首 页 网络介绍 CERN新闻 规章制度 在研项目 论文与出版物 学术动态 生态知识 人员招聘 人员组成 English

    论文与出版物
   SCI论文目录
   SCI论文全文(PDF文件)
   核心期刊论文目录
   出版物目录
   研究报告目录

 SCI论文全文(PDF文件)
Effects of Phenolics on seedling growth and 15N nitrate absorption of Cunninghamia lanceolata
------------------------------------------------------------------------------------------
出 版 社:Allelopathy Journal  
发表时间:2005年1月  
台  站: 会同森林生态系统定位研究站  
作  者:Chen Longchi  
点 击 率:373941
------------------------------------------------------------------------------------------
关 键 字:Allelochemicals, Chinese fir, -hydroxybenzoic acid, 15N, Phenolics,  
摘  要:Chinese fir (Cunninghamia lanceolata) has replant problem under field conditions and has been attributed to phenolic allelochemicals, which cause its autotoxicity. To determine the mechanism of inhibitory effects of phenolics on Chinese fir, we studied their effects on growth and 15N nitrate absorption by each organ of its seedlings, cultured in pots using 15N-labelled isotope trace technique. The 1×10-3 mol·L-1 vanillic acid and phenolics mixture (0.5×10-3 mol·L-1 vanillic acid and 0.5×10-3 mol·L-1 -hydroxybenzoic acid) significantly inhibited the seedling growth of Chinese fir. Phenolics solution of 1×10-2 mol·L-1 concentration decreased total N content of roots, stems and leaves. 15N derived from the fertilizer (NDFF) in roots, stems and leaves treated with 1 × 10-2 mol·L-1 vanillic acid was 36.1, 42.7 and 38.5% less, respectively, and corresponding values for phenolics mixture at the same concentration were 14.1, 17.2, and 17.0% lower, respectively, compared to control. In contrast, vanillic acid and -hydroxybenzoic acid at 1×10-5 mol·L-1 stimulated the seedling growth, enhanced total 15N content and increased 15N nitrate absorption. These treatments also increased the 15N nitrate distribution in roots and reduced its distribution in stems and leaves. We suggest that accumulated phenolics in soil could inhibit seedling growth through reducing nutrient absorption by Chinese fir and consequently leading to low productivity of replanted Chinese fir.  
关 键 字(英文):Allelochemicals, Chinese fir, -hydroxybenzoic acid, 15N, Phenolics,  
摘  要(英文):Chinese fir (Cunninghamia lanceolata) has replant problem under field conditions and has been attributed to phenolic allelochemicals, which cause its autotoxicity. To determine the mechanism of inhibitory effects of phenolics on Chinese fir, we studied their effects on growth and 15N nitrate absorption by each organ of its seedlings, cultured in pots using 15N-labelled isotope trace technique. The 1×10-3 mol·L-1 vanillic acid and phenolics mixture (0.5×10-3 mol·L-1 vanillic acid and 0.5×10-3 mol·L-1 -hydroxybenzoic acid) significantly inhibited the seedling growth of Chinese fir. Phenolics solution of 1×10-2 mol·L-1 concentration decreased total N content of roots, stems and leaves. 15N derived from the fertilizer (NDFF) in roots, stems and leaves treated with 1 × 10-2 mol·L-1 vanillic acid was 36.1, 42.7 and 38.5% less, respectively, and corresponding values for phenolics mixture at the same concentration were 14.1, 17.2, and 17.0% lower, respectively, compared to control. In contrast, vanillic acid and -hydroxybenzoic acid at 1×10-5 mol·L-1 stimulated the seedling growth, enhanced total 15N content and increased 15N nitrate absorption. These treatments also increased the 15N nitrate distribution in roots and reduced its distribution in stems and leaves. We suggest that accumulated phenolics in soil could inhibit seedling growth through reducing nutrient absorption by Chinese fir and consequently leading to low productivity of replanted Chinese fir.  
------------------------------------------------------------------------------------------
chen.PDF
相关文章:
不同生境下报春苣苔的光合作用日变化特性
艳桢桐的生态生物学特征
中国南亚热带森林不同演替阶段土壤呼吸的分离量化
植物源挥发性有机物对氮沉降响应研究展望
南亚热带常绿阔叶林林冠层附生植物及其宿主叶片的形态解剖特征
南亚热带常绿阔叶林林冠不同部位藤本植物的光合生理特征及其对环境因子的适应
模拟氮沉降对鼎湖山森林土壤酸性磷酸单酯酶活性和有效磷含量的影响
深圳湾福田保护区红树林生态系统服务功能价值评估
土壤有机质对土壤水分保持及其有效性的控制作用
中国四种森林类型主要优势植物的C:N:P化学计量学特征
相关文章分页:  共 201 页 2006 条记录 9 3[181][182][183][184][185][186][187][188][189][190]4 :

[关闭窗口]
中国生态系统研究网络 版权所有
| 网络介绍 | 联系方式 | 网站地图 |