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天然盐碱土壤对虎尾草茎叶有机酸积累影响及胁迫因子分析 被引量:11
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作者 吕家强 李长有 +1 位作者 杨春武 胡锐 《草业学报》 CSCD 北大核心 2015年第4期95-103,共9页
虎尾草是一种耐盐碱性很强的天然牧草,在吉林省长岭县盐碱化草地上随机选择45个虎尾草天然种群样点,测量每个样点的土壤电导率、pH、缓冲量3个因素作为反映土壤盐碱化程度的胁迫强度指标,在每个样点上测量虎尾草茎叶中有机酸含量作为反... 虎尾草是一种耐盐碱性很强的天然牧草,在吉林省长岭县盐碱化草地上随机选择45个虎尾草天然种群样点,测量每个样点的土壤电导率、pH、缓冲量3个因素作为反映土壤盐碱化程度的胁迫强度指标,在每个样点上测量虎尾草茎叶中有机酸含量作为反映植物生理响应的胁变指标,进行回归分析。结果表明:虎尾草茎叶大量积累柠檬酸、苹果酸、草酸以及总有机酸以响应强盐碱胁迫且与三胁迫因素呈显著正相关,仅积累量较低的琥珀酸相反。多元回归分析发现土壤电导率对除了琥珀酸之外的其他有机酸积累影响最大,电导率可以作为天然盐碱化土壤环境下考察虎尾草响应盐碱胁迫的主要胁迫因素。 展开更多
关键词 虎尾草 天然盐碱化土壤 土壤电导率 有机酸积累 多元回归
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Carbon Dioxide and Nitrous Oxide Emissions from Naturally Occurring Sulfate-Based Saline Soils at Different Moisture Contents 被引量:6
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作者 Resham THAPA Amitava CHATTERJEE +1 位作者 Abbey WICK Kirsten BUTCHER 《Pedosphere》 SCIE CAS CSCD 2017年第5期868-876,共9页
Soil salinization may negatively affect microbial processes related to carbon dioxide (CO2) and nitrous oxide (N20) emissions. A short-term laboratory incubation experiment was conducted to investigate the effects... Soil salinization may negatively affect microbial processes related to carbon dioxide (CO2) and nitrous oxide (N20) emissions. A short-term laboratory incubation experiment was conducted to investigate the effects of soil electrical conductivity (EC) and moisture content on CO2 and N20 emissions from sulfate-based natural saline soils. Three separate 100-m long transects were established along the salinity gradient on a salt-affected agricultural field at Mooreton, North Dakota, USA. Surface soils were collected from four equally spaced sampling positions within each transect, at the depths of 0-15 and 15-30 cm. In the laboratory, artificial soil cores were formed combining soils from both the depths in each transect, and incubated at 60% and 90% water-filled pore space (WFPS) at 25 ~C. The measured depth-weighted EC of the saturated paste extract (ECe) across the sampling positions ranged from 0.43 to 4.65 dS m-1. Potential nitrogen (N) mineralization rate and CO2 emissions decreased with increasing soil ECe, but the relative decline in soil CO2 emissions with increasing ECe was smaller at 60% WFPS than at 90% WFPS. At 60% WFPS, soil N20 emissions decreased from 133 g N20-N kg-1 soil at ECe ( 0.50 dS m-1 to 72 μg N20-N kg-1 soil at ECe = 4.65 dS m-1. In contrast, at 90% WFPS, soil N20 emissions increased from 262 g N20-N kg-1 soil at ECe : 0.81 dS m-1 to 849 g N20-N kg-1 soil at ECe : 4.65 dS m-1, suggesting that N20 emissions were linked to both soil ECe and moisture content. Therefore, spatial variability in soil ECe and pattern of rainfall over the season need to be considered when up-scaling N20 and CO2 emissions from field to landscape scales. 展开更多
关键词 electric conductivity C and N mineralization SALINITY sulfate salts soil salinization soil water-filled pore space
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