Effects of warming,wetting and nitrogen addition on substrate-induced respiration and temperature se

来源 :土壤圈(英文版) | 被引量 : 0次 | 上传用户:hujialian
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Soil heterotrophic respiration and its temperature sensitivity are affected by various climatic and environmental factors.However,little is known about the combined effects of concurrent climatic and environmental changes,such as climatic warming,changing precipitation regimes,and increasing nitrogen(N)deposition.Therefore,in this study,we investigated the individual and combined effects of warming,wetting,and N addition on soil heterotrophic respiration and temperature sensitivity.We incubated soils collected from a temperate forest in South Korea for 60 d at two temperature levels(15 and 20℃,representing the annual mean temperature of the study site and 5℃warming,respectively),three moisture levels(10% ,28% ,and 50% water-filled pore space(WFPS),representing dry,moist,and wet conditions,respectively),and two N levels(without N and with N addition equivalent to 50 kg N ha-1 year-1).On day 30,soils were distributed across five different temperatures(10,15,20,25,and 30℃)for 24 h to determine short-term changes in temperature sensitivity(Q10,change in respiration with 10℃increase in temperature)of soil heterotrophic respiration.After completing the incubation on day 60,we measured substrate-induced respiration(SIR)by adding six labile substrates to the three types of treatments.Wetting treatment(increase from 28% to 50% WFPS)reduced SIR by 40.8% (3.77 to 2.23 μg CO2- C g-1 h-1),but warming(increase from 15 to 20℃)and N addition increased SIR by 47.7% (3.77 to 5.57 μg CO2- C g-1 h-1)and 42.0% (3.77 to 5.35 μg CO2- C g-1 h-1),respectively.A combination of any two treatments did not affect SIR,but the combination of three treatments reduced SIR by 42.4% (3.70 to 2.20 μg CO2- C g-1 h-1).Wetting treatment increased Q10 by 25.0% (2.4 to 3.0).However,warming and N addition reduced Q10 by 37.5% (2.4 to 1.5)and 16.7% (2.4 to 2.0),respectively.Warming coupled with wetting did not significantly change Q10,while warming coupled with N addition reduced Q10 by 33.3% (2.4 to 1.6).The combination of three treatments increased Q10 by 12.5% (2.4 to 2.7).Our results demonstrated that among the three factors,soil moisture is the most important one controlling SIR and Q10.The results suggest that the effect of warming on SIR and Q10 can be modified significantly by rainfall variability and elevated N availability.Therefore,this study emphasizes that concurrent climatic and environmental changes,such as increasing rainfall variability and N deposition,should be considered when predicting changes induced by warming in soil respiration and its temperature sensitivity.
其他文献
本文根据当前养殖粪污处理面临的低温发酵难题,总结在高寒地区低温条件下,开展生物有机肥的发酵与堆肥生产的简便技术方法,并对其生产投入产出和生产效果进行说明,以期促进高
在植物生长过程中,水分发挥着不可替代的作用。水分过少或者过多都会对植物的形态、生长代谢等造成极大的影响。文章分析水分胁迫对文冠果幼苗生长性状的影响,并探讨对应措施
蔬菜是我国农业生产中不可缺少的农副产品之一。蔬菜栽培管理受到温度、湿度、光照条件以及资金、信息、服务等因素的影响。本文首先对影响蔬菜栽培管理技术推广的主要因素进
随着我国对农业扶持力度的逐年加大,农业产业得到了飞速发展.玉米作为我国主要的粮食作物和饲料作物,同时也是世界上最重要的食粮之一,其种植面积仅次于小麦和水稻.本文阐述
现今"互联网+"技术已广泛运用到各个领域,"互联网+"技术也为现代化农业建设发展提供了前所未有的机遇。将互联网的应用与先进的农业技术两者有机结合,可促进新时代农业生产的
In the tropics,frequent nitrogen(N)fertilization of grazing areas can potentially increase nitrous oxide(N2O)emissions.The application of nitrification inhibito
森林病虫害防治关系到林业生态系统的稳定,关乎林业生态环境建设成效.本文通过探讨森林病虫害防治与我国林业生态建设的关系,阐述了完善林业生态环境的应对策略.通过分析森林
不久前,“生鲜辽宁”首季第二场,十三个大米品牌登台亮相,晶莹的米粒或蒸煮、或日料,现场新浪、腾讯、《新农业》等多家媒体直播,通过在线数十万人将辽宁大米的“色、香、味
期刊
当前,我国正全面推进美丽乡村建设规划,大力实施乡村产业振兴战略,致力于解决“三农”问题.本文主要介绍了绿色农业发展背景下玉米化肥减量化的意义,并提出转变农户施肥意识
异唑啉类化合物是含有氮(N)、氧(O)原子的五元杂环类化合物,对鳞翅目、缨翅目、双翅目以及半翅目等农业害虫表现出较好的生物活性,具有广谱性、高活性、高选择性等特点.笔者