微生物的响应。SSP 通过降低与 Cu、Zn 和 MRGs 相关的功能基因和关键酶的丰度来抑制硝化和反硝化。在 H 条件下,反硝化途径中的硝酸盐还原酶和亚硝酸盐还原酶较低。系统发育树表明,伯克霍尔德氏菌与 OTU396 和 OTU333 具有很强的关系,在氮循环和植物生长中具有重要作用。冗余分析和结构方程模型显示了重金属和氮之间的复杂响应,生物 Cu 和生物 Zn 与 nirK 型和 amoA 型细菌呈正显著相关,amoA 型细菌可能是 cueO 的热点。

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