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氮添加对湿地松林土壤水解酶和氧化酶活性的影响
引用本文:张闯,邹洪涛,张心昱,寇亮,杨洋,孙晓敏,李胜功,王辉民.氮添加对湿地松林土壤水解酶和氧化酶活性的影响[J].生态学杂志,2016,27(11):3427-3434.
作者姓名:张闯  邹洪涛  张心昱  寇亮  杨洋  孙晓敏  李胜功  王辉民
作者单位:1.沈阳农业大学土地与环境学院, 沈阳 110866;;2.中国科学院地理科学与资源研究所生态系统网络观测与模拟重点实验室, 北京 100101;;3.哈尔滨师范大学地理科学学院, 哈尔滨 150025
基金项目:本文由国家自然科学基金项目(31130009, 31290222, 41571251)资助
摘    要:通过3个水平野外氮添加控制试验(0、40、120 kg N·hm-2·a-1),研究氮添加对亚热带湿地松林土壤水解酶和氧化酶活性的影响.结果表明: 氮添加显著抑制了土壤有机质中碳、氮、磷水解酶和氧化酶的活性,导致β-1,4-葡糖苷酶(BG)、纤维素二糖水解酶(CBH)、β-1,4-乙酰基-葡糖胺糖苷酶(NAG)、过氧化物酶(PER)活性下降16.5%~51.1%,并且高水平氮添加对酶活性抑制效果更明显;氮添加导致α-1,4-葡糖苷酶(aG)、β-1,4-木糖苷酶(BX)、酸性磷酸酶(AP)、多酚氧化酶(PPO)活性降低14.5%~38.6%,不同水平氮添加处理间差异不显著.土壤酶活性存在明显的季节性差异,BG、NAG、BX、CBH、AP、PPO活性表现为3月>6月>10月,aG、PER活性表现为10月>3月>6月.多数土壤水解酶和氧化酶与pH呈显著正相关,与NO3--N含量呈显著负相关,表明氮添加导致pH降低和土壤中硝化作用增强,抑制了土壤水解酶和氧化酶活性.氮添加不利于亚热带土壤有机质的矿化和周转,并且随着氮添加量的增加,效果更明显.

关 键 词:氮添加  红壤  湿地松  水解酶活性  氧化酶活性
收稿时间:2016-05-09

Effects of nitrogen additions on soil hydrolase and oxidase activities in Pinus elliottii plantations.
ZHANG Chuang,ZOU Hong-tao,ZHANG Xin-yu,KOU Liang,YANG Yang,SUN Xiao-min,LI Sheng-gong,WANG Hui-min.Effects of nitrogen additions on soil hydrolase and oxidase activities in Pinus elliottii plantations.[J].Chinese Journal of Ecology,2016,27(11):3427-3434.
Authors:ZHANG Chuang  ZOU Hong-tao  ZHANG Xin-yu  KOU Liang  YANG Yang  SUN Xiao-min  LI Sheng-gong  WANG Hui-min
Institution:1.College of Land and Environment, Shenyang Agricultural University, Shenyang 110866, China;;2.Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China;;3.College of Geographic Science, Harbin Normal University, Harbin 150025, China
Abstract:We evaluated responses of hydrolase and oxidase activities in a subtropical Pinus elliottii plantation through a nitrogen (N) addition field experiment (dosage level: 0, 40, 120 kg N·hm-2·a-1). The results showed that N additions significantly decreased the carbon, nitrogen and phosphorus related hydrolase and oxidase activities. The activities of β-1,4-glucosidase (BG), cellobiohydrolase (CBH), β-1,4-N-acetylglucosaminidase (NAG) and peroxidase (PER) activities were decreased by 16.5%-51.1% due to N additions, and the decrease was more remarkable in the higher N addition treatment. The activities of α-1,4-glucosidase (aG), β-1,4-xylosidase (BX), acid phosphatase (AP) and phenol oxidase (PPO) were decreased by 14.5%-38.6% by N additions, however, there was no significant difference among the different N addition treatments. Soil enzyme activities varied obviously in different seasons. The activities of BG, NAG, BX, CBH, AP and PPO were in the order of March > June > October, and aG and PER activities were in the order of October > March > June. Most of the soil hydrolase and oxidase activities were positively correlated with soil pH, but negatively with NO3--N content. It indicated that N additions inhibited soil hydrolase and oxidase activities by reducing soil pH and increasing soil nitrification. N additions inhibited the soil organic matter mineralization and turnover in the subtropical area, and the effects were obvious with the increasing dosage of N additions.
Keywords:nitrogen addition  red soil  Pinus elliottii  hydrolase activity  oxidase activity
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