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尾菜与烤烟叶片共堆肥:氮素转化分析及作为盐生植物种子萌发剂的评估

Co-composting of tail vegetable with flue-cured tobacco leaves: analysis of nitrogen transformation and estimation as a seed germination agent for halophyte.

作者信息

Xie Chenghao, Wang Xiao, Zhang Benqiang, Liu Jiantao, Zhang Peng, Shen Guangcai, Yin Xingsheng, Kong Decai, Yang Junjie, Yao Hui, You Xiangwei, Li Yiqiang

机构信息

Marine Agriculture Research Center, Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao, China.

National Center of Technology Innovation for Comprehensive Utilization of Saline-Alkali Land, Dongying, China.

出版信息

Front Microbiol. 2024 Sep 4;15:1433092. doi: 10.3389/fmicb.2024.1433092. eCollection 2024.

Abstract

Resource utilization of tail vegetables has raised increasing concerns in the modern agriculture. However, the effect and related mechanisms of flue-cured tobacco leaves on the product quality, phytotoxicity and bacterially-mediated nitrogen (N) transformation process of tail vegetable composting were poorly understood. Amendments of high-dosed (5% and 10% w/w) tobacco leaves into the compost accelerated the heating process, prolonged the time of thermophilic stage, increased the peak temperature, thereby improving maturity and shortening composting duration. The tobacco leaf amendments at the 10% (w/w) increased the N conservation (TN and NH-N content) of compost, due to the supply of N-containing nutrient and promotion of organic matter degradation by tobacco leaves. Besides, tobacco leaf amendments promoted the seed germination and root development of wild soybean, exhibiting the feasibility of composting product for promoting the growth of salt-tolerant plants, but no dose-dependent effect was found for tobacco leaf amendments. Addition of high dosed (5% and 10% w/w) tobacco leaves shifted the bacterial community towards lignocellulosic and N-fixing bacteria, contributing to increasing the compost maturity and N retention. PICRUSt 2 functional prediction revealed that N-related bacterial metabolism (i.e., hydroxylamine oxidation and denitrifying process) was enhanced in the tobacco leaf treatments, which contributed to N retention and elevated nutrient quality of composting. To the best knowledge, this was the first study to explore the effect of tobacco waste additives on the nutrient transformation and halophyte growth promotion of organic waste composting. These findings will deepen the understanding of microbially-mediated N transformation and composting processes involving flue-cured tobacco leaves.

摘要

尾菜的资源利用在现代农业中引起了越来越多的关注。然而,烤烟叶片对尾菜堆肥产品质量、植物毒性和细菌介导的氮(N)转化过程的影响及相关机制尚不清楚。向堆肥中添加高剂量(5%和10% w/w)的烟叶可加速升温过程,延长高温阶段时间,提高峰值温度,从而提高腐熟度并缩短堆肥时间。10%(w/w)的烟叶添加量提高了堆肥的氮保留量(总氮和铵态氮含量),这归因于含氮养分的供应以及烟叶对有机物降解的促进作用。此外,烟叶添加促进了野生大豆的种子萌发和根系发育,表明堆肥产品具有促进耐盐植物生长的可行性,但未发现烟叶添加量的剂量依赖性效应。添加高剂量(5%和10% w/w)的烟叶使细菌群落向木质纤维素分解菌和固氮菌转变,有助于提高堆肥腐熟度和氮保留。PICRUSt 2功能预测表明,烟叶处理中与氮相关的细菌代谢(即羟胺氧化和反硝化过程)增强,这有助于氮保留并提高堆肥养分质量。据我们所知,这是第一项探索烟草废弃物添加剂对有机废弃物堆肥养分转化和盐生植物生长促进作用的研究。这些发现将加深对涉及烤烟叶片的微生物介导的氮转化和堆肥过程的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba1b/11408338/6de0829a1b01/fmicb-15-1433092-g001.jpg

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