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3种黑杨无性系耐氮瘠薄能力的差异
引用本文:田东梅,孙敬茹,张 曦,苏晓华,沈应柏. 3种黑杨无性系耐氮瘠薄能力的差异[J]. 西北农业学报, 2010, 19(9): 75-79
作者姓名:田东梅  孙敬茹  张 曦  苏晓华  沈应柏
作者单位:1. 北京林业大学,生物科学与技术学院,北京,100083
2. 中国林业科学院,北京,100091
基金项目:国家自然科学基金,国家 "十一五"科技支撑计划课题 
摘    要:通过扫描离子选择电极技术及15N同位素示踪技术研究3种黑杨无性系02-34-334、03-04-97和108号对于硝铵的吸收及累积规律,揭示02-34-334号较03-04-97和108号更能适应低氮环境的原因。离子电极试验设置0 mmol/L NH4NO3(CK)、0.25 mmol/L NH4NO3和0.5 mmol/L NH4NO33种氮素水平1。5N同位素示踪试验设置2 g15NH4NO3和2 g NH415NO3(中氮)两种氮素处理。结果表明:①在0.25 mmol/LNH4NO3水平下,02-34-334号苗木根部硝铵的吸收比值为1.3,而其他两个无性系苗木根系在所有处理下的硝铵吸收比值均较低。说明02-34-334号在0 mmol/L NH4NO3(CK)到中氮范围内对于硝态氮的吸收较另两个无性系具有明显的潜在优势。②02-34-334号无性系与另两个供试无性系相比,根部15NO3-的氮素分配率低,而地上部分15NO3-的氮素分配率高。说明02-34-334号在中氮水平对于硝态氮有较强的转运能力。对硝态氮较强的吸收潜力及较强的转运能力可能是02-34-334号黑杨无性系更能适应低氮环境的原因之一。结果为进一步研究黑杨无性系的氮高效机制及生产应用提供了科学依据。

关 键 词:黑杨  硝铵吸收比  氮素分配率  扫描离子选择电极技术  15N同位素示踪技术

Different Growing Abilities in Nitrogen Deficient Soil of Three Populus deltoides Clones
TIAN Dongmei,SUN Jingru,ZHANG Xi,SU Xiaohua and SHEN Yingbai. Different Growing Abilities in Nitrogen Deficient Soil of Three Populus deltoides Clones[J]. Acta Agriculturae Boreali-occidentalis Sinica, 2010, 19(9): 75-79
Authors:TIAN Dongmei  SUN Jingru  ZHANG Xi  SU Xiaohua  SHEN Yingbai
Affiliation:TIAN Dongmei1,SUN Jingru1,ZHANG Xi1,SU Xiaohua2 and SHEN Yingbai1(1.College of Biological Science and Technology,Beijing Forestry University,Beijing 100083,China,2.Chinese Academy of Forestry,Beijing 100091,China)
Abstract:In this experiment,the scanning ion-selective electrode technique and labeled 15N isotope technique were used in detection of ammonium and nitrate absorption and accumulation differences among three Populus deltoides clones(02-34-334,03-04-97 and 108) to explore the reason why 02-34-334 clone was more adapted to low nitrogen environment than 03-04-97 and 108 clones.The treatments of seedlings for the scanning ion-selective electrode test were set three levels of 0 mmol/L NH4NO3(CK),0.25 mmol/L NH4NO3 and 0....
Keywords:Populus deltoides clones  Ratio of nitrate and ammonium absorption rates  Nitrogen distribution rate  Scanning ion-selective electrode technique  Labeled 15N isotope technique  
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