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腐熟鸡粪和农业废弃物堆肥中的芳香结构抑制了水芹种子和哈茨木霉的生长
引用本文:LUO Yi-Hong,ZHANG Dong-Qing,YU Guang-Hui,SHEN Qi-Rong. 腐熟鸡粪和农业废弃物堆肥中的芳香结构抑制了水芹种子和哈茨木霉的生长[J]. 土壤圈, 2013, 23(6): 826-834. DOI: 10.1016/S1002-0160(13)60074-0
作者姓名:LUO Yi-Hong  ZHANG Dong-Qing  YU Guang-Hui  SHEN Qi-Rong
作者单位:[1]Agricultural Ministry Key Lab of Plant Nutrition and Fertilization in Low-Middle Reaches of the Yangtze River, Jiangsu Key Lab for Organic Solid Waste Utilization, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095 (China) [2]Baoshan Environmental Protection Bureau, Shanghai 201900 (China)
基金项目:Supported by the National Basic Research Program (973 Program) of China (No. 2011CB100503), the National Natural Science Foundation of China (No. 21007027), the Qing Lan Project of Jiangsu Province, China and the National "111" Project of China's Higher Education (No. B12009).
摘    要:To better understand the role of organic matter (OM) prepared from chicken manure and agriculture residues compost on the growth of plants (Lepidium sativum L.) and antagonistic fungi (Trichoderma harzianum), we analyzed the structure and composition of extracted OM using fluorescence excitation-emission matrix (EEM) spectroscopy and solid-state 13C cross-polarization magic-angle- spinning nuclear magnetic resonance (13C CPMAS NMR) spectroscopy. The results showed that the EEM contours of water-extracted OM (WEOM) and alkali-extracted OM (AEOM) were similar. Furthermore, solid-state 13C CPMAS NMR spectroscopy demonstrated that water extraction could not proportionally pull out aromatic moieties (112-145 ppm) from compost, but the alkali method in proportion extracted both carbohydrates (65 85 ppm) and aromatic moieties. The results suggest that AEOM may better reflect the bulk OM composition of compost, and one should be cautious when applying WEOM as an alternative indicator of total compost OM. Further investigations demonstrated that, compared to carbohydrates, aromatic moieties played a predominant role in growth suppression of Lepidium sativum L. seeds and Trichoderma harzianum.

关 键 词:哈茨木霉  菜豌豆  堆肥  芳香  农业  鸡粪  基团  残留物
收稿时间:2012-11-20

Aromatic moieties from matured chicken manure and agriculture residues compost suppress growth of Lepidium sativum L. and Trichoderma harzianum
LUO Yi-Hong,ZHANG Dong-Qing,YU Guang-Hui and SHEN Qi-Rong. Aromatic moieties from matured chicken manure and agriculture residues compost suppress growth of Lepidium sativum L. and Trichoderma harzianum[J]. Pedosphere, 2013, 23(6): 826-834. DOI: 10.1016/S1002-0160(13)60074-0
Authors:LUO Yi-Hong  ZHANG Dong-Qing  YU Guang-Hui  SHEN Qi-Rong
Affiliation:1Agricultural Ministry Key Lab of Plant Nutrition and Fertilization in Low-Middle Reaches of the Yangtze River, Jiangsu Key Lab for Organic Solid Waste Utilization, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095 (China)2Baoshan Environmental Protection Bureau, Shanghai 201900 (China)
Abstract:To better understand the role of organic matter (OM) prepared from chicken manure and agriculture residues compost on the growth of plants (Lepidium sativum L.) and antagonistic fungi (Trichoderma harzianum), we analyzed the structure and composition of extracted OM using fluorescence excitation-emission matrix (EEM) spectroscopy and solid-state 13C cross-polarization magic-angle-spinning nuclear magnetic resonance (13C CPMAS NMR) spectroscopy. The results showed that the EEM contours of water-extracted OM (WEOM) and alkali-extracted OM (AEOM) were similar. Furthermore, solid-state 13C CPMAS NMR spectroscopy demonstrated that water extraction could not proportionally pull out aromatic moieties (112--145 ppm) from compost, but the alkali method in proportion extracted both carbohydrates (65--85 ppm) and aromatic moieties. The results suggest that AEOM may better reflect the bulk OM composition of compost, and one should be cautious when applying WEOM as an alternative indicator of total compost OM. Further investigations demonstrated that, compared to carbohydrates, aromatic moieties played a predominant role in growth suppression of Lepidium sativum L. seeds and Trichoderma harzianum.
Keywords:excitation-emission matrix spectroscopy   extracted organic matter   fluorescence reginal integration analysis   nuclear magnetic resonance spectroscopy
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